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Xenon Arc Light Fastness Tester
Xenon Arc Light Fastness Tester
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    Xenon Arc Light Fastness Tester
    Xenon Arc Light Fastness Tester
    Home Physical Testing & Fabric Testing Xenon Arc Light Fastness Tester
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    Xenon Arc Light Fastness Tester

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    Category: Physical Testing & Fabric Testing Tags: Lab Xenon Arc Light Fastness Tester, Laboratory Xenon Arc Light Fastness Tester, Xenon Arc Light Fastness Tester, Xenon Arc Light Fastness Tester price in Bangladesh Brand: DARONG
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    Description

    Xenon Arc Light Fastness Tester

    Xenon Arc Light Fastness Tester

    Xenon Arc Light Fastness Tester

     

    Xenon Arc Light Fastness Tester is a laboratory instrument used to evaluate the color fastness of textiles and materials when exposed to sunlight or artificial light. It simulates full-spectrum sunlight using a xenon arc lamp, making it ideal for assessing how materials resist fading over time.

     

    Purpose of Xenon Arc Light Fastness Tester:

    To determine how well a fabric or material maintains its color and integrity under prolonged light exposure, especially for outdoor or light-sensitive applications.

     

    Working Principle of Xenon Arc Light Fastness Tester :

    A xenon arc lamp emits light similar to natural sunlight. Fabric samples are exposed under controlled temperature, humidity, and light intensity. The degree of fading is compared to standard blue wool scales to assign a light fastness rating.

     

    Main Components Xenon Arc Light Fastness Tester :

    – Xenon Arc Lamp: Simulates sunlight (UV, visible, and infrared).

    – Sample Holder: Rotates samples for uniform exposure.

    – Environmental Controls: Maintains specific temperature and humidity.

    – Control Panel/Software: Sets test parameters (light, time, humidity, etc.).

    – Filters: Control the light spectrum (e.g., daylight, window glass).

     

    Applications:

    – Textiles

    – Automotive interiors

    – Plastics, paints, and coatings

    – Outdoor fabrics and furnishings

     

    Benefits of Xenon Arc Light Fastness Tester:

    1. Realistic Sunlight Simulation – Accurately mimics full-spectrum natural sunlight, including UV, for reliable light fastness testing.
    2. Standard Compliance – Meets international standards like ISO 105-B02, AATCC TM16, and ASTM G155, ensuring globally accepted results.
    3. Improves Product Durability – Helps manufacturers assess and improve resistance to color fading, cracking, or degradation from light exposure.

     

    1. Versatile Applications – Suitable for testing textiles, plastics, paints, leather, and coatings.
    2. Controlled Test Conditions – Offers precise control over temperature, humidity, and light intensity, improving test consistency and repeatability.
    3. Supports Quality Assurance – Detects early failures in colorfastness, enabling better product design and material selection.

     

    1. Automated Operation – Programmable tests and automatic monitoring reduce operator involvement and errors.
    2. Accelerated Testing – Speeds up evaluation by simulating months or years of sun exposure in a few days or weeks.

     

    Features of Xenon Arc Light Fastness Tester:

    1. Xenon Arc Lamp – Provides full-spectrum light (UV, visible, IR) to simulate natural sunlight accurately.
    2. Programmable Control System – Digital or touchscreen interface for setting test parameters like exposure time, temperature, humidity, and irradiance.

     

    1. Humidity and Temperature Control – Maintains precise environmental conditions inside the test chamber.
    2. Rotating Sample Carousel – Ensures uniform light exposure on all test specimens.
    3. Light Spectrum Filters- Adjustable filters simulate different light conditions (e.g., daylight, window glass, outdoor).

     

    1. Standards Compliance- Meets ISO, AATCC, ASTM, and other global test methods for light fastness.
    2. Automatic Irradiance Control – Maintains constant light intensity throughout testing, improving accuracy.
    3. Safety Features – Includes overheating protection, door interlock, and lamp monitoring system.

     

    1. Data Logging and Export – Some models offer USB or software integration for saving and analyzing test data.
    2. Durable and Insulated Chamber – Built with high-quality materials for stable testing and long-term use.

     

    How to Use Xenon Arc Light Fastness Tester:

    1. Prepare the Samples

    – Cut fabric or material into standard-size specimens.

    – Label and condition samples (usually 24 hrs at 21°C, 65% RH).

