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Random Tumble Pilling Tester
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    Home Physical Testing & Fabric Testing Random Tumble Pilling Tester
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    Random Tumble Pilling Tester

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    Random Tumble Pilling Tester

    Random Tumble Pilling Tester

    Random Tumble Pilling Tester

     

    The Random Tumble Pilling Tester is a specialized instrument designed to assess the pilling resistance of textile fabrics. Pilling refers to the formation of small, fuzzy balls (pills) on the fabric surface due to wear and friction. This tester simulates the wear conditions that fabrics experience during actual use, providing valuable data on their durability and appearance retention.

     

    Purpose of Random Tumble Pilling Tester

    The primary function of the Random Tumble Pilling Tester is to evaluate how fabrics resist pilling, fuzzing, and matting. This assessment is crucial for manufacturers aiming to ensure the longevity and aesthetic quality of their textile products.

     

    Working Principle of Random Tumble Pilling Tester

    The tester operates by placing fabric specimens into cylindrical test chambers lined with cork. Inside each chamber, a stainless steel impeller rotates at a high speed (typically around 1200 revolutions per minute), causing the fabric samples to tumble randomly. Compressed air is injected to enhance the tumbling action. This process simulates the friction and wear that fabrics undergo during regular use. After a predetermined duration, the samples are removed and visually assessed for pilling using standardized rating scales.

     

    Key Specifications of Random Tumble Pilling Tester

    Test Chambers: Available in configurations of 2 or 4 chambers to accommodate multiple samples simultaneously.

    – Rotation Speed: Approximately 1200 revolutions per minute.

    – Chamber Dimensions: Typically around 146 mm in diameter and 152 mm in length.

    – Impeller Size: Standard impellers measuring about 121 mm.

    – Compressed Air Pressure: Adjustable, commonly between 14–21 kPa (2–3 psi).

    – Timer: Digital timer allowing precise control over test duration.

    – Power Supply: Generally operates on 220V, 50Hz power sources.

     

    Applicable Standards of Random Tumble Pilling Tester

    The Random Tumble Pilling Tester complies with several international testing standards, ensuring its suitability for global applications:- ASTM D3512- ISO 12945-3- DIN 53867- JIS L 1076- GB/T 4802.4

     

    Benefits of Random Tumble Pilling Tester

    – Realistic Simulation: Accurately replicates the wear and friction conditions fabrics face during actual use.- Standardized Testing: Adheres to international standards, facilitating consistent and comparable results.- Efficient Evaluation: Allows simultaneous testing of multiple samples, increasing laboratory throughput.- Quality Assurance: Provides manufacturers with critical data to improve fabric formulations and production processes. User-Friendly Operation: Features intuitive controls and clear viewing windows for easy monitoring.

     

    Applications of Random Tumble Pilling Tester

    The Random Tumble Pilling Tester is widely used in various sectors of the textile industry:

    – Apparel Manufacturing: Assessing the durability of clothing fabrics.

    – Home Textiles: Evaluating materials used in upholstery, curtains, and bedding.

    – Quality Control Laboratories: Routine testing to ensure product consistency and compliance with standards.- Research and Development: Developing new fabrics with enhanced resistance to pilling.

     

     

    Features of Random Tumble Pilling Tester:

    1. Multiple Test Chambers – Typically comes with 2 or 4 cork-lined chambers for simultaneous testing of multiple fabric samples.
    2. High-Speed Rotating Impellers – Impellers rotate at around 1200 rpm to create intense, random tumbling motion.

     

    1. Compressed Air System – Ensures continuous fabric movement and realistic simulation of wear.
    2. Digital Timer- Allows precise setting of test duration with easy-to-read display.
    3. Viewing Windows- Transparent chamber doors for monitoring fabric movement during testing.
    4. Standard Compliant Design- Meets ASTM D3512, ISO 12945-3, GB/T 4802.4 and other major standards.

     

    1. Robust Construction- Durable materials and components designed for long-term laboratory use.
    2. Easy Sample Handling – Quick-open chamber lids and simple sample placement process.
    3. Compact Footprint- Saves space in laboratory environments.

     

    How to Use Random Tumble Pilling Tester:

    1. Prepare Samples- Cut fabric into standard-sized specimens (usually circular or rectangular per ASTM/ISO specs)- Condition samples as per the standard (usually 24 hrs at 21°C, 65% RH).
    2. Load the Chambers – Place each sample into a cork-lined test chamber. – Add a small piece of gray cotton backing fabric if required by the method.

     

    1. Set Parameters – Adjust compressed air pressure (typically 14–21 kPa or 2–3 psi).

    – Set the test time (e.g., 30–60 minutes) using the digital timer.

    1. Start the Test- Close the chamber doors and press start. – Impellers rotate, tumbling the samples randomly with air flow.

     

    1. Stop and Unload – Once the timer ends, remove the samples carefully.
    2. Evaluate Pilling – Compare the tested samples to standard pilling rating photographs or scales.

    – Assign a rating from 1 (severe pilling) to 5 (no pilling).

    1. Record Results – Document the pilling grades and any observations.

     

     

    Random Tumble Pilling Tester

    [Scope of application]:

    It is used to test the fuzzing and pilling
    performance of the fabric under the condition of
    free rolling and friction in the drum.

    [Related standards]:

    GB/T4802.4 (Standard Drafting Unit)
    ISO12945.3, ASTM D3512, ASTM D1375, DIN 53867, ISO 12945-3, JIS L1076, etc.

    [Technical parameter]:

    1. Number of boxes: 4
    2. Roller specifications: diameter (146±1.0) mm, depth (152.4±1.0) mm;
    3. Lining material: polychloroprene lining thickness (3.2±0.4) mm. , Hardness (60~70)
    IRHD;
    4. Impeller specifications: φ12.7 mm×120.6 mm;
    5. Plastic blade specifications: 10 mm×65 mm;
    6. Rotation speed: 1~2400 rpm can be set freely
    7. Working pressure: 14kPa~21kPa;
    8. Time counting: (1~999) min.
    9. Power supply: AC220V±10% 50Hz 80W
    10. Appearance: (480×400×680)mm
    11. Weight: 40kg
    [Standard accessories]
    Items and specifications Qty. Note
    Fuse 2 3A
    Main machine 1
    Power cable 1
    Air tube 1 Φ8mm
    Grey cotton sliver 4
    Cork lining 4
    Rating sample photo 1
    White glue 1

     

     

    Category: Physical Testing & Fabric Testing Tags: Lab Random Tumble Pilling Tester, Laboratory Random Tumble Pilling Tester, Random Tumble Pilling Tester, Random Tumble Pilling Tester price in Bangladesh, Textile Random Tumble Pilling Tester Brand: DARONG, DUNLIN
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    Description

    Random Tumble Pilling Tester

    Random Tumble Pilling Tester

    Random Tumble Pilling Tester

     

    The Random Tumble Pilling Tester is a specialized instrument designed to assess the pilling resistance of textile fabrics. Pilling refers to the formation of small, fuzzy balls (pills) on the fabric surface due to wear and friction. This tester simulates the wear conditions that fabrics experience during actual use, providing valuable data on their durability and appearance retention.

     

    Purpose of Random Tumble Pilling Tester

    The primary function of the Random Tumble Pilling Tester is to evaluate how fabrics resist pilling, fuzzing, and matting. This assessment is crucial for manufacturers aiming to ensure the longevity and aesthetic quality of their textile products.

     

    Working Principle of Random Tumble Pilling Tester

    The tester operates by placing fabric specimens into cylindrical test chambers lined with cork. Inside each chamber, a stainless steel impeller rotates at a high speed (typically around 1200 revolutions per minute), causing the fabric samples to tumble randomly. Compressed air is injected to enhance the tumbling action. This process simulates the friction and wear that fabrics undergo during regular use. After a predetermined duration, the samples are removed and visually assessed for pilling using standardized rating scales.

     

    Key Specifications of Random Tumble Pilling Tester

    Test Chambers: Available in configurations of 2 or 4 chambers to accommodate multiple samples simultaneously.

    – Rotation Speed: Approximately 1200 revolutions per minute.

    – Chamber Dimensions: Typically around 146 mm in diameter and 152 mm in length.

    – Impeller Size: Standard impellers measuring about 121 mm.

    – Compressed Air Pressure: Adjustable, commonly between 14–21 kPa (2–3 psi).

    – Timer: Digital timer allowing precise control over test duration.

    – Power Supply: Generally operates on 220V, 50Hz power sources.

     

    Applicable Standards of Random Tumble Pilling Tester

    The Random Tumble Pilling Tester complies with several international testing standards, ensuring its suitability for global applications:- ASTM D3512- ISO 12945-3- DIN 53867- JIS L 1076- GB/T 4802.4

     

    Benefits of Random Tumble Pilling Tester

    – Realistic Simulation: Accurately replicates the wear and friction conditions fabrics face during actual use.- Standardized Testing: Adheres to international standards, facilitating consistent and comparable results.- Efficient Evaluation: Allows simultaneous testing of multiple samples, increasing laboratory throughput.- Quality Assurance: Provides manufacturers with critical data to improve fabric formulations and production processes. User-Friendly Operation: Features intuitive controls and clear viewing windows for easy monitoring.

     

    Applications of Random Tumble Pilling Tester

    The Random Tumble Pilling Tester is widely used in various sectors of the textile industry:

    – Apparel Manufacturing: Assessing the durability of clothing fabrics.

