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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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      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.
       
      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.
          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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      Digital Temperature Humidity Meter

      Digital Temperature Humidity Meter

      Lab Equipment & Instrument, Physical Testing & Fabric Testing
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      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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