    1. Mount the Samples – Attach samples onto holders or clips, placing them evenly on the rotating drum or carousel.

     

    1. Insert Blue Wool Standards- Include standard blue wool reference fabrics to compare light fastness.
    2. Set Test Parameters

    – Use the control panel to set:

    – Irradiance (e.g., 0.35 W/m² at 420 nm)

    – Temperature and humidity

    – Test duration (e.g., 24–72 hrs or more)

    1. Start the Test – Close the chamber door and begin the exposure cycle.
    2. Monitor Progress- System auto-adjusts irradiance and logs test conditions. Periodically check if needed.

     

    1. End and Remove Samples – After completion, stop the test and remove the samples and blue wool references.
    2. Evaluate Results – Compare the sample fading to the blue wool scale to assign a light fastness rating (1–8 scale).

     

     

    Xenon Arc Light Fastness Tester

    [Scope of application]

    It is used for the light fastness and weather fastness test in the color fastness test. It
    can also be used for the light fastness test and light fastness test of paints,
    pigments, coatings, rubber, plastics, wood floors, paper and other materials. Aging
    test.
    Related Standards of Xenon Arc Light Fastness Tester

    GB/T8427 (China National Standard Drafting Unit)
    GB/T15102-2006 GB/T14576 GB/T15104-2006 GB/T8430 AATCC TM16 ISO105-B04
    ISO105-B02 etc.

    Instrument characteristics of Xenon Arc Light Fastness Tester

    1. Digital setting of light intensity, real-time monitoring, and automatic adjustment
    to meet the stability requirements of different standards for test light sources
    (420nm can be switched; 300-800nm or 300-400nm band monitoring);
    2. Standard Blackboard Thermometer (BST) and Blackboard Thermometer (BPT)
    can be selected for use, and are tested at the same station (equal distance) as the
    sample, which truly reflects the tested condition of the sample;

    3. The measured data is processed by the CPU and displayed on the color screen in
    the form of numbers, graphs, curves, etc., without stopping for observation;
    4. Microchip’s 32-bit intelligent CPU, high-efficiency real-time control, to ensure
    accurate reproduction of the same test environment;

    5. 7-inch color screen display and control, multiple test monitoring modes
    (animation, numbers, charts), convenient control, intuitive and clear;
    6. All sample holders can be timed separately, and different samples can be tested
    on the same machine, which is convenient for test monitoring and reduces
    operating costs;
    7. Rated 1500W long arc xenon lamp technology, high efficiency and energy saving,
    real simulation of sunlight spectrum;
    8. Industrial temperature control (refrigeration) system, rapid and stable
    temperature adjustment in the test chamber;

    9. Built-in self-circulation system and air filtration system, greatly reducing
    environmental requirements;
    10. European traceable spectrum analyzer, multi-measurement calibration;
    11. Built-in network communication module, can customize the remote monitoring
    function of mobile phone APP;
    12. The instrument can be optionally equipped with thermal printout or data
    export of test environment parameters;
    13. The quality assurance that one test can run continuously for 1000 hours

    [Technical Parameters]1. Temperature control range of test chamber: (20~50)℃; accuracy: ±2℃
    2. Test chamber humidity control range: (15~95)%RH, accuracy: ±5%RH
    3. Test time control range: 0~9999:59 (h:min); accuracy: ±1min

    4. Irradiance control range:
    (0.80~1.60)W/m2/420nm Accuracy: ±0.02W/m2/420nm
    (25-60)W/m2/300-400nm Accuracy: ±2W/m2/420nm
    (300-650)W/m2/300-800nm Accuracy: ±10W/m2/420nm
    Digital setting, automatic compensation
    Xenon light source:
    a. Rated power of xenon arc lamp: 1.5kW;
    b. Color temperature: 5500K~6500K;

    6. Sample:
    a. Rotation speed of sample holder: 5rpm
    b. Diameter of sample holder distribution: 286mm
    c. The size and number of sample holders that can be installed:
    GB standards AATCC(Optional)
    Specimen clamp size

    203mm×
    48mm
    220mm×92mm
    Maximum sample size
    135mm×
    45mm
    150mm×90mm
    Maximum exposure area
    118mm×
    33mm
    130mm×50mm
    Maximum number of
    pieces
    13
    6
    d. Timing of each sample holder separately: range: 0~9999:59 (h: min); accuracy: ±
    1min
    e. Sample thickness: ≤3mm

    7. Standard Blackboard Thermometer (BST) range:
    (20~75)℃; Resolution: 0.1℃, Accuracy: ±2℃
    Or optional blackboard temperature (BPT) range:
    (25~80)℃, resolution: 0.1℃, accuracy: ±2℃
    8.7 inch touch screen operation
    9. Stand-alone with thermal printer (optional)

    10. Power supply: AC220V±10% 50Hz 3.5kW
    11. Dimensions: 1130mm×760mm×1895mm
    12.Weight: about 380kg
    (Note: The equipment test conforms to the standard based on the above basic
    configuration and parameters. If it involves other standards and the test exceeds
    the above technical content, please contact our company for special
    customization)

     

    (Note: The equipment test conforms to the standard based on the above basic
    configuration and parameters. If it involves other standards and the test exceeds
    the above technical content, please contact our company for special
    customization)

     

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      Hydraulic GSM Cutter
      Hydraulic GSM Cutter

      Hydraulic GSM Cutter

      Lab Equipment & Instrument, Physical Testing & Fabric Testing
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      Hydraulic GSM Cutter

      Hydraulic GSM Cutter

      Hydraulic GSM Cutter

        A Hydraulic GSM Cutter is a precision instrument used to cut circular fabric samples for GSM (Grams per Square Meter) testing. It uses hydraulic pressure to ensure clean, uniform cuts through multiple fabric layers, making it ideal for high-throughput or thicker materials.   Purpose of Hydraulic GSM Cutter: - To prepare accurate circular samples (usually 100 cm² area) for determining fabric weight in GSM. - Used widely in textile testing labs for quality control and consistency.   Working Principle of Hydraulic GSM Cutter: - Fabric is placed on a cutting pad. - The cutter, equipped with a sharp circular blade, is hydraulically pressed down on the fabric. - The cut sample is then weighed to calculate GSM using a formula or GSM scale.   Applications of Hydraulic GSM Cutter: - Suitable for woven, knitted, and nonwoven fabrics. - Used in textile mills, labs, and R&D centers.   Benefits of Hydraulic GSM Cutter:
      1. High Cutting Precision - Ensures consistent and accurate fabric sample size for reliable GSM results.
      2. Effortless Operation- Hydraulic action reduces manual effort and operator fatigue.
      3. Ideal for Thick or Multi-Layer Fabrics - Cuts through dense or multiple fabric layers cleanly.
       
      1. Time-Saving - Speeds up the sample preparation process, especially for high-volume testing.
      2. Improves Test Accuracy - Uniform samples help eliminate errors in GSM calculation.
      3. Durable and Long-Lasting - Robust construction ensures stability and extended service life.
       
      1. Safety Enhancement - Reduces risk of injury compared to manual rotary cutters.
      2. Consistent Pressure Application - Hydraulic mechanism maintains steady force for each cut.
        Features of Hydraulic GSM Cutter:
      1. Hydraulic Press Mechanism - Applies consistent and strong pressure for clean, even cuts.
      2. Standard Cutting Die (100 cm²) - Produces fabric samples suitable for GSM testing with standard area.
      3. Heavy-Duty Construction - Built with robust metal frame for long-term lab or industrial use.
       
      1. Sharp Stainless Steel Blades - Durable and replaceable blades ensure smooth, precise cuts.
      2. Cutting Pad Included - Comes with a rubber or nylon base to protect blades and ensure clean edges.
      3. Simple Lever or Button Operation - Easy to use with minimal training required.
      4. Non-slip Base - Provides stability during operation for safe, accurate cutting.
      5. Supports Various Fabric Types
      - Suitable for woven, knitted, nonwoven, technical textiles, and coated fabrics.   How to Use Hydraulic GSM Cutter:
      1. Place the Cutting Pad - Lay the rubber or nylon cutting pad on a flat surface.
      2. Position the Fabric - Place the fabric sample flat and smooth on the cutting pad.
      3. Align the Cutter - Position the GSM cutter die over the desired area of the fabric.
      4. Activate Hydraulic Press - Pull the lever or press the button to apply hydraulic pressure and cut the sample.
       
      1. Remove the Sample - Lift the cutter and carefully take out the circular fabric piece (usually 100 cm²).
      2. Weigh the Sample - Place the cut sample on a precision balance or GSM scale to determine weight.
      3. Calculate GSM - Multiply the sample weight (in grams) by 100 to get GSM.
        GSM Formula (Grams per Square Meter): GSM is used to measure the weight of fabric and indicates its thickness and quality. Formula: GSM = (Sample Weight in grams × 10000) / Sample Area in cm² For standard cutters that cut 100 cm² samples: GSM = Sample Weight (in grams) × 100   Example: - If a 100 cm² fabric sample weighs 1.5 grams: GSM = 1.5 × 100 = 150 GSM
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      Fabric air permeability tester

      Fabric air permeability tester

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      Fabric Air Permeability Tester
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      Fabric air permeability tester

        Fabric Air Permeability Tester is a lab instrument used to measure how easily air passes through a fabric. It quantifies the air permeability, which is crucial for evaluating breathability, comfort, and functional performance in textiles. Purpose Fabric Air Permeability Tester: It determines the rate of airflow through a fabric sample under a set air pressure, typically reported in units like cm³/cm²/s or L/m²/s. Working Principle: The tester creates a pressure difference across the fabric sample and measures the volume of air flowing through it. Higher air permeability means the fabric is more breathable. Main Components of Fabric Air Permeability Tester: - Test Head / Clamp: Holds the fabric securely without leakage. - Pressure Regulator: Maintains a constant air pressure during testing. - Flow Meter or Digital Sensor: Measures the actual airflow rate through the fabric. - Display Unit: Shows readings of air permeability instantly.   Applications of Fabric Air Permeability Tester: - Performance textiles (sportswear, PPE) - Technical fabrics (filters, tents, airbags) - Medical textiles (masks, gowns) - Nonwovens and industrial materials   Benefits of Fabric Air Permeability Tester:
      1. Accurate Breathability Measurement - Precisely measures how breathable a fabric is, essential for comfort and performance.
      2. Supports Quality Control - Ensures consistent air permeability in fabric batches, critical for products like PPE, sportswear, and filters.
       
      1. Enhances Product Design - Helps in selecting or engineering fabrics with the right airflow properties for specific uses.
      2. Standard Compliance - Conforms to international testing standards (e.g., ASTM D737, ISO 9237), ensuring global credibility.
      3. Quick and Reliable Testing - Provides rapid results, increasing lab efficiency and production decision-making speed.
       
      1. Wide Material Compatibility - Suitable for woven, nonwoven, knitted fabrics, and even paper or coated materials.
      2. Improves Functional Performance - Helps optimize products for ventilation, moisture control, and thermal comfort.
      3. Reduces Product Failure - Identifies underperforming fabrics early, minimizing risks in high-performance applications.
      Features of Fabric Air Permeability Tester:
      1. Digital Display - Shows air permeability readings clearly in units like L/m²/s or cm³/cm²/s.
      2. Precise Test Head/Clamp - Provides an airtight seal to prevent air leakage and ensure accurate results.
      3. Adjustable Pressure Settings - Allows testing under various pressure drops (e.g., 10–2500 Pa), depending on fabric type.
       
      1. Automatic Airflow Measurement - Built-in sensors or flow meters capture airflow rate automatically for quick analysis.
      2. Multiple Test Area Sizes - Interchangeable test plates to match different sample sizes and standard requirements.
      3. Data Logging and Export - Some models include USB or software connectivity for storing and exporting test results.
       
      1. Standard Compliance - Conforms to ASTM D737, ISO 9237, BS 5636, DIN 53887, etc.
      2. Robust Construction - Built with corrosion-resistant materials and durable components for long-term lab use.
      3. Low Maintenance - Simple cleaning and calibration process for reliable performance.
      4. Compact and User-Friendly Design - Ideal for lab benches and easy operation with minimal training.
      How to Use Fabric Air Permeability Tester:
      1. Prepare the Sample - Cut the fabric sample to the required size (usually circular, e.g., 20 cm²).
      2. Mount the Sample - Place the fabric securely in the test clamp or holder, ensuring no wrinkles or gaps.
      3. Set Test Parameters - Adjust the air pressure drop according to the fabric type or standard (e.g., 100 Pa).
       
