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Laboratory Mini Stenter Dryer
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    Home Dyeing Lab Machine Laboratory mini stenter Dryer
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    Laboratory mini stenter Dryer

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    Laboratory mini stenter Dryer
    Laboratory Mini Stenter Dryer

    Automatic fixing Dryer

     

    A Laboratory Mini Stenter Dryer is a compact, lab-scale machine designed to simulate the drying and heat-setting processes used in textile finishing. It mimics the function of industrial stenter machines but on a much smaller scale, making it ideal for testing fabric behavior, shrinkage, and finish quality under controlled conditions.

    Key Features:

    1. Controlled Heating System

    – Typically uses electric heating with adjustable temperature (up to 220–250°C).

    – Ensures uniform and precise temperature control.

    1. Adjustable Fabric Width

    – Equipped with clips or pins to hold and stretch fabric width-wise, simulating stenter frame action.

     

    1. Variable Speed Conveyor – Allows control over fabric dwell time for drying or heat-setting.
    2. Compact and Bench-Top Design – Space-saving design ideal for textile labs and R&D units.
    3. Digital Controls – Easy-to-use digital interface for setting temperature, conveyor speed, and process time.
    1. Transparent Viewing Window – Allows operators to monitor fabric movement and drying visually.
    2. Low Energy Consumption – Designed for lab use, consuming less power than industrial models.

    Applications:

    – Heat-setting of synthetic fabrics.   Drying and curing of samples post-dyeing or printing.

    – Evaluating fabric shrinkage, dimensional stability, and finish behavior.

    – Testing chemicals and auxiliaries used in textile finishing.

     

    Benefits of Laboratory Mini Stenter Dryer:

    1. Accurate Simulation of Production – Mimics industrial stenter conditions on a lab scale, ideal for pre-production testing and R&D.
    2. Cost-Effective Testing – Enables testing and fabric finishing without the high cost or space requirements of full-scale machines.

     

    1. Energy Efficient – Consumes less power compared to large stenters, making it economical for small-scale or frequent use.
    2. Precise Control – Offers accurate control of temperature, speed, and fabric tension, ensuring consistent results.

     

    1. Space-Saving Design – Compact and bench-top friendly, perfect for laboratories with limited space.
    2. Multiple Applications – Useful for drying, heat-setting, shrinkage testing, and evaluating chemical finishes.

     

    1. Faster Development Cycles – Speeds up new product development by allowing rapid sample testing and adjustments.
    2. Improved Fabric Quality – Helps optimize finishing parameters for better dimensional stability, hand feel, and appearance.
    3. Safe and User-Friendly- Designed with lab safety in mind, including temperature safety controls and easy operation.

     

    Features of Laboratory Mini Stenter Dