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ICI Pilling & Snagging Test Machine
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    ICI Pilling & Snagging Test Machine
    Home Physical Testing & Fabric Testing ICI Pilling & Snagging Test Machine
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    ICI Pilling & Snagging Test Machine

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    Category: Physical Testing & Fabric Testing Tags: ICI Pilling & Snagging Test Machine, ICI Pilling & Snagging Test Machine price in Bangladesh, ICI Pilling & Snagging Tester, ICI Pilling & Snagging Tester price in Bangladesh, ICI Pilling tester Brand: DARONG, DUNLIN
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    Description

    ICI Pilling & Snagging Test Machine

    ICI Pilling & Snagging Test Machine

    ICI Pilling & Snagging Test Machine

     

    An ICI Pilling & Snagging Test Machine is a specialized laboratory instrument designed to evaluate the resistance of textile fabrics to pilling and snagging, which are common surface defects caused by wear and friction. This tester is widely used in quality control and research and development within the textile industry to ensure fabric durability and appearance retention.

     

    The ICI Pilling & Snagging Test Machine simulates the mechanical action that fabrics undergo during actual wear. Test specimens are mounted on polyurethane tubes and placed inside cork-lined boxes. These boxes rotate at a specified speed, causing the specimens to tumble and rub against the cork lining and themselves, thereby replicating the conditions that lead to pilling and snagging

    Digital Control Panel: Equipped with a user-friendly interface, often featuring a touchscreen display for setting test parameters and monitoring progress.

     

    – Detachable Cork Liners: Cork liners inside the boxes are removable, facilitating easy replacement and maintenance. – Compliance with International Standards: Designed to meet various testing standards, including ISO 12945-1, BS 5811, JIS L1076, and IWS TM152, ensuring reliable and comparable results.

     

    ✅ Benefits of ICI Pilling & Snagging Test Machine:

    – Accurate Simulation of Wear Conditions: Replicates the mechanical stresses that fabrics experience during actual use, providing realistic assessments of pilling and snagging tendencies.

    – Enhanced Quality Control: Enables manufacturers to identify and address potential issues in fabric durability before products reach the market.

    – Versatility: Suitable for testing a wide range of fabrics, including woven and knitted materials, under various conditions.

    – Efficient Testing Process: Multiple specimens can be tested simultaneously, increasing throughput and productivity in laboratory settings.

     

    Typical Applications

    – Textile Manufacturing: Assessing the durability of fabrics during the development of new materials or quality assurance of existing products. Research and Development: Studying the effects of different yarns, weaves, and finishes on fabric performance. – Quality Assurance: Ensuring that fabrics meet specified standards for pilling and snagging resistance before mass production.

     

    In summary, the ICI Pilling & Snagging Tester is an essential tool in the textile industry for evaluating the surface durability of fabrics. Its ability to simulate real-life wear conditions and provide standardized assessments helps manufacturers and researchers ensure the quality and longevity of textile products.

     

    Features of ICI Pilling & Snagging Test Machine:

    1. Multiple Test Stations – Typically available in 2, 4, 6 & more -box configurations for simultaneous testing of multiple samples.
    2. Rotating Pilling Boxes – Cork-lined boxes rotate at a fixed speed (usually 60 ± 2 rpm) to simulate wear and friction.

     

    1. Adjustable Timer – Digital timer allows precise control over test duration (usually up to 9999 cycles).
    2. Detachable Cork Liners – Easily replaceable liners to maintain consistent friction surfaces and accurate results.
    3. Standard Tubes & Sample Holders- Polyurethane or foam-covered tubes hold fabric samples in a consistent shape during testing.

     

    1. Digital Display or Touch Panel – User-friendly interface for setting speed, cycle count, and monitoring progress.
    2. Compact and Sturdy Design – Built to withstand long testing cycles and minimize vibration.
    3. Compliance with International Standards – Supports ISO 12945-1, BS 5811, JIS L1076, IWS TM152, etc.
    4. Low Noise Operation – Engineered for quiet performance in lab environments.
    5. Safety Features – Includes secure locking system on doors and overload protection.