      1. Start the Test - Turn on the air supply and start the airflow through the fabric.
      2. Read the Measurement - The digital display will show the air permeability value in the selected units.
      3. Record the Results - Note the readings or export data if the device supports it.
      4. Repeat if needed - Test multiple samples or areas for accuracy and average the results.
      5. Clean and Maintain - After testing, clean the clamp and ensure the device is calibrated regularly.
        Tip: Ensure the test environment maintains standard temperature and humidity for consistent results.   Fabric Air Permeability Tester Appliance Range It is used to TEST the air permeability of various textile fabrics, including industrial fabrics, nonwoven fabrics and other textile products and other breathable materials. Related Standards GB / T 5453, GB / T 13764, ISO 9237, ISO 5636, ASTM D737, etc. Instrument characteristics 1. Automatic sample clamping, automatic nozzle replacement, and quick test. 2. Microcomputer processing, the test results are displayed directly, without manual table calculation; 3. Built-in continuous test mode, the test unit can be switched as needed. 4. Chinese LCD menu operation, configure computer interface. Technical parameter 1. Range of sample pressure difference: 1 ~ 4000Pa 2. Measurable air permeability: 1 ~ 40,000mm / s 3. Measurement error: ≤ ± 2% 4. Measurable fabric thickness: ≤8mm 5. Test area: 5cm2; 20cm2; 50cm2; 100cm2 Ф50mm (≈19.6cm2) Ф70mm (≈38.5cm2) 6. Nozzles: 11 in total (automatic replacement of digital setting) CODE 00 01 02 03 04 05 06 07 08 09 10 DIAφ(mm) 0.8 1.2 2 3 4 6 8 10 12 16 20 7.Data Capacity:≤200 times tests 8.Power Supply:AC220V 50Hz 2KW 9.Weight:80Kg 10.Shape:1250×700×1250mm
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      GSM Cutter with Balance

      GSM Cutter with Balance

        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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      Fabric Drape Tester
      Fabric Drape Tester

      Fabric drape tester

      Physical Testing & Fabric Testing
      $0.00
      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
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      Digital Temperature Humidity Meter

      Digital Temperature Humidity Meter

      Lab Equipment & Instrument, Physical Testing & Fabric Testing
      $0.00
      Digital Temperature Humidity Meter

      Digital Temperature Humidity Meter

        A Digital Temperature Humidity Meter, also known as a digital hygrometer, is an electronic device used to measure and display the relative humidity (RH) of the air, often along with temperature. It's commonly used in laboratories, industrial settings, storage areas, and homes to monitor moisture levels.   Key Features of Digital Temperature Humidity Meter: - Digital Display: Shows humidity (in % RH) and often temperature (in °C/°F). - Sensor-Based Measurement: Uses capacitive or resistive sensors for accurate readings. - Compact & Portable: Available in handheld or wall-mountable forms. - Data Logging (in some models): Records humidity levels over time for analysis. - Min/Max Readings: Displays historical high and low humidity values.   Common Applications of Digital Temperature Humidity Meter: - Laboratories: Maintaining stable humidity for experiments or sample storage. - Warehouses: Monitoring conditions for sensitive goods (e.g., electronics, paper, pharmaceuticals). - HVAC Systems: Ensuring proper climate control. - Homes: Preventing mold growth or overly dry conditions.   Benefits of Digital Temperature Humidity Meter: - Accurate and quick readings - Easy to use and read - Helps in maintaining comfort, safety, and product integrity Would you like recommendations for models or guidance on calibration? Benefits of Digital Humidity meter Here are the key benefits of using a Digital Humidity Meter:   ✅ 1. Accurate Humidity Monitoring - Provides precise relative humidity (%RH) readings, essential for sensitive environments. ✅ 2. Fast and Real-Time Results - Displays immediate data, allowing for quick adjustments to environmental conditions. ✅ 3. Dual Measurement - Many models also measure temperature, offering a more complete picture of ambient conditions.   ✅ 4. Easy to Use - Simple digital interface with clear display, suitable for both professionals and non-technical users. ✅ 5. Compact and Portable - Lightweight design makes it ideal for field use, indoor monitoring, or mounting on walls. ✅ 6. Prevents Damage - Helps avoid moisture-related issues like mold, corrosion, static buildup, and product degradation.   ✅ 7. Supports Quality Control - Essential for labs, warehouses, and manufacturing environments to maintain product integrity. ✅ 8. Data Logging (Optional) How to use Digital Humidity meter Here are the key features of a Digital Humidity Meter: 1. Digital Display - Shows real-time humidity (%) and often temperature (°C/°F). - Some include backlit screens for easy viewing.   2. High Accuracy Sensors - Uses capacitive or resistive sensors for accurate and stable humidity readings. 3. Min/Max & Hold Functions - Displays minimum, maximum, and current readings. - "Hold" function freezes the current reading for review.   4. Data Logging (in advanced models) - Records humidity data over time for monitoring trends. 5. Portable or Wall-Mountable - Available as handheld, desktop, or wall-mounted units for different environments.   6. Battery or USB Powered - Operates on standard batteries or via USB power for flexibility. 7. Optional External Probes - Some models support external humidity/temperature sensors for remote monitoring. 8. Calibration Option - Allows manual or automatic calibration to maintain accuracy.   Here’s a quick step-by-step guide on how to use a Digital Temperature Humidity Meter: ✅ 1. Power On the Device - Insert batteries (if portable) or plug it in (if wall-mounted). - Press the power button to turn it on. ✅ 2. Place It Properly - Set the meter in an open, well-ventilated area. - Avoid placing near windows, vents, or direct heat sources for accurate readings.   ✅ 3. Wait for Stabilization - Allow the device a few seconds to stabilize and show accurate humidity and temperature readings. ✅ 4. Read the Display - Humidity will be shown as % RH (Relative Humidity). - Most models also display temperature in °C or °F.   ✅ 5. Use Additional Features (if available) - Press buttons to view Min/Max, Data Log, or switch units. - Some advanced models may have Bluetooth or USB for data transfer. ✅ 6. Maintain the Device - Clean sensor area gently if dusty. - Calibrate periodically if required (check manual).  
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      Fastness Rotary Friction Tester

      Fastness Rotary Friction Tester

      Physical Testing & Fabric Testing
      $0.00

      Fastness Rotary Friction Tester

      Fastness Rotary Friction Tester

      Fastness Rotary Friction Tester

        A Fastness Rotary Friction Tester, also known as a Rotary Crock meter, is a specialized instrument used to evaluate the color fastness of textiles and materials when subjected to rotational rubbing. This test simulates the wear and friction that fabrics experience during use, helping manufacturers assess the durability of dyes and finishes. Purpose of Fastness Rotary Friction Tester The primary function of the Fastness Rotary Friction Tester is to determine how well a fabric's color withstands rubbing, both in dry and wet conditions. This is crucial for ensuring the longevity and appearance of textiles in real-world applications, such as clothing, upholstery, and footwear.   Working Principle of Fastness Rotary Friction Tester The tester operates by applying a specified pressure to a fabric sample using a standardized rubbing finger covered with a test cloth. The rubbing finger performs a set number of rotational movements (typically 1.125 turns clockwise followed by 1.125 turns counterclockwise) over the fabric surface. After the test, the degree of color transfer to the test cloth and any changes in the fabric's appearance are evaluated against standardized gray scales.   Common Testing Standards - AATCC 116: Colorfastness to Crocking: Rotary Vertical Crock meter Method. ISO 105 X16: Textiles—Tests for color fastness—Part X16: Color fastness to rubbing—small areas. - SATRA TM8: Color fastness to rubbing.   Key Specifications of Fastness Rotary Friction Tester - Rubbing Head Diameter: Typically 16 mm. - Applied Pressure: Approximately 1134 grams (11.1 N). - Rotation: 1.125 turns clockwise followed by 1.125 turns counterclockwise. - Sample Size: Commonly 60 mm × 60 mm. - Test Cloth: Standardized white cotton cloth, either dry or wetted depending on the test condition.   Benefits of Fastness Rotary Friction Tester - Realistic Simulation: Mimics the actual wear and friction fabrics undergo during use. - Versatility: Applicable to a wide range of materials, including textiles, leather, and printed fabrics. - Quality Assurance: Ensures products meet industry standards for color durability. - Standard Compliance: Aligns with international testing standards, facilitating global trade and quality benchmarks.   Applications Fastness Rotary Friction Tester - Textile Industry: Assessing the color durability of garments, upholstery, and other fabric products. - Footwear Manufacturing: Testing the colorfastness of shoe uppers and linings. - Automotive Interiors: Evaluating the wear resistance of seat covers and other interior fabrics. Quality Control Laboratories: Routine testing to ensure product consistency and compliance with standards.   Benefits of Fastness Rotary Friction Tester:
      1. Accurate Colorfastness Evaluation- Provides precise assessment of how well fabric resists color loss and staining from rubbing.
      2. Simulates Real-World Wear - Recreates rotational friction found in actual use (e.g., seat covers, apparel wear points).
      3. Supports Wet & Dry Testing - Can test under both dry and wet conditions for comprehensive results.
       
      1. Standardized Testing - Complies with global standards (AATCC 116, ISO 105 X16), ensuring reliable and comparable results.
      2. Time-Saving & Efficient - Quick to set up and run, allowing for high-throughput testing in labs.
      3. Versatile Use- Suitable for textiles, leather, coated fabrics, and printed surfaces.
       
      1. Improves Quality Control - Identifies potential durability issues early in the production process.
      2. Enhances Product Performance - Helps in developing fabrics with better resistance to rubbing and abrasion.
        Features of Fastness Rotary Friction Tester:
      1. Rotary Rubbing Mechanism - Simulates 1.125 clockwise and 1.125 counterclockwise turns for realistic friction.
      2. Standardized Rubbing Head - Fixed diameter (typically 16 mm) with specified pressure (≈1134 g) for consistent results.
      3. Dry and Wet Testing Capability - Can perform tests using dry or wet rubbing cloths.
       
      1. Sample Holder- Secure and easy-to-use fixture for holding fabric samples in place.
      2. Test Cloth Mounting Arm- Quick attachment for standardized white rubbing cloths.
      3. Simple Operation - Manual or motorized operation depending on model; easy to handle for lab technicians.
      4. Compliance with Standards - Follows AATCC 116, ISO 105 X16, and SATRA TM8 protocols.
        How to Use Fastness Rotary Friction Tester:
      1. Prepare the Sample - Cut a fabric piece (typically 60 × 60 mm) and condition it per standard requirements.
      2. Mount the Fabric - Secure the fabric sample on the sample holder or base plate of the tester.
      3. Attach Rubbing Cloth - Place a standard white test cloth (dry or wetted as required) over the rubbing head.
       
      1. Apply Pressure - Lower the rubbing head onto the fabric. Standard weight is about 1134 g.
      2. Start the Test - Operate the tester: the head performs 1.125 turns clockwise, then 1.125 turns counterclockwise.- Number of cycles (typically 10 or 20) is set based on the test standard.
       
      1. Remove and Inspect - After testing, remove the rubbing cloth and assess any color transfer using a gray scale.
      2. Evaluate Fabric Surface - Check the fabric for visible changes, fading, or wear.
       
      1. Record Results - Grade both staining and fabric change per standard gray scale ratings.
          Fastness rotary friction tester [Scope of application] It is used to change the color fastness of the textile, printing and dyeing, printing and other products after a specific track friction. [Related standards] GB / T29865 AATCC116 ISO105-X16, etc. [Instrument characteristics]: 1.Single-chip control, speed can be set freely 2.Imported motor, linear guide, low noise, suitable for long time work 3. Liquid crystal display, film panel 4. Freely set the number of friction, can count up and down, and automatically stop the alarm when the set value is reached [Technical Parameters]: 1. Friction head diameter: 16mm 25mm 2. Vertical pressure: 11.1N 3. Working mode: 405 ° clockwise and 405 ° counterclockwise 4. Speed range: constant 60 rpm, LCD display, thin mold panel 5. Counting range: 0-99999 times 6. Power supply: AC 220V 50Hz 80W 7. Weight: 20KG 8. Volume: L420mm × W260mm × H430mm
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      Fabric Stiffness Tester
      Fabric Stiffness Tester

      Fabric Stiffness Tester

      Physical Testing & Fabric Testing
      $0.00

      Fabric Stiffness Tester

      Fabric Stiffness Tester

      Fabric Stiffness Tester

        Fabric Stiffness Tester is a lab instrument used to measure the stiffness or flexural rigidity of fabric materials. It evaluates how resistant a fabric is to bending, which influences its drape, comfort, and handling characteristics. Purpose of Fabric Stiffness Tester: To determine the stiffness of textiles by measuring the bending length and calculating flexural rigidity, often using methods like the Cantilever Test (as per ASTM D1388 or ISO 9073-7).   Working Principle of Fabric Stiffness Tester: A fabric strip is slid over a horizontal platform until its free end bends under its own weight to a specific angle (usually 41.5°). The length at which this occurs is used to calculate bending length and stiffness.   Main Components of Fabric Stiffness Tester: - Test Platform: Flat surface for sample movement. - Graduated Scale: Measures the overhanging length of fabric. - Angle Indicator: Guides the measurement based on standard deflection angle. - Fabric Clamp or Guide: Helps place and move the sample smoothly.   Applications of Fabric Stiffness Tester: - Apparel fabrics (e.g., for comfort and drape analysis) - Technical textiles (e.g., automotive, medical fabrics) - Paper, nonwovens, and films Benefits of Fabric Stiffness Tester:
      1. Accurate Measurement of Flexibility - Provides reliable data on fabric stiffness, essential for quality control and product development.
      2. Improves Product Comfort - Helps assess how soft or rigid a fabric will feel in clothing or furnishings.
      3. Supports Material Selection - Aids designers and engineers in choosing the right fabric for specific applications based on stiffness.
       
