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Fabric Drape Tester
Fabric Drape Tester
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    Fabric Drape Tester
    Fabric Drape Tester
    Home Physical Testing & Fabric Testing Fabric drape tester
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    Laboratory Mini Stenter Dryer
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    Fabric drape tester

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    Fabric Drape Tester
    Fabric Drape Tester

    Fabric Drape Tester

     

    Fabric Drape Tester is a lab device used to measure the drape ability of fabric—how it hangs under its own weight. It assesses how fabric conforms in folds or waves, which affects garment appearance and comfort.

     

    Purpose of Fabric Drape Tester:

    To evaluate the aesthetic and functional behavior of a fabric when suspended, especially important in apparel and home textiles.

     

    Working Principle:

    A circular fabric specimen is placed over a smaller disc. The unsupported edges drape downward. A light source casts a shadow of the draped shape onto a recording surface or scanner. The area of the shadow is measured to calculate the drape coefficient.

     

    Main Components of Fabric Drape Tester:

    – Rotating Support Disc: Holds the fabric.

    – Light Source: Projects the drape shadow.

    – Paper or Digital Scanner: Captures the drape outline.

    – Template: For cutting fabric to standard test size.

    – Software or Plan meter: Calculates the drape coefficient.

     

    Applications of Fabric Drape Tester:

    – Fashion and apparel design

    – Fabric development

    – Quality control in woven, knitted, or nonwoven fabrics

     

    Benefits of Fabric Drape Tester:

    1. Quantifies Fabric Flow – Measures drape behavior accurately, crucial for garments and furnishings.
    2. Supports Design Decisions – Helps designers select fabrics that match the intended look and movement of a product.
    3. Improves Garment Fit and Comfort – Ensures fabrics behave naturally on the body, enhancing wear ability.

     

    1. Enhances Product Aesthetics – Prevents stiff or limp fabric choices in fashion, interior, or technical textiles.
    2. Standardized Evaluation – Enables comparison across fabrics using drape coefficient, based on standards (e.g., BS 5058).
    3. Supports R&D – Useful in developing new fabrics or finishes to improve drape quality.

     

    1. Non-Destructive Testing – Tests fabric without damaging it, allowing for further analysis.
    2. Boosts Quality Control – Identifies batch inconsistencies or performance issues early in production.

     

    Features of Fabric Drape Tester:

    1. Rotating Support Disc – Holds the fabric sample over a smaller disc to create natural drape.
    2. Standard Sample Size Support – Designed for circular fabric samples, usually 30 cm in diameter.
    3. Light Projection System – Projects the draped fabric’s shadow onto a screen or recording surface.

     

    1. Drape Coefficient Calculation – Measures the shadow area to compute the drape coefficient (percentage of unsupported area covered by the shadow).
    2. Digital or Manual Options – Available in models with digital image processing or manual plan meter tracing.
    3. Stable Base and Structure – Ensures consistent and vibration-free testing conditions.

     

    1. Sample Templates Provided – For cutting precise, standard-sized fabric specimens.
    2. User-Friendly Interface – Simple controls for rotation and light alignment.
    3. Compact and Lab-Ready Design – Fits easily on lab benches and in testing environments.
    4. Compliance with Testing Standards – Supports BS 5058 and other relevant drape measurement methods.

     

    How to Use Fabric Drape Tester:

    1. Prepare the Fabric Sample – Cut a circular fabric sample, typically 30 cm in diameter, using the provided template.
    2. Place the Fabric – Center the fabric sample over the smaller support disc (usually 18 cm diameter) on the tester.
    3. Turn on the Light Source – Illuminate the fabric from above so it casts a shadow onto the recording surface or paper below.

     

    1. Capture the Shadow Outline – Trace the shadow manually on paper or capture it digitally, depending on the model.
    2. Measure the Shadow Area – Use a plan meter (manual) or software (digital) to determine the shadow’s area.
    3. Calculate Drape Coefficient (DC) – Use the formula:

    DC (%) = (Shadow Area – Support Disc Area) / (Full Fabric Area – Support Disc Area) × 100

     

    1. Record the Result – Log the drape coefficient to evaluate how stiff or flexible the fabric is.
    2. Repeat for Accuracy – Test multiple samples and average the results for consistency.

     

     

    fabric drape tester

    Scope of application

    It is used for testing dynamic and static drape properties
    (drape coefficient, shape change rate, surface ripple and drape uniformity, etc.)
    of various fabrics.
    Related standards GB/T23329 FZ/01045 BS5058 etc.

    Instrument characteristics

    1. CCD imaging, dynamic and static image processing.
    2. A variety of charts and data statistics, analysis, storage, output
    3. No need to replace background color, can test all kinds of color samples.
    4. Work mode:Microcomputer control, CCD imaging, automatic processing of images and data automatically.

    Technical parameters

    1. Communication interface: RS232, USB
    2. Image sensor: CCD sensor.
    3. Static (dynamic) state draping coefficient: 0 ~ 100% + 2
    4. Drapability uniformity: 0 ~ 100% + 2
    5. The rate of morphological change is 0 to 100% + 2.
    6. Surface waviness error: + 1

    Category: Physical Testing & Fabric Testing Tags: fabric drape tester, fabric drape tester for lab, fabric drape tester price in Bangladesh, Lab fabric drape tester, Textile fabric drape tester Brand: DARONG
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        A GSM Cutter with Balance is a lab toolset used to determine the GSM (Grams per Square Meter) of fabrics, which indicates the fabric's weight and density. The kit includes a GSM round cutter and a precision weighing balance.   Purpose GSM Cutter with Balance: To accurately measure the weight per unit area of textile, paper, or nonwoven samples for quality control and product classification.   How It Works: GSM Cutter: - A circular blade cuts a fixed area (usually 100 cm²) from the fabric. Weighing Balance: - The cut piece is weighed, and the result is multiplied by 100 to get GSM. GSM = Weight (in grams) × 100   Applications of GSM Cutter with Balance: Textile and garment industry Nonwovens and paper manufacturing QC labs and R&D   Benefits of GSM Cutter with Balance: Accurate GSM Measurement - Ensures precise fabric weight analysis for quality control. Quick and Simple Operation - Allows fast sampling and GSM calculation in minutes. No Need for Area Calculation - Cutter gives a fixed area (usually 100 cm²), simplifying the formula. Improves Product Consistency - Helps maintain uniform fabric weight across batches.   Portable and User-Friendly - Compact design makes it ideal for labs and production floors. Cost-Effective Tool - Offers high accuracy without the need for expensive equipment. Versatile Use - Suitable for fabrics, paper, leather, films, and more.   Features of GSM Cutter with Balance: Rotary Blade Cutter - Stainless steel blades for clean and accurate circular cuts. Fixed Sample Area - Typically 100 cm², eliminating the need for area measurement. Precision Digital Balance   - Measures in grams with high resolution (0.01 g or better).   Rubber Cutting Pad - Protects blade and provides a smooth surface for cutting. Safety Lock - Prevents accidental blade exposure. Compact & Durable Design- Long-lasting, lab-friendly construction.   How to Use GSM Cutter with Balance: Prepare the Fabric Sample- Place the fabric on the rubber cutting pad. Cut the Sample - Hold the GSM cutter firmly and rotate it to cut a 100 cm² circular sample. Turn on the Balance - Power up the digital weighing scale and tare it to zero.   Weigh the Sample - Place the cut fabric piece on the balance and note the weight in grams. Calculate GSM - Multiply the weight by 100 to get GSM.  - GSM = Sample weight (g) × 100 Record the Result- Log the GSM value for quality control or analysis. Clean and Store - Wipe the cutter and balance, and store them safely after use.   GSM Calculation Formula: GSM (g/m²) = (Weight of Sample in grams) × 100 When using a GSM cutter (100 cm²): The cutter gives a fixed area of 100 cm², which is 1/100th of a square meter. So, multiplying the sample's weight by 100 gives the GSM directly. Example: If the sample weighs 1.75 g, then: GSM = 1.75 × 100 = 175 g/m²   Balance Calibration Guide (Manual Calibration): Warm-Up   - Turn on the balance and let it warm up for 10–15 minutes if required. Level the Balance   - Use the built-in bubble level and adjust leveling feet until the bubble is centered. Tare the Balance   - Press the “TARE” or “ZERO” button to reset the display to 0.000 g.   Enter Calibration Mode   - Press the “CAL” or “MODE” button (depends on the model). - Some balances may require holding the button for a few seconds. Use Standard Weight   - When prompted, place a certified calibration weight (e.g., 100g, 200g) on the pan.   - Wait for the display to stabilize.   Confirm Calibration   - The balance will beep or show “PASS” once successful.   - Remove the weight when done. Recheck Zero  - Ensure the display returns to 0.000 g after removing the weight.   Tips: Use certified weights for accuracy (Class F1 or E2). Calibrate in a draft-free, vibration-free environment. Calibrate daily or before critical measurements.     GSM Cutter  & Balance GSM Cutter Brand: Schroder Origin: Germany Capacity: 100 Sq.cm Supplied with 1 pcs cutting Pad and 04 pcs cutting blade. Digital Electronics balance Precision GSM Weight Balance 0.01g to 200g Model: GSM200 Brand: Schroder Origin: Germany
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      Gray Scale
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      Gray scale

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      Gray Scale
      Gray Scale

      Gray Scale

        The Gray Scale is a visual tool used in the textile and dyeing industry to evaluate and grade the color change or staining of a fabric after testing (e.g., washing, rubbing, and light exposure). It helps assess how much a fabric's color has altered or transferred during durability or fastness tests. Types of Gray Scale:
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      1. Enhances Quality Assurance - Helps detect dyeing or printing issues before bulk production.
      2. Supports Multiple Tests - Used for evaluating wash fastness, rubbing fastness, perspiration, light exposure, and more.
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      1. Durable Material - Made from stable, fade-resistant plastic or cardboard for long-term use.
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      - Or place the adjacent white fabric next to the gray scale (for staining).
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      1. Assign a Grade
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        4. Compact Design - Small, portable card or booklet format for easy lab and field use.
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      2. Gray Scale for Staining - Used to assess the degree of color transfer from a dyed fabric to an adjacent white fabric during testing (e.g., rubbing, washing).
      - Evaluates staining on undyed fabrics.   These two types are essential tools in color fastness testing across textile labs. Want to know which standard tests use each type?
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      Fabric Moisture Permeability Tester
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      fabric moisture permeability tester

      Physical Testing & Fabric Testing
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      Fabric Moisture Permeability Tester

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      Fabric Moisture Permeability Tester

      Fabric Moisture Permeability Tester

        A Fabric Moisture Permeability Tester, also known as a Water Vapor Permeability Tester, is a laboratory instrument designed to measure the rate at which water vapor passes through textile materials. This measurement is crucial for assessing the breathability and comfort of fabrics, especially those used in active wear, outdoor gear, medical textiles, and protective clothing.   Purpose of Fabric Moisture Permeability Tester The primary function of this tester is to evaluate a fabric's ability to allow moisture vapor to pass through it, which directly impacts the wearer's comfort by facilitating sweat evaporation and thermal regulation. High moisture permeability indicates better breathability, making the fabric suitable for applications where moisture management is essential.   Working Principle of Fabric Moisture Permeability Tester The tester operates by placing a fabric specimen over a container filled with water. Under controlled temperature and humidity conditions, water vapor passes through the fabric over a specified period. The amount of water vapor transmitted is determined by measuring the weight loss of the container, allowing for the calculation of the Water Vapor Transmission Rate (WVTR).   Common Testing Methods
      1. Upright Cup Method: The fabric covers a cup containing water, and the assembly is placed upright in a controlled environment. After a set duration, the weight loss is measured to determine the WVTR.
      2. Inverted Cup Method: The fabric is sealed over a cup, which is then inverted and exposed to a controlled environment. The amount of water vapor absorbed by the fabric is measured over time.
       
      1. Sweating Hot Plate Test: Simulates human perspiration by measuring the energy required to maintain a constant temperature on a heated plate covered with the fabric, providing insights into the fabric's breathability.
        Key Specifications of Fabric Moisture Permeability Tester - Test Cups: Typically 6 to 8 cups, each with a diameter of approximately 83 mm and a depth of 18.5 mm.- Turntable Speed: Approximately 2 revolutions per minute (RPM) to ensure uniform exposure. - Environmental Conditions: Tests are conducted under controlled temperature (e.g., 23 ± 2°C) and humidity (e.g., 50 ± 5% RH) settings. - Standards Compliance: Conforms to international standards such as ASTM E96, ISO 15496, BS 7209, and JIS L1099.     ✅ Benefits of Fabric Moisture Permeability Tester - Enhanced Product Development: Provides critical data for designing breathable and comfortable textiles- Quality Assurance: Ensures consistency in fabric performance across different production batches- Regulatory Compliance: Helps manufacturers meet industry standards and certifications.   - Consumer Satisfaction: Contributes to the development of garments that offer better moisture management, leading to increased wearer comfort.   Applications of Fabric Moisture Permeability Tester - Active wear and Sportswear: Assessing fabrics for athletic performance and comfort. - Outdoor and Protective Clothing: Ensuring materials provide adequate breathability while offering protection. Medical Textiles: Evaluating materials used in healthcare settings for moisture management. - Technical and Industrial Textiles: Testing specialized fabrics used in various industrial applications.   Features of fabric moisture permeability tester
      1. Multi-Cup Design - Typically includes 6 or more test cups for simultaneous testing of multiple samples.
      2. Rotating Turntable - Ensures uniform air exposure and consistent vapor transmission across all samples.
      3. Precision Weighing System- Accurate measurement of weight loss to calculate water vapor transmission rate (WVTR).
       
      1. Temperature & Humidity Control - Maintains stable environmental conditions (e.g., 23°C, 50% RH) for reliable results.
      2. Digital Display or Software Interface - Displays real-time data and test status; advanced models offer data logging and export.
      3. Compliance with Standards - Supports ASTM E96, ISO 15496, BS 7209, JIS L1099 testing methods.
       
      1. Sealed Test Chambers- Prevents external air interference, improving accuracy.
      2. Corrosion-Resistant Construction - Durable materials suitable for long-term use in lab environments.
      3. Easy Sample Mounting - Quick and secure fabric placement on test cups with sealing rings.
      4. Low Maintenance Design- Simplified components for easy cleaning and upkeep.
        How to Use Fabric Moisture Permeability Tester (Cup Method):  
      1. Prepare the Test Solution - Fill each test cup with a set amount of water (e.g., 50 ml), or a desiccant if using inverted method.
      2. Mount the Fabric - Cut the fabric into circular pieces matching the cup size.
      - Securely seal each fabric over the cup opening with a gasket and ring to prevent leakage.
      1. Weigh the Cups - Record the initial weight of each cup with the fabric mounted.
       
      1. Place on Turntable - Position all cups on the rotating tray inside the controlled chamber.
      2. Set Conditions - Close the chamber and maintain temperature (e.g., 23°C) and relative humidity (e.g., 50%) as per test standard.
      3. Start the Test - Begin rotation (usually ~2 RPM) and let it run for the specified time (often 24 hours).
      4. Weigh the Cups Again- After the test duration, reweigh the cups to determine weight loss due to moisture vapor passing through the fabric. Calculate WVTR - Use the formula: WVTR = (Weight Loss in grams × 24) / (Test Area in m² × Time in hours) Expressed in g/m²/24h.Clean and Store - Clean cups and components for future use.
          fabric moisture permeability tester Scope of application It is used to determine the moisture permeability of various fabrics (including moisture permeable coated fabrics) and nonwovens such as batting cotton and space cotton. [Related standards] GB/T12704 ASTM E90 JIS L1099A BS 7209 JIS L1099B (custom) etc.   Instrument characteristics 1. Integrated structure of baking oven and constant temperature and humidity box. 2. Microcomputer control, color touch screen Chinese menu operation. 3. Circulating air velocity 0.2-3m/s digital setting. 4. Imported high-precision temperature and humidity sensor, imported motor drive, ceramic heating tube heating.   Technical parameters 1.Work mode: Microcomputer control, color touch screen Chinese menu operation, test environment monitoring. 2. Sample box control temperature:15 ~ 40 C, accuracy 0.1 + C, resolution 0.01 C 3. Heat dissipation mode:Air cooling 4. Sample box control humidity:30 ~ 95%, precision + 2%, resolution 0.01% 5. Test chamber humidification:≥300ml/h 6. Accompany oven control temperature: Room temperature to 200 c 7. Test time:1min~999h59min 8. The rate of circulating steam flow:0. 2-3m/s digital setting resolution 0.01m/s 9. Moisture permeability area:2827㎜2(∮60㎜GB) Optional 3848, 2 (70 70 ASTM) 10. The number of moisture permeable cups.6 (GB) can be replaced by 6 (US standard). 11. Internal dimensions of drying oven:490×400×215mm 12. Power supply:Ac220V 50Hz 6kw 13. Size:930×820×1700mm 14. Weight:350kg
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      Stretch Recovery Tester (Static Method)

      Stretch Recovery Tester Static Method

      Physical Testing & Fabric Testing, Dyeing Lab Machine
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      Stretch Recovery Tester – Static Method | ASTM D3107 / D2594 | Ready Stock Bangladesh

      Product Introduction

      The Stretch Recovery Tester – Static Method is a professional textile laboratory testing instrument designed to evaluate the stretch and recovery properties of elastic fabrics, knitted fabrics, stretch garments, ribbons and other extensible textile materials. The tester is suitable for Textile Testing Laboratories, Garment Factories, Fabric Manufacturers, QA/QC Departments, R&D Laboratories and Academic Textile Laboratories. ASTM D3107 / ASTM D2594 | Ready Stock in Bangladesh | Quick Delivery | Local Support

      Why Choose This Stretch Recovery Tester?

      • Ready Stock in Bangladesh
      • Suitable for textile and garment testing laboratories
      • Designed for stretch and recovery evaluation
      • Suitable for elastic and stretchable textile materials
      • Applicable to relevant ASTM testing methods
      • Easy laboratory operation
      • Compact and practical testing equipment
      • Competitive price in Bangladesh
      • Quick local delivery
      • Local sales and technical support from MAAM TEX

      Testing Standards

      The Stretch Recovery Tester is suitable for testing requirements related to:
      • ASTM D3107 – Stretch Properties of Fabrics
      • ASTM D2594 – Stretch Properties of Knitted Fabrics
      Testing procedure and applicable standard should be selected according to the material and customer's laboratory requirement.

      Scope of Application

      This equipment can be used for testing:
      • Stretch Fabrics
      • Knitted Fabrics
      • Elastic Fabrics
      • Stretch Garments
      • Sportswear Fabrics
      • Elastic Ribbons
      • Hosiery Materials
      • Textile Materials with Stretch Properties

      Suitable For

      • Textile Testing Laboratories
      • Garment Manufacturing Industries
      • Knitwear Factories
      • Fabric Mills
      • Sportswear Manufacturers
      • Elastic Fabric Manufacturers
      • Quality Control Laboratories
      • R&D Laboratories
      • Third-Party Testing Laboratories
      • Textile Universities & Institutes

      Key Advantages

      Ready Stock in Bangladesh

      No need to wait for overseas import. This product is available from MAAM TEX stock in Bangladesh, subject to current stock availability.

      Quick Delivery

      Local stock enables faster delivery compared with normal import-based supply.

      Competitive Price

      MAAM TEX provides competitive quotations for textile laboratory testing equipment.

      Local Support

      Professional sales and after-sales support are available for customers in Bangladesh.

      Laboratory Suitable

      A practical solution for routine quality control, product development and textile testing applications.

      Frequently Asked Questions

      What is a Stretch Recovery Tester?

      A Stretch Recovery Tester is a textile laboratory instrument used to evaluate the ability of a fabric or elastic textile material to stretch and recover after the application and removal of a specified load or extension.

      What standards are applicable?

      The equipment is intended for testing requirements associated with ASTM D3107 and ASTM D2594, depending on the material and test method.

      Who needs a Stretch Recovery Tester?

      Textile mills, garment factories, knitwear manufacturers, fabric manufacturers, QA/QC laboratories, R&D departments and textile testing laboratories can use this equipment.

      Is this machine available in Bangladesh?

      Yes. MAAM TEX offers this Stretch Recovery Tester from stock in Bangladesh, subject to current availability.

      Can I get a quotation?

      Yes. Contact MAAM TEX for the latest price, stock confirmation, delivery information and quotation.

      Ready Stock – Bangladesh

      No Need to Wait for Import

      Stretch Recovery Tester – Static Method Ready Stock | Competitive Price | Quick Delivery | Local Support For current stock status and quotation, please contact MAAM TEX.

      Call to Action

      Looking for a Stretch Recovery Tester in Bangladesh? Get the Stretch Recovery Tester – Static Method from MAAM TEX with ready-stock availability, competitive pricing and local support. Contact MAAM TEX today for Price & Stock Confirmation.

      Stretch Recovery Tester Static Method 

      Stretch Recovery Tester (Static Method)

      Stretch Recovery Tester

        A Stretch Recovery Tester Static Method is a lab instrument used to evaluate the stretch ability and recovery properties of fabrics, elastomers, or other stretchable materials. This method is crucial in textiles and material science to assess how well a material returns to its original shape after being stretched. Key Functions of Stretch Recovery Tester Static Method : - Measures elongation under a fixed force or length. - Assesses the recovery percentage after a specified recovery time once the force is removed. - Evaluates fabric's resilience, durability, and comfort properties. How It Works Stretch Recovery Tester  Static Method:
      1. A sample is stretched to a predetermined extension or force.
      2. The stretch is maintained for a set period.
      3. After removing the load, the recovery (return to original length) is measured after a fixed time.
      4. The fabric sample is clamped and stretched to a specific length or force.
      5. It’s held for a fixed duration (e.g., 1–5 minutes).
      6. The tension is released, and the sample is allowed to recover.
      7. The recovered length is measured after a set time.
      Main Components: - Fixed clamps to hold the sample. - Movable clamps for stretching. - Precision scale or ruler for measuring elongation and recovery. - Timing device (manual or digital) to control stretching and recovery periods. - To assess elastic recovery and dimensional stability after stretching. Applications: - Used in testing knitwear, sportswear, elastic fabrics, and compression garments. - Helps in product development and quality assurance. Stretch Recovery Tester Static Method is designed to determine the stretch recovery property of elastic material by static method. 2.0mm thickness stainless steel frame and base board, makes the tester firm and stable. Sample holder can be slid along the guide rail smoothly and can be fixed at any position of the rail. Test Scope:elastomeric material Testing Standards:ASTM D2594、ASTM D3107, etc. key features of a Stretch Recovery Tester Static Method: Adjustable clamps and measurement scale. - Timer for accurate stretch/recovery periods. - Simple mechanical design for ease of use. ✅ 1. Manual or Semi-Automatic Operation - Allows controlled stretching and recovery measurements. - Simple setup for routine quality control. ✅ 2. Adjustable Clamp System - Securely holds samples of various sizes and thicknesses. - Ensures consistent test conditions. ✅ 3. Precision Measurement Scale - Provides accurate readings of elongation and recovery length. - Often graduated in millimeters or inches. ✅ 4. Sturdy Frame - Made of corrosion-resistant metal or coated steel. - Ensures durability and stability during testing. ✅ 5. Time Control Support - Timer to monitor stretch and recovery durations. - Helps standardize test procedures. ✅ 6. Compact Design - Space-saving for lab environments. - Easy to move and operate. ✅ 7. Compliance with Standards - Often designed to meet standards like ASTM D3107 or BS 4294. Would you like a comparison with the dynamic method or specifications for a particular model? key benefits of using a Stretch Recovery Tester Static Method: ✅ 1. Accurate Fabric Performance Analysis- Provides reliable data on stretch and recovery, critical for assessing elasticity and fit. ✅ 2. Easy to Operate- Simple, manual setup makes it ideal for routine testing and quality control. ✅ 3. Cost-Effective- More affordable than dynamic testers, making it suitable for smaller labs or production units. ✅ 4. Standardized Testing- Supports industry-standard methods (e.g., ASTM D3107), ensuring consistency across tests. ✅ 5. Versatile Applications- Suitable for testing knit fabrics, elastic bands, spandex materials, and other stretchable textiles. ✅ 6. Durable and Low Maintenance- Mechanically straightforward with minimal upkeep required. ✅ 7. Enhances Product Development- Helps designers and manufacturers optimize materials for comfort, performance, and durability. Applications: - Textile R&D - Production quality control
      Stretch Recovery Tester (Static Method)

      Stretch Recovery Tester

      - Evaluating materials for comfort, durability, and fit Stretch Recovery Tester Diller In Bangladesh, Stretch Recovery Tester Importer In Bangladesh, Stretch Recovery Tester in Bangladesh, Stretch Recovery Tester in Bd, Stretch Recovery Tester In Uttara, Stretch Recovery Tester Price in Bangladesh, Stretch Recovery Tester Supplier in Bangladesh  
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      Random Tumble Pilling Tester

      Random Tumble Pilling Tester

      Physical Testing & Fabric Testing
      $0.00

      Random Tumble Pilling Tester

      Random Tumble Pilling Tester

      Random Tumble Pilling Tester

        The Random Tumble Pilling Tester is a specialized instrument designed to assess the pilling resistance of textile fabrics. Pilling refers to the formation of small, fuzzy balls (pills) on the fabric surface due to wear and friction. This tester simulates the wear conditions that fabrics experience during actual use, providing valuable data on their durability and appearance retention.   Purpose of Random Tumble Pilling Tester The primary function of the Random Tumble Pilling Tester is to evaluate how fabrics resist pilling, fuzzing, and matting. This assessment is crucial for manufacturers aiming to ensure the longevity and aesthetic quality of their textile products.   Working Principle of Random Tumble Pilling Tester The tester operates by placing fabric specimens into cylindrical test chambers lined with cork. Inside each chamber, a stainless steel impeller rotates at a high speed (typically around 1200 revolutions per minute), causing the fabric samples to tumble randomly. Compressed air is injected to enhance the tumbling action. This process simulates the friction and wear that fabrics undergo during regular use. After a predetermined duration, the samples are removed and visually assessed for pilling using standardized rating scales.   Key Specifications of Random Tumble Pilling Tester Test Chambers: Available in configurations of 2 or 4 chambers to accommodate multiple samples simultaneously. - Rotation Speed: Approximately 1200 revolutions per minute. - Chamber Dimensions: Typically around 146 mm in diameter and 152 mm in length. - Impeller Size: Standard impellers measuring about 121 mm. - Compressed Air Pressure: Adjustable, commonly between 14–21 kPa (2–3 psi). - Timer: Digital timer allowing precise control over test duration. - Power Supply: Generally operates on 220V, 50Hz power sources.   Applicable Standards of Random Tumble Pilling Tester The Random Tumble Pilling Tester complies with several international testing standards, ensuring its suitability for global applications:- ASTM D3512- ISO 12945-3- DIN 53867- JIS L 1076- GB/T 4802.4   Benefits of Random Tumble Pilling Tester - Realistic Simulation: Accurately replicates the wear and friction conditions fabrics face during actual use.- Standardized Testing: Adheres to international standards, facilitating consistent and comparable results.- Efficient Evaluation: Allows simultaneous testing of multiple samples, increasing laboratory throughput.- Quality Assurance: Provides manufacturers with critical data to improve fabric formulations and production processes. User-Friendly Operation: Features intuitive controls and clear viewing windows for easy monitoring.   Applications of Random Tumble Pilling Tester The Random Tumble Pilling Tester is widely used in various sectors of the textile industry: - Apparel Manufacturing: Assessing the durability of clothing fabrics. - Home Textiles: Evaluating materials used in upholstery, curtains, and bedding. - Quality Control Laboratories: Routine testing to ensure product consistency and compliance with standards.- Research and Development: Developing new fabrics with enhanced resistance to pilling.     Features of Random Tumble Pilling Tester:
      1. Multiple Test Chambers - Typically comes with 2 or 4 cork-lined chambers for simultaneous testing of multiple fabric samples.
      2. High-Speed Rotating Impellers - Impellers rotate at around 1200 rpm to create intense, random tumbling motion.
       
      1. Compressed Air System - Ensures continuous fabric movement and realistic simulation of wear.
      2. Digital Timer- Allows precise setting of test duration with easy-to-read display.
      3. Viewing Windows- Transparent chamber doors for monitoring fabric movement during testing.
      4. Standard Compliant Design- Meets ASTM D3512, ISO 12945-3, GB/T 4802.4 and other major standards.
       
      1. Robust Construction- Durable materials and components designed for long-term laboratory use.
      2. Easy Sample Handling - Quick-open chamber lids and simple sample placement process.
      3. Compact Footprint- Saves space in laboratory environments.
        How to Use Random Tumble Pilling Tester:
      1. Prepare Samples- Cut fabric into standard-sized specimens (usually circular or rectangular per ASTM/ISO specs)- Condition samples as per the standard (usually 24 hrs at 21°C, 65% RH).
      2. Load the Chambers - Place each sample into a cork-lined test chamber. - Add a small piece of gray cotton backing fabric if required by the method.
       
      1. Set Parameters - Adjust compressed air pressure (typically 14–21 kPa or 2–3 psi).
      - Set the test time (e.g., 30–60 minutes) using the digital timer.
      1. Start the Test- Close the chamber doors and press start. - Impellers rotate, tumbling the samples randomly with air flow.
       
      1. Stop and Unload - Once the timer ends, remove the samples carefully.
      2. Evaluate Pilling - Compare the tested samples to standard pilling rating photographs or scales.
      - Assign a rating from 1 (severe pilling) to 5 (no pilling).
      1. Record Results - Document the pilling grades and any observations.
          Random Tumble Pilling Tester [Scope of application]: It is used to test the fuzzing and pilling performance of the fabric under the condition of free rolling and friction in the drum. [Related standards]: GB/T4802.4 (Standard Drafting Unit) ISO12945.3, ASTM D3512, ASTM D1375, DIN 53867, ISO 12945-3, JIS L1076, etc. [Technical parameter]: 1. Number of boxes: 4 2. Roller specifications: diameter (146±1.0) mm, depth (152.4±1.0) mm; 3. Lining material: polychloroprene lining thickness (3.2±0.4) mm. , Hardness (60~70) IRHD; 4. Impeller specifications: φ12.7 mm×120.6 mm; 5. Plastic blade specifications: 10 mm×65 mm; 6. Rotation speed: 1~2400 rpm can be set freely 7. Working pressure: 14kPa~21kPa; 8. Time counting: (1~999) min. 9. Power supply: AC220V±10% 50Hz 80W 10. Appearance: (480×400×680)mm 11. Weight: 40kg [Standard accessories] Items and specifications Qty. Note Fuse 2 3A Main machine 1 Power cable 1 Air tube 1 Φ8mm Grey cotton sliver 4 Cork lining 4 Rating sample photo 1 White glue 1    
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      VeriVide Original D65 Tube Light Artificial Daylight 6500K
      Color Matching Cabinet -light Box

      VeriVide Original D65 Tube light

      Physical Testing & Fabric Testing, Dyeing Lab Machine, Lab Equipment & Instrument, Yarn Dyeing Machine & Equipment
      $0.00

      VeriVide Original D65 Tube Light – Artificial Daylight

      VeriVide Original D65 Tube Light Artificial Daylight 6500K

      VeriVide Original D65 Artificial Daylight Tube Light – 6500K, CRI 98

      Original VeriVide D65 Artificial Daylight Tube Light for Accurate Colour Assessment

      VeriVide Original D65 Tube Light – Artificial Daylight is a professional standardized daylight light source designed for accurate and consistent visual colour assessment. With a correlated colour temperature of 6500K and high CRI 98, the VeriVide D65 provides a controlled artificial daylight environment for evaluating colours, shades, textiles, garments, printed materials, plastics, paints, packaging and other products where colour consistency is critical.

      Natural daylight changes according to the time of day, weather, season, geographical location and surrounding conditions. These changes can create differences in visual colour evaluation. A standardized D65 artificial daylight source provides a controlled lighting condition so that colour decisions can be made consistently. VeriVide explains that using the same standardized artificial light source throughout the supply chain helps reduce problems caused by variations in natural daylight.

      The VeriVide Original D65 Artificial Daylight Tube is therefore an important replacement or lighting component for professional colour assessment cabinets, viewing systems and suitable standardized visual inspection environments.


      Product Overview

      Specification Details
      Product Name VeriVide D65 Artificial Daylight Tube Light
      Brand VeriVide
      Light Source D65 Artificial Daylight
      Correlated Colour Temperature 6500K
      Colour Rendering Index CRI 98
      Lamp Type T8
      Available Length 600 mm / 1200 mm / 1500 mm
      Available Power 18W / 36W / 58W
      Application Colour Assessment & Visual Inspection
      Colour Evaluation Standardized Artificial Daylight
      Typical Use Textile, Garments, Printing, Packaging, Paint, Plastic & Manufacturing
      Manufacturer VeriVide
      Product Codes 600D65 / 1200D65 / 1500D65

      Specifications are based on VeriVide's published lamp information. Availability of individual lengths/models should be confirmed at the time of order.


      What is VeriVide D65 Artificial Daylight?

      VeriVide Original D65 Tube light is a standardized daylight illuminant representing daylight with a correlated colour temperature of approximately 6500 Kelvin. VeriVide describes D65 as the international standard measure of daylight based around a mean colour temperature of 6500K.

      The purpose of D65 lighting is not simply to provide a bright white light. Instead, it provides a standardized spectral lighting condition suitable for professional visual colour assessment.

      Two products can sometimes appear to have the same colour under one light source but look different under another. This phenomenon is known as metamerism. For this reason, professional colour assessment requires controlled and standardized illumination. VeriVide specifically highlights the importance of viewing colour samples under standardized lighting conditions to identify colour differences and metameric effects.

      VeriVide Original D65 Tube light is engineered for this type of controlled colour assessment environment.


      Why Choose Original VeriVide D65 Tube Light?

      Colour evaluation is an important part of quality control in many industries. A small difference in colour can result in rejection of fabric, garments, packaging, printed materials or finished products.

      Using ordinary room lighting or an uncontrolled daylight source may produce inconsistent visual results. The VeriVide D65 provides a standardized artificial daylight source designed specifically for professional colour assessment.

      Key advantages include:

      • 6500K standardized D65 daylight
      • High CRI 98
      • Designed for accurate visual colour assessment
      • Consistent lighting conditions
      • Suitable for professional colour matching
      • Helps reduce variations caused by natural daylight
      • Suitable for colour assessment equipment and viewing systems
      • Available in multiple tube lengths
      • Suitable for textile and garment quality control
      • Useful for identifying colour differences and metamerism
      • Original VeriVide replacement lamp

      VeriVide states that its D65 lamp has a CRI of 98, allowing colours to be rendered more accurately than lower-CRI light sources.


      Technical Specifications

      1. Correlated Colour Temperature – 6500K

      VeriVide Original D65 Tube light has a 6500K correlated colour temperature.

      6500K is the defining colour-temperature characteristic of D65 artificial daylight. It produces a cool daylight appearance suitable for professional colour evaluation.

      This is particularly important when colour standards and product samples need to be compared under controlled lighting conditions.


      2. High Colour Rendering Index – CRI 98

      VeriVide Original D65 Tube light is specified with a CRI of 98.

      CRI, or Colour Rendering Index, indicates how accurately a light source renders colours in comparison with a reference light source. A higher CRI is generally desirable for visual colour assessment because it allows colours to be represented more accurately.

      For applications such as textile shade matching, garment inspection and product colour comparison, high colour rendering performance is an important consideration. VeriVide lists its D65 lamp with CRI 98.


      3. T8 Tube Design

      The VeriVide D65 fluorescent lamp is available in T8 format.

      The T8 designation refers to the tube diameter/type used by the lamp. The official VeriVide specification lists D65 versions in 600 mm, 1200 mm and 1500 mm lengths, with corresponding 18W, 36W and 58W power ratings.


      Available VeriVide D65 Models

      VeriVide 600D65

      • Length: 600 mm
      • Power: 18W
      • Tube Type: T8
      • CCT: 6500K
      • CRI: 98
      • Product Code: 600D65

      VeriVide 1200D65

      • Length: 1200 mm
      • Power: 36W
      • Tube Type: T8
      • CCT: 6500K
      • CRI: 98
      • Product Code: 1200D65

      VeriVide 1500D65

      • Length: 1500 mm
      • Power: 58W
      • Tube Type: T8
      • CCT: 6500K
      • CRI: 98
      • Product Code: 1500D65

      These three D65 configurations are listed in VeriVide's official lamp specification.


      Application of VeriVide Original D65 Tube light

      The VeriVide D65 Artificial Daylight Tube is suitable for applications where standardized daylight illumination is required for visual inspection and colour assessment.

      Textile Industry

      The textile and garment industry is one of the major applications for D65 artificial daylight.

      Textile manufacturers, dyeing factories, garment factories, buying houses and quality-control laboratories need to compare fabric samples, dyed yarns, garments and colour standards under controlled lighting.

      Typical applications include:

      • Fabric shade matching
      • Garment colour inspection
      • Yarn colour comparison
      • Dyed fabric inspection
      • Colour approval
      • Lab dip assessment
      • Bulk production shade checking
      • Colour standard comparison
      • Final garment inspection
      • Buyer sample approval

      Using standardized lighting helps different departments and organizations evaluate the same colour under similar viewing conditions.


      Colour Matching

      Colour matching requires more than simply checking whether two samples look similar.

      A sample may appear acceptable under one light source but show a noticeable difference under another light source. This is particularly important in textile, garment and manufacturing applications.

      VeriVide Original D65 Tube light provides a standardized daylight reference for visual assessment.

      For example, a laboratory may compare:

      Approved Colour Standard → Lab Dip → Bulk Fabric

      All three samples can be evaluated under the same D65 lighting condition.

      This provides a more controlled environment for colour decisions.


      Metamerism Assessment

      Metamerism occurs when two colours appear to match under one lighting condition but appear different under another.

      This can create serious problems in textile and product manufacturing.

      For example:

      • Fabric A may match the approved standard under one light.
      • Under daylight, Fabric A may appear different.
      • Under store lighting, the difference may become even more noticeable.

      VeriVide Original D65 Tube light recommends standardized viewing environments because changing illumination can reveal colour differences that may not be visible under another light source.

      VeriVide Original D65 Tube light light source can therefore form an important part of a professional colour assessment system.


      Use in VeriVide Colour Assessment Cabinets

      VeriVide colour assessment cabinets can be configured with standardized light sources including D65 and D50, along with other illuminants depending on the application.

      The D65 tube is particularly useful where daylight-standard colour assessment is required.

      A typical colour assessment cabinet may contain multiple light sources to allow the operator to check colour behaviour under different lighting conditions.

      This can help identify:

      • Colour inconsistency
      • Metamerism
      • Shade variation
      • Fluorescence-related appearance
      • Differences between product and colour standard

      Use in Textile Testing Laboratories

      Textile testing laboratories require controlled and repeatable environmental conditions for visual assessments.

      VeriVide Original D65 Tube light can be used as part of an appropriate viewing cabinet or visual inspection system for:

      • Colour fastness assessment
      • Shade evaluation
      • Fabric colour grading
      • Garment inspection
      • Pilling assessment
      • Appearance assessment
      • Colour matching
      • Standard comparison

      VeriVide Original D65 Tube light own textile testing equipment uses CIE D65 artificial daylight for standardized visual assessment applications. For example, its Pilling Assessment Viewer uses VeriVide CIE D65 Artificial Daylight for assessment under relevant EN ISO 12945 methods.


      Colour Fastness Assessment

      Visual evaluation is also important in textile colour fastness testing.

      A controlled D65 light source can provide standardized viewing conditions when comparing test specimens with reference standards.

      VeriVide's Colour Fastness Cabinet, for example, uses D65 Artificial Daylight at 6500K as one of its standardized light sources, together with UV black light for relevant assessment applications.


      Benefits for Garment Manufacturers

      For garment manufacturers, colour consistency is essential from sampling through bulk production.

      The VeriVide Original D65 Tube light can help establish a controlled visual environment for:

      Sampling

      Compare the original colour standard with lab dips and development samples.

      Production

      Check whether bulk production remains within the approved colour range.

      Quality Control

      Evaluate finished garments before shipment.

      Buyer Inspection

      Provide a standardized environment for colour approval.

      Final Inspection

      Reduce the possibility of colour disputes caused by inconsistent lighting.


      Benefits for Textile Dyeing Factories

      In dyeing factories, colour decisions are often made at several stages.

      These may include:

      1. Recipe development
      2. Lab dip preparation
      3. Lab dip approval
      4. Bulk dyeing
      5. Shade checking
      6. Finishing
      7. Final inspection
      8. Shipment inspection

      Using a standardized VeriVide Original D65 Tube light source can help maintain consistent visual conditions across these stages.

      This is especially useful when several people are involved in colour evaluation.


      Standards and Compliance

      The VeriVide Original D65 Tube light is specified by VeriVide for use as a D65 artificial daylight source.

      According to VeriVide's published lamp information, the D65 lamp has a 6500K correlated colour temperature, is within the tolerances prescribed in BS 950 Part 1, and has high conformance to relevant CIE specifications for accurate colour matching. VeriVide's current documentation also references ISO/CIE 23603 / CIE S 012/E for D65 applications.

      Depending on the particular testing method, viewing cabinet and industry application, additional standards may apply. Users should always verify the exact lighting requirements specified by their applicable test method, buyer or customer.


      Why Standardized Lighting Matters

      Natural daylight is not constant.

      It can change due to:

      • Time of day
      • Weather
      • Season
      • Geographic location
      • Atmospheric conditions
      • Window orientation
      • Surrounding environment

      Because of these factors, a colour sample may look different at different times or locations.

      VeriVide notes that these natural-light variations can cause colour consistency problems throughout a supply chain. Standardized artificial light provides a controlled alternative.

      For international textile and garment supply chains, this is especially important because a buyer, manufacturer and supplier may be located in different countries.


      VeriVide D65 vs Ordinary Daylight

      Feature VeriVide D65 Ordinary Natural Daylight
      Standardized Yes No
      Colour Temperature 6500K Variable
      Controlled Environment Yes No
      Colour Assessment Professional Variable
      Repeatability High Low
      Weather Dependent No Yes
      Time-of-Day Dependent No Yes
      Suitable for Standardized Colour Evaluation Yes Not recommended as sole reference

      The purpose of VeriVide D65 is therefore to provide a more consistent and controlled lighting condition than relying on natural daylight alone.


      VeriVide Original D65 Tube Replacement

      For existing VeriVide viewing cabinets and compatible systems, correct lamp replacement is important.

      VeriVide recommends replacing lamps after their specified service life because the spectral output of lamps can change with usage. The manufacturer notes a 2000-hour life-cycle recommendation for its lamps and recommends replacement after 2000 hours or one year of use to maintain reliable colour assessment conditions.

      When replacing a lamp, users should verify:

      • Correct VeriVide D65 specification
      • Correct tube length
      • Correct wattage
      • Correct tube type
      • Compatibility with the existing equipment
      • Applicable voltage and ballast requirements

      How to Select the Correct D65 Tube

      Before ordering a replacement VeriVide D65 tube, check the existing lamp.

      Step 1 – Check the Length

      Measure the existing tube.

      Available VeriVide D65 lengths include:

      • 600 mm
      • 1200 mm
      • 1500 mm

      Step 2 – Check Wattage

      The corresponding official specifications are:

      • 600 mm – 18W
      • 1200 mm – 36W
      • 1500 mm – 58W

      Step 3 – Check Tube Type

      The listed D65 versions are T8.

      Step 4 – Check Equipment Compatibility

      If the lamp is being installed into a VeriVide viewing cabinet or colour assessment equipment, confirm the equipment model before ordering.

      Step 5 – Confirm Original Product Requirement

      For professional colour assessment, use the correct standardized lamp rather than an ordinary commercial daylight tube.


      Suitable Industries

      The VeriVide Original D65 Tube Light can be relevant to many industries, including:

      Textile & Garments

      Fabric, yarn, garment and shade evaluation.

      Dyeing & Finishing

      Lab dip and bulk shade comparison.

      Printing

      Visual colour checking of printed materials.

      Packaging

      Colour consistency of packaging materials.

      Plastics

      Colour and appearance inspection.

      Paint & Coating

      Visual colour comparison.

      Automotive

      Component colour and appearance assessment.

      Furniture

      Fabric, leather, plastic and surface colour evaluation.

      Graphic Arts

      Visual inspection under controlled lighting where the relevant D65 specification is applicable.


      Key Features at a Glance

      VeriVide Original D65 Tube light offers:

      • Original VeriVide D65 light source
      • 6500K correlated colour temperature
      • CRI 98
      • T8 tube format
      • Multiple length options
      • Standardized artificial daylight
      • Professional colour assessment
      • Consistent visual inspection conditions
      • Suitable for textile and garment industries
      • Suitable for colour matching
      • Useful for metamerism assessment
      • Suitable for compatible VeriVide equipment
      • Professional replacement lamp solution

      Frequently Asked Questions

      What is a VeriVide D65 Tube Light?

      VeriVide D65 is a standardized artificial daylight lamp designed to provide controlled D65 illumination for professional visual colour assessment.

      What is the colour temperature of VeriVide D65?

      The VeriVide D65 Artificial Daylight Tube has a correlated colour temperature of 6500K.

      What is the CRI of VeriVide Original D65 Tube light ?

      The official VeriVide specification lists the D65 lamp with CRI 98.

      What lengths are available?

      The official specification lists 600 mm, 1200 mm and 1500 mm versions.

      What are the wattages?

      The listed versions are 18W, 36W and 58W, corresponding respectively to 600 mm, 1200 mm and 1500 mm lengths.

      Is VeriVide Original D65 Tube light suitable for textile colour matching?

      Yes. D65 standardized daylight is widely used in controlled visual colour assessment, including textile and garment applications. VeriVide specifically describes D65 as being specified for applications where colour consistency and quality need to be maintained.

      Why should I use Original VeriVide D65 instead of an ordinary 6500K tube?

      A tube being labelled “6500K” does not by itself make it a standardized VeriVide D65 colour-assessment lamp. Professional colour assessment depends on the characteristics of the light source, not only its nominal colour temperature. VeriVide's D65 lamp is designed and specified as an artificial daylight source for standardized colour assessment.

      When should the D65 lamp be replaced?

      VeriVide recommends replacement after approximately 2000 hours or one year of use to maintain reliable assessment conditions.

      Can this lamp be used in any T8 fixture?

      Not necessarily. Compatibility with the fixture, ballast, electrical requirements and intended application should be checked before installation.


      Product Applications

      VeriVide D65 Artificial Daylight Tube Light is suitable for:

      • Textile Testing Laboratory
      • Garment Factory
      • Dyeing Factory
      • Fabric Inspection
      • Colour Matching Laboratory
      • Quality Control Laboratory
      • Buying House
      • Apparel Industry
      • Printing Industry
      • Packaging Industry
      • Plastic Industry
      • Paint Industry
      • Product Inspection
      • Colour Assessment Cabinet
      • Viewing Cabinet
      • Visual Inspection System

      Why Buy VeriVide D65 from MAAM TEX?

      MAAM TEX supplies textile testing instruments, laboratory equipment, colour assessment products and related consumables for textile and garment industries.

      For customers requiring VeriVide Original D65 Artificial Daylight Tube Light, we can provide the appropriate specification based on your existing equipment, required tube length and application.

      Before placing an order, please provide:

      1. Required quantity
      2. Tube length – 600 / 1200 / 1500 mm
      3. Existing machine/cabinet model, if applicable
      4. Required wattage
      5. Photo of the existing tube, if available

      This information helps ensure that the correct replacement lamp is supplied.


      Ordering Information

      Product:

      VeriVide Original D65 Tube Light – Artificial Daylight

      Available Options:

      600D65
      600 mm / 18W / T8 / 6500K / CRI 98

      1200D65
      1200 mm / 36W / T8 / 6500K / CRI 98

      1500D65
      1500 mm / 58W / T8 / 6500K / CRI 98

       current stock Available  


      Conclusion

      The VeriVide Original D65 Tube Light – Artificial Daylight is a professional standardized daylight source for controlled visual colour assessment. With 6500K colour temperature and CRI 98, it is designed for applications where colour consistency, repeatability and accurate visual evaluation are important.

      For textile and garment manufacturers, dyeing factories, testing laboratories, buying houses and quality-control departments, a standardized D65 lighting environment can help create more consistent colour evaluation conditions and reduce problems associated with variable natural daylight.

      For compatible VeriVide equipment and professional colour assessment applications, selecting the correct Original VeriVide D65 lamp is important for maintaining the intended lighting conditions of the system.

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      Fiber Oil Fast Extractor
      Fiber Oil Fast Extractor

      Fiber Oil Fast Extractor

      Physical Testing & Fabric Testing
      $0.00

      Fiber Oil Fast Extractor

      Fiber Oil Fast Extractor

      Fiber Oil Fast Extractor

        A Fiber Oil Fast Extractor is a laboratory instrument designed to determine the oil or finish content in fibers, yarns, or fabrics, particularly wool and synthetic materials. It operates on the principle of solvent extraction followed by evaporation.   Working Principle of Fiber Oil Fast Extractor:
      1. Sample Preparation: Cut the fabric or fiber into small pieces.
      2. Solvent Addition: Place the sample into a metal tube and add an appropriate solvent (e.g., petroleum ether, ethyl ether).
       
      1. Extraction: Apply weight to the sample to facilitate the dissolution of oils into the solvent.
      2. Evaporation: The solvent-oil mixture drips onto a heated plate where the solvent evaporates, leaving behind the oil.
      3. Measurement: Weigh the remaining oil and calculate its percentage relative to the initial sample mass.
        Key Features of Fiber Oil Fast Extractor: - Multiple Workstations: Models like the Quick Extra offer four independent stations for simultaneous testing.- Automatic Weight Pressurization: Eliminates manual pressure application, ensuring consistent results.- Microcomputer Temperature Control: Maintains uniform heating (typically 90°C–120°C) with ±1°C precision.   - Digital Interface: Features timers and oil calculators for efficient operation. - Data Connectivity: Some models can connect to systems like Smart Tex Lab for real-time monitoring and data management.   Applications of Fiber Oil Fast Extractor: - Textile Industry: Assessing oil content in fibers to ensure quality and compliance with standards like GB/T 6504-2017. - Research and Development: Studying the effects of oils and finishes on fiber properties. - Quality Control: Ensuring consistency in fiber treatment processes.   Benefits of Fiber Oil Fast Extractor:
      1. Accurate Oil Content Measurement- Precisely determines oil or finish content in fibers, crucial for quality control.
      2. Rapid Extraction Process - Delivers fast results, improving lab efficiency and productivity.
      3. Simultaneous Multi-Sample Testing - Multiple workstations (e.g., 4 at once) reduce testing time for bulk samples.
       
      1. Improved Product Quality - Helps maintain consistent oil levels, which affect dyeing, processing, and fabric performance.
      2. Automatic Operation - Automated pressing and heating reduce manual effort and operator error.
      3. Digital Monitoring - Built-in timer, temperature control, and oil calculator enhance accuracy and usability.
       
      1. Compliance with Standards - Supports industry methods like GB/T 6504-2017, ensuring reliable and standard-compliant results.
      2. Safe Solvent Handling - Enclosed design minimizes solvent exposure and evaporation loss.
        Features of Fiber Oil Fast Extractor:
      1. Multiple Test Stations - Usually equipped with 2 to 4 independent work units for parallel testing.
      2. Automatic Weight Pressing System - Applies consistent pressure on samples for uniform solvent extraction.
      3. Microcomputer Temperature Control - Maintains precise heating (typically 90–120°C) with ±1°C accuracy.
       
      1. Built-in Timer and Calculator - Allows setting extraction time and calculates oil content directly.
      2. Solvent Evaporation Plate- Heats and evaporates solvent quickly, leaving only the oil residue.
      3. Digital Display - Shows time, temperature, and process status for user-friendly operation.
      4. Compact and Durable Design - Made with corrosion-resistant materials suited for chemical handling.
       
      1. Safety Features - Includes overheat protection and enclosed solvent chamber to reduce exposure risk.
      2. Standard Compliant - Designed to meet GB/T 6504-2017 and similar industry testing standards.
        How to Use Fiber Oil Fast Extractor:
      1. Prepare the Sample - Cut 5–10 g of fiber or yarn into small pieces and place in the sample tube.
      2. Add Solvent - Pour a suitable solvent (e.g., petroleum ether) into the tube to cover the sample.
      3. Apply Weight - Place the extractor's weight or press system onto the sample to aid extraction.
       
      1. Start Extraction - Activate the machine. The solvent dissolves the oils and flows to the heating plate.
      2. Heat for Evaporation - Set the temperature (typically 90–120°C). The solvent evaporates, leaving oil on the plate.
      3. Measure Oil Content- After drying, weigh the remaining oil. Use the built-in calculator or formula:
      Oil % = (Oil weight / Original sample weight) × 100
      1. Clean the Unit - After cooling, clean all parts to prepare for the next test.
        Fiber Oil Fast Extractor

        Fiber Oil Fast Extractor

       
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      Fabric Flame Retardant Tester

      Fabric flame retardant tester

      Dyeing Lab Machine, Physical Testing & Fabric Testing
      $0.00
      Fabric Flame Retardant Tester
      Fabric Flame Retardant Tester

      Fabric Flame Retardant Tester

        A Fabric Flame Retardant Tester is a specialized laboratory instrument designed to evaluate the flammability characteristics of textiles. It assesses how fabrics react to direct flame exposure, measuring parameters such as ignition time, flame spread rate, after-flame duration, and afterglow time. This testing is crucial for ensuring that textiles meet safety standards for various applications, including apparel, home furnishings, and industrial uses.   Purpose and Applications The primary purpose of a Fabric Flame Retardant Tester is to determine the flame resistance of textile materials. This is essential for:- Apparel Safety: Ensuring garments, especially children's sleepwear and industrial work wear, meet flammability standards. - Home Textiles: Testing curtains, drapes, upholstery, and bedding for fire safety compliance. - Technical Textiles: Evaluating materials used in tents, protective clothing, and automotive interiors.   ⚙️ Key Features Modern Fabric Flame Retardant Testers incorporate several features to ensure accurate and reliable testing:- Adjustable Burner Angles: Allowing tests at various orientations (e.g., 0°, 45°, 90°) to simulate different real-world scenarios. Automated Ignition Systems: Providing consistent flame application and reducing operator variability. - Digital Timing Mechanisms: Accurately recording ignition time, flame spread, after-flame, and afterglow durations.   - Transparent Observation Windows: Enabling safe monitoring of the test without exposure to hazards. - Compliance with International Standards: Meeting protocols such as ASTM D6413, ISO 6941, and EN ISO 15025 for standardized testing procedures.   Testing Standards Fabric Flame Retardant Testers are designed to comply with various international standards, including: - ASTM D6413: Standard Test Method for Flame Resistance of Textiles (Vertical Test). - ISO 6941: Textiles — burning behavior — Measurement of flame spread properties of vertically oriented specimens. - EN ISO 15025: Protective clothing — Protection against heat and flame — Method of test for limited flame spread.   ️ How It Works
      1. Sample Preparation: A fabric specimen is cut to specified dimensions and conditioned as per standard requirements.
      2. Mounting: The sample is mounted vertically or at a specified angle in the testing chamber.
      3. Ignition: A controlled flame is applied to the fabric for a predetermined time.
      4. Observation: The tester records ignition time, flame spread, after-flame time, and afterglow time.
      5. Evaluation: Results are compared against standard criteria to determine compliance.
          ✅ Benefits - Safety Assurance: Ensures textiles meet fire safety regulations, reducing risk in end-use applications. - Quality Control: Identifies flammability issues during the manufacturing process. - Regulatory Compliance: Helps manufacturers meet legal requirements for flammability. - Product Development: Assists in developing flame-retardant materials for specialized applications.   For more detailed information on specific models and their features, you can refer to manufacturers like SDL Atlas's Auto Flam Flammability Tester [1], TESTEX's Vertical Flammability Chamber TF312   How to Use a Fabric Flame Retardant Tester (Vertical Flammability Test Method):
      1. Prepare the Sample
      - Cut the fabric to standard dimensions (usually 300 × 75 mm). - Condition the fabric for 24 hours at 21°C and 65% relative humidity.  
      1. Mount the Sample
      - Place the fabric vertically in the frame inside the test chamber. - Ensure it's held securely with no folds or slack.  
      1. Set Up the Burner Position the burner at the required angle (usually 90° for vertical tests).
      - Adjust flame size according to the standard (about 38 mm for ASTM D6413).
      1. Ignite the Flame - Apply the flame to the bottom edge of the fabric for 12 seconds.
       
      1. Observe and Measure - Start timing when flame is applied.
      - Measure: - After-flame time (how long it burns after flame removal) - After-glow time (how long it glows after burning stops) - Char length (distance burned vertically)  
      1. Record the Results
      - Repeat the test on multiple samples (usually 5) and calculate averages.  
      1. Compare with Standards
      - Evaluate whether the results meet the required flame resistance limits.     fabric flame retardant tester IV type (small 450 method) Scope of application It is used for testing the intensity and speed of burning of flammable textile materials after ignition. (specific ignition nozzles and sample holders can be customized to meet multiple criteria). Related standards GB/T14644 ASTM D1230 CFR1610 etc. Technical parameters 1. The spread of time:0 ~ 999.9S resolution 0.1S 2. The temperature inside the box shows:Room temperature -99 degrees C resolution 1 c 3. Igniting time:1S 4. Type of igniter:4 1/2 syringe 5. Sample clip size:Outer frame:204mm * 78mm inner frame:152mm×38mm 6. Distance from the top of the igniter to the sample surface:8mm 7. Studio size and outline size Studio size:370mm×220mm×350mm Outline size:375mm×245mm×478mm 8. Power supply:AC220V 50Hz 20W 9. Weight:18Kg  
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