    – Home Textiles: Evaluating materials used in upholstery, curtains, and bedding.

    – Quality Control Laboratories: Routine testing to ensure product consistency and compliance with standards.- Research and Development: Developing new fabrics with enhanced resistance to pilling.

     

     

    Features of Random Tumble Pilling Tester:

    1. Multiple Test Chambers – Typically comes with 2 or 4 cork-lined chambers for simultaneous testing of multiple fabric samples.
    2. High-Speed Rotating Impellers – Impellers rotate at around 1200 rpm to create intense, random tumbling motion.

     

    1. Compressed Air System – Ensures continuous fabric movement and realistic simulation of wear.
    2. Digital Timer- Allows precise setting of test duration with easy-to-read display.
    3. Viewing Windows- Transparent chamber doors for monitoring fabric movement during testing.
    4. Standard Compliant Design- Meets ASTM D3512, ISO 12945-3, GB/T 4802.4 and other major standards.

     

    1. Robust Construction- Durable materials and components designed for long-term laboratory use.
    2. Easy Sample Handling – Quick-open chamber lids and simple sample placement process.
    3. Compact Footprint- Saves space in laboratory environments.

     

    How to Use Random Tumble Pilling Tester:

    1. Prepare Samples- Cut fabric into standard-sized specimens (usually circular or rectangular per ASTM/ISO specs)- Condition samples as per the standard (usually 24 hrs at 21°C, 65% RH).
    2. Load the Chambers – Place each sample into a cork-lined test chamber. – Add a small piece of gray cotton backing fabric if required by the method.

     

    1. Set Parameters – Adjust compressed air pressure (typically 14–21 kPa or 2–3 psi).

    – Set the test time (e.g., 30–60 minutes) using the digital timer.

    1. Start the Test- Close the chamber doors and press start. – Impellers rotate, tumbling the samples randomly with air flow.

     

    1. Stop and Unload – Once the timer ends, remove the samples carefully.
    2. Evaluate Pilling – Compare the tested samples to standard pilling rating photographs or scales.

    – Assign a rating from 1 (severe pilling) to 5 (no pilling).

    1. Record Results – Document the pilling grades and any observations.

     

     

    Random Tumble Pilling Tester

    [Scope of application]:

    It is used to test the fuzzing and pilling
    performance of the fabric under the condition of
    free rolling and friction in the drum.

    [Related standards]:

    GB/T4802.4 (Standard Drafting Unit)
    ISO12945.3, ASTM D3512, ASTM D1375, DIN 53867, ISO 12945-3, JIS L1076, etc.

    [Technical parameter]:

    1. Number of boxes: 4
    2. Roller specifications: diameter (146±1.0) mm, depth (152.4±1.0) mm;
    3. Lining material: polychloroprene lining thickness (3.2±0.4) mm. , Hardness (60~70)
    IRHD;
    4. Impeller specifications: φ12.7 mm×120.6 mm;
    5. Plastic blade specifications: 10 mm×65 mm;
    6. Rotation speed: 1~2400 rpm can be set freely
    7. Working pressure: 14kPa~21kPa;
    8. Time counting: (1~999) min.
    9. Power supply: AC220V±10% 50Hz 80W
    10. Appearance: (480×400×680)mm
    11. Weight: 40kg
    [Standard accessories]
    Items and specifications Qty. Note
    Fuse 2 3A
    Main machine 1
    Power cable 1
    Air tube 1 Φ8mm
    Grey cotton sliver 4
    Cork lining 4
    Rating sample photo 1
    White glue 1

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        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:
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      2. Improves Product Comfort - Helps assess how soft or rigid a fabric will feel in clothing or furnishings.
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      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:
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      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).
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      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.
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        How to Use Fabric Stiffness Tester (Cantilever Method):
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      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.
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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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      Fiber Oil Fast Extractor
      Fiber Oil Fast Extractor

      Fiber Oil Fast Extractor

      Physical Testing & Fabric Testing
      $0.00

      Fiber Oil Fast Extractor

      Fiber Oil Fast Extractor

      Fiber Oil Fast Extractor

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

        Fiber Oil Fast Extractor

       
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      Counting Balance-Weighing Scale
      Counting Balance-Weighing Scale

      Counting Balance-Weighing Scale

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

      Counting Balance-Weighing Scale

      Counting Balance-Weighing Scale

      Counting Balance-Weighing Scale

        A Counting Balance-Weighing Scale (or Counting Weighing Scale) is a precision electronic scale designed to weigh items and simultaneously count them based on individual piece weight. It’s commonly used in industries for inventory management, packaging, and quality control.   Purpose of Counting Balance-Weighing Scale: To quickly and accurately count small items like buttons, beads, screws, or pills by weight. Eliminates manual counting, especially for large quantities.   Working Principle of Counting Balance-Weighing Scale: Weigh a sample quantity of items to determine the average weight of one piece. Place a bulk quantity on the scale. The scale divides the total weight by the unit weight to calculate the total item count.     Applications of Counting Balance-Weighing Scale: Textile accessories (buttons, rivets) Hardware (nuts, bolts, washers) Electronics (resistors, chips) Pharmaceuticals (tablets, capsules) Benefits of Counting Balance-Weighing Scale:   Fast and Accurate Counting - Saves time by quickly counting large quantities of small items. Reduces Human Error- Eliminates mistakes common in manual counting. Improves Productivity - Speeds up packing, inventory, and quality control processes. Versatile Use - Suitable for various industries: textiles, hardware, pharmaceuticals, electronics.   Cost-Efficient- Reduces labor costs and improves operational efficiency. Compact and Portable - Easy to move and use in different workstations. Dual Functionality - Can be used for both counting and standard weighing. Memory and Tare Functions - Stores unit weights and allows container weight deduction.   Features of Counting Balance-Weighing Scale: High Precision Sensors- Ensures accurate weight and count, even for tiny components. Digital Display- Separate displays for total weight, unit weight, and piece count. Tare Function - Allows deduction of container weight for net measurements. Memory Function - Stores frequently used unit weights for fast recall.   Multiple Units Support- Measures in grams, kilograms, pounds, etc. Sample Size Selection- Users can set sample sizes (e.g., 10, 20, 50 pcs) to calculate piece weight. Overload Protection- Prevents damage from excessive weight. Auto Calibration - Maintains long-term accuracy with internal or external calibration options. Sturdy Platform- Stainless steel pan with anti-slip design for stable weighing. Battery and AC Operation- Can run on rechargeable batteries or power adapter.   How to Use Counting Balance-Weighing Scale: Turn On the Scale - Power it on and wait for the display to stabilize at zero. Tare the Container - Place an empty container on the pan and press the "TARE" button to zero out its weight. Set Sample Size - Place a known quantity (e.g., 10 or 20 pcs) of identical items on the scale. - Enter the sample quantity using the keypad. Confirm Unit Weight - The scale calculates and stores the average unit weight automatically. Add Bulk Items - Add the rest of the items into the container. - The display will show the total count based on the stored unit weight. Record Results   - Note down the total piece count and remove the items. Turn Off After Use - Power off the scale to save battery or electricity.     Counting Balance /Weighing Scale Model : DS610C Brand : DIGISCALE Origin : Germany Capacity : 3 kg Division : 0.1g Min Weight : 0.5g Grade : Class 3 Platter : 280 × 215mm Battery : Rechargeable Battery with AC Adaptor Display : Double Large LCD Display Warranty : One Year Service Warranty SPECIFICATION Build With 5 Measuring Units: kg, g, lb, oz, PCS Count Platter : 280 × 215mm Quality : Heavy Duty Premium Quality Product Net / Gross Weight : 3080g / 3130g Battery : Rechargeable Battery with AC Adaptor Battery Capacity: 6V 4.5Ah / 20 HR Adaptor Power Input : AC 220V-240V / 50Hz Adaptor Power Output : 10V DC/ 500mA Display : Double Large LCD Display Color : White-Gray Keyboard : 20 Members Key Operating Temperature : 0-40°C (32-104°F) FEATURES Auto Zero Tracking Automatic Overload Display Grade Class 3 Auto Backlight Double LCD Display Low Battery Indication Rechargeable Battery with Adaptor Save Electricity Advantage Piece Counting Functionality: The DS603C Counting Weighing Scale is prepared with an precise piece checking highlight, perfect for stock administration, generation lines, and quality control assignments. This guarantees you can tally things like screws, jolts, or other little components efficiently. High-Precision Digital Scale Display: The advanced scale show gives clear and precise readings, making it simple to screen weight and amount. Its shinning and natural interface guarantees ease of use in diverse lighting conditions. Digital Scale Calibration: To keep up exactness, the DS610C weighing scale calibration prepare is direct, guaranteeing the scale remains dependable over time. Normal weight scale calibration ensures reliable execution, indeed with overwhelming use. Durable and Reliable Build: The DS610C advanced weight scale is created with strong materials to withstand visit utilize in requesting situations, such as stockrooms and fabricating facilities. Versatility: As a weighing and tallying scale, it combines the benefits of weight estimation and piece tallying in one gadget. This makes it appropriate for a wide extend of applications, from retail to mechanical uses. Categories: Digital Scale and Balance, Piece Counting Scale, Table Top Scale
      Counting Balance-Weighing Scale

      Counting Balance-Weighing Scale

       
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      Fabric Flame Retardant Tester

      Fabric flame retardant tester

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

      Fabric Flame Retardant Tester

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