      1. Quality Assurance - Detects fabric inconsistencies or defects that affect handling or drape.
      2. Standards Compliance - Enables testing as per international standards like ASTM D1388 and ISO 9073-7 for global product approval.
      3. Quick and Simple Operation - Delivers fast results with minimal operator training or preparation.
       
      1. Applicable to Multiple Materials - Suitable for woven, nonwoven, knitted fabrics, paper, and films.
      2. Enhances R&D Accuracy - Supports consistent material testing during product innovation and textile finishing.
        Features of Fabric Stiffness Tester:
      1. Graduated Measurement Scale - Precise scale to measure overhang length for accurate stiffness calculation.
      2. Flat Test Platform - Smooth, level surface ensures consistent and reliable fabric movement.
      3. Standard Deflection Angle Guide - Built-in 41.5° angle reference for consistent stiffness testing (per ASTM/ISO).
      4. Manual or Motorized Models - Available in both types for simple or automated operation depending on lab needs.
      5. Compact Design - Space-saving unit ideal for textile labs and quality control rooms.
       
      1. Sample Holder or Clamp - Ensures correct alignment and smooth feeding of fabric strips during testing.
      2. Durable Construction - Made of corrosion-resistant materials like stainless steel or aluminum for long-term use.
      3. Compliance with Standards - Supports methods like ASTM D1388, ISO 9073-7 for stiffness testing of fabrics.
       
      1. Lightweight and Portable - Easy to move and use in various lab settings.
      2. Low Maintenance - Simple mechanical parts require minimal servicing.
        How to Use Fabric Stiffness Tester (Cantilever Method):
      1. Prepare the Sample - Cut the fabric into a rectangular strip (e.g., 25 mm × 200 mm), as per standard.
      2. Place the Sample - Lay the fabric strip flat on the test platform with one end aligned at the zero mark.
      3. Slide the Fabric - Gently push the fabric forward so it slowly overhangs the platform.
       
      1. Watch for Deflection - Stop sliding when the free end of the fabric bends down to the reference angle (typically 41.5°).
      2. Read the Bending Length - Measure the overhang distance from the scale. This is the bending length (C).
      3. Calculate Flexural Rigidity
      - Use the formula: G = W × C³ Where: - G = Flexural rigidity (mg·cm) - W = Fabric weight per unit area (mg/cm²) - C = Bending length (cm)  
      1. Repeat for Accuracy - Test both warp and weft directions and average the results for better accuracy.
      Tip: Always perform the test in a controlled environment (standard temperature and humidity) for reliable results.         Fabric Stiffness Tester Scope of application It is used to measure the stiffness of cotton, wool, silk, linen, chemical fibers and other woven fabrics, knitted fabrics, general nonwovens, coated fabrics, etc. It is also suitable for measuring the stiffness of paper, leather, film and other flexible materials. Relevant Standards GB/T 18318, ASTM D 1388, IS09073-7, BS EN22313 etc. [Instrument Characteristics] 1. Infrared photoelectric invisible inclined plane detection system replaces the traditional tangible inclined plane, realizes non-contact detection, and overcomes the problem that the measurement accuracy is affected by the sample torsion lifted by the inclined plane. 2. The inclination adjustable mechanism of instrument measurement to meet different test requirements. 3. Stepping motor drive, accurate measurement, smooth operation; 4. The color touch screen display can show the extended length, bending length, bending stiffness of the sample, the warp average, the weft average and the total average of the above values respectively. 5. Printing of Chinese report forms for thermal printers. Technical parameters 1. Test methods: The two method (A method: Weft test, B method: Forward and backward test) 2. Measurement angle:41.5 degree, 43 degree and 45 degree adjustable 3. Extend the length range:5-220 mm (special requirements can be made at the time of ordering) 4. Length resolution:0.01mm 5. Measurement accuracy:±0.1mm 6. Specimen specifications:250×25mm 7. Work platform specifications:250×50mm 8. Specification of sample pressing plate:250×25mm 9. Pushing speed of press plate:3 mm/s; 4 mm/s; 5 mm/s 10. Display output: Touch screen display 11. Print Output: Chinese Report 12. Data Processing Volume: A total of 15 groups, each group less than 20 trials 13. Printer: Thermal printer 14, power supply:AC220V 50Hz 15. Host volume:570mm×360mm×490mm 16. Host weight:20kg
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