     

    How to Use ICI Pilling & Snagging Test Machine:

    1. Prepare Samples – Cut fabric specimens to standard size (typically 125 mm × 125 mm).

    – Mount each sample around a polyurethane tube and secure it with elastic bands or ties.

    1. Load into Pilling Boxes – Place each prepared tube into the cork-lined rotating boxes of the machine.
    2. Set Test Parameters – Use the digital control panel to set the number of revolutions (e.g., 7200 for ISO 12945-1) and speed (usually 60 ± 2 rpm).

     

    1. Start the Test- Close the box lids securely and press “Start.” The boxes will rotate, tumbling the samples inside.
    2. Monitor Progress – The timer counts down the set cycles. No need for manual supervision during the run.
    3. End of Test – Machine stops automatically when the cycle count is reached. Open the boxes and remove the tubes.

     

    1. Evaluate Results – Remove the fabric from the tubes and visually assess pilling or snagging using standard photographic rating scales (e.g., ASTM D3512, ISO 12945)
    2. Clean the Machine – Remove lint and debris from cork liners and clean tubes if needed.

     

    Tip: Always ensure samples are mounted uniformly to avoid inconsistent results.

     

     

    Use ICI Pilling & Snagging Test Machine

    Rolling Pilling Tester

    series rolling Pilling Resistance tester

    type rolling Pilling Resistance instrument

     

    [Scope of application] It is used for testing the pilling degree of fabrics (especially wool knitted fabrics) under no pressure.
    [Related standards]:GB/T4802.3 ISO12945.1 JIS L1076 IWS TM152 BS5811 etc.
    [Instrument characteristics]
    1. color touch screen menu operation in Chinese.
    2. AC servo motor quiet driving, adjustable speed.
    3. Inner village rubber cork adopts detachable design.
    4. Contactless photoelectric counting, liquid crystal display.

     

    Technical parameters of  ICI Pilling & Snagging Test Machine:

    Model: Number of pilling boxes
    2     4       6      9

    Inter Size: 225×225×225mm
    Rotating speed of box: 60±2r/min
    Counting range: The 1~99999 time

     

    [Sample carrying tube]:
    1: The shape is 31.5 x 140 mm weight 52.25g.
    2: 4 root / box
    Power Supply: Ac 220V±10% 50Hz 120W
    Outline size (mm): 930×500×580, 930×500×950, 930×500×1410, 1260×560×1470
    Weight (Kg): 60 65 125 165

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        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:
      1. Gray Scale for Color Change - Compares the original and tested sample to measure color fading or alteration.
      2. Gray Scale for Staining - Compares a white adjacent fabric (before and after testing) to assess color transfer or staining.
      Rating System : - Uses a 1 to 5 scale: - Grade 5: No change or staining (excellent) - Grade 1: Severe change or heavy staining (poor) Intermediate grades (like 4–5, 3–4, etc.) are also used for finer evaluation.   Construction :- Each scale includes pairs of gray chips with varying contrast levels to visually match the test results. Usage Areas:- Textile testing labs- Dyeing and finishing quality control- Standards like ISO, AATCC, and BIS tests   Benefits :
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      4. Cost-Effective Tool - Inexpensive yet essential for reliable quality control in textiles.
       
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      2. Supports Multiple Tests - Used for evaluating wash fastness, rubbing fastness, perspiration, light exposure, and more.
      3. Portable and Durable - Easy to carry and long-lasting with proper care.
      Features :
      1. Dual Type Availability - Comes in two types: for Color Change and for Staining.
      2. 5-Point Grading System - Grades from 1 (poor) to 5 (excellent), with half-step intervals like 4–5, 3–4.
      3. Standardized Grey Chips - Includes contrasting grey color pairs to match fabric changes accurately.
      4. Compact Design - Small, portable card or booklet format for easy lab and field use.
       
      1. Durable Material - Made from stable, fade-resistant plastic or cardboard for long-term use.
      2. Compliance with Standards - Follows ISO 105-A02 (Color Change) and ISO 105-A03 (Staining) norms.
      3. Easy Visual Comparison - Designed for quick side-by-side assessment of fabric before and after testing.
        How to Use : Select the Right Gray Scale - Use Color Change scale to check fading, or staining scale to check color transfer.
      1. Place the Samples - Lay the untested (original) and tested fabric side by side (for color change)
      - Or place the adjacent white fabric next to the gray scale (for staining).
      1. Match Against Gray Scale Chips - Visually compare the difference between the samples and find the closest matching gray pair on the scale.
       
      1. Assign a Grade
      - Grade from 1 to 5, where: - Grade 5 = no change/staining - Grade 1 = severe change/staining - Use half-grades like 4–5 if needed.
      1. Record the Result - Note the grade in your test report as per the test method (e.g., ISO 105).
      2. Store Properly - Keep the gray scale away from light and moisture to avoid fading.
      3. Features :
        1. Dual Type Availability - Comes in two types: for Color Change and for Staining.
        2. 5-Point Grading System - Grades from 1 (poor) to 5 (excellent), with half-step intervals like 4–5, 3–4.
        3. Standardized Grey Chips - Includes contrasting grey color pairs to match fabric changes accurately.
        4. Compact Design - Small, portable card or booklet format for easy lab and field use.
        Categories:
      1. Gray Scale for Color Change - Used to evaluate the degree of color fading or change in a fabric after testing (e.g., washing, light exposure). - Assesses how much the original color has altered.
      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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      Color Matching Cabinet -light Box

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      Fabric Moisture Permeability Tester
      Fabric Moisture Permeability Tester

      fabric moisture permeability tester

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      Fabric Moisture Permeability Tester
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      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).
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      1. Calculate WVTR - Use the formula: WVTR = (Weight Loss in grams × 24) / (Test Area in m² × Time in hours) Expressed in g/m²/24h.
      2. Clean and Store - Clean cups and components for future use.
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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
      Hydraulic GSM Cutter

      Hydraulic GSM Cutter

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      Stretch Recovery Tester (Static Method)

      Stretch Recovery Tester Static Method

      Physical Testing & Fabric Testing, Dyeing Lab Machine
      $0.00

      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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      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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      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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      Digital Elmendorf Tearing Tester

      Digital Elmendorf tearing tester

      Dyeing Lab Machine, Physical Testing & Fabric Testing
      $0.00
      Digital Elmendorf Tearing Tester
      Digital Elmendorf Tearing Tester

      Digital Elmendorf Tearing Tester

        Digital Elmendorf Tearing Tester is a precision instrument used to measure the tear strength of materials like woven fabrics, paper, plastic films, and nonwovens. It determines how much force is required to continue tearing a pre-slit sample. Key Functions of Digital Elmendorf Tearing Tester: - Measures propagation tear resistance, not initial tear. - Uses a pendulum to apply force; the energy lost during tearing is calculated to determine tear strength. - Equipped with a digital display for direct reading of results in grams or millinewtons. Core Components: - Pendulum Arm: Applies tearing force. - Clamps: Secure the sample before and after the tear. - Cutting Blade: Creates a precise slit at the start of the test. - Digital Display Unit: Shows the tearing force result clearly and instantly. - Counterweights: Optional weights for increasing test range (for stronger materials).   Applications of Digital Elmendorf Tearing Tester: - Testing tear resistance of: - Textile fabrics (especially woven) - Paper and cardboard - Plastic films - Nonwovens - Packaging materials Benefits of Digital Elmendorf Tearing Tester:
      1. Accurate Tear Strength Measurement - Provides precise data on tear resistance, critical for quality control and product performance.
      2. Digital Readout - Easy-to-read display gives instant, reliable results without manual calculations.
      3. High Reproducibility - Ensures consistent test outcomes due to controlled tearing angle and speed.
       
      1. Fast Testing Process - Simple loading and quick test cycle increase lab efficiency.
      2. Suitable for Various Materials - Tests a wide range of flexible materials like textiles, paper, plastic, and packaging.
      3. Customizable Range - Use of optional weights extends the test range for low to high tear strength materials.
      4. Low Sample Waste - Requires small fabric or material samples, reducing waste during testing.
      5. Standards Compliance - Meets international testing standards (e.g., ASTM D1424, ISO 13937) for credibility and uniformity.
      Features of Digital Elmendorf Tearing Tester: Digital Display - Provides accurate and direct reading of tear strength in grams, mN, or cN. Pendulum Mechanism - Uses a swinging pendulum to simulate tear propagation with consistent force. Adjustable Test Range - Includes interchangeable pendulum weights to test various material strengths.
      1. Precision Sample Clamp - Securely holds samples in place to ensure accurate tear initiation.
      2. Pre-Cutting Blade - Integrated knife creates a precise initial slit in the sample before tearing.
      3. User-Friendly Interface - Simple buttons and screen navigation for ease of operation.
      4. Standard Test Compliance - Compatible with ASTM D1424, ISO 1974, ISO 13937, and other tear strength standards.
      1. Sturdy Construction - Made with durable materials for long-lasting performance and stable operation.
      2. Compact Design - Space-efficient footprint ideal for laboratory environments.
      3. Data Output Options- Some models offer USB or printer connectivity for result documentation.
      How to Use a Digital Elmendorf Tearing Tester:
      1. Prepare the Sample - Cut the material (fabric, paper, film, etc.) to standard size (typically 100 × 63 mm for textiles) and slit it with the pre-cutter as required.
      2. Select Pendulum Weight - Choose the appropriate pendulum or add counterweights based on expected tear strength.
      1. Calibrate the Machine - Set the pendulum to its starting position and zero the display.
      2. Clamp the Sample - Fix one half of the sample in the stationary clamp and the other in the moving clamp.
      3. Cut the Initial Slit - Use the integrated blade to make a precise cut at the marked slit area (usually 20 mm).
      1. Release the Pendulum - Trigger the pendulum to swing and tear the sample through the pre-slit.
      2. Read the Result - The digital display will show the tearing force automatically (in g, mN, or cN).
      3. Record or Export Data - Save or print the result if your model supports USB or printer connection.
      4. Reset for Next Test - Reposition the pendulum and prepare a new sample for the next cycle.
      Safety Tip: - Always ensure your hands are clear before releasing the pendulum.   Digital Elmendorf tearing tester Scope of application It is used for the determination of the tear resistance of various woven fabrics (Elmendorf method), and it can also be used for the determination of the tear resistance of thick paper, plastic sheeting, electrical tape, etc. Related standards GB/T 3917.1 FZ/T60006 FZ/T75001 ISO1974/9290 ASTM D1424/5734 etc. Instrument characteristics 1. Maximum 300N test range 2. Microcomputer control, digital decoding, support online communication 3. Color touch screen control, Chinese and English menu operation interface 4. Pneumatic clamping, automatic cutting 5. A variety of measurement units (cN, gf) selection 6. Fully automatic operation with safe operation protection. 7. Automatically increase potential energy [Technical parameter]: 1. Test range: first gear: (0~16)N second gear: (0~32)N third gear: (0~ 64)N fourth gear: (0~128)N fifth gear: (0~300)N 2. Test accuracy: ≤±0.2%F·S 3. Tearing length: 43mm (non-standard 30-60mm can be set) 4. Automatic incision length: (20±0.2)mm 5. Sample size: (100×63)mm 6. Specimen clamping: pneumatic way 7. Sample test: Up to 10 sets per group on the device side, and 30 sets of data can be selected to be saved 8. Power supply: AC220V±10% 50Hz 100W 9. Dimensions: (650×660×680)mm 10. Weight: 50kg [Sample of control interface]:(English version is also available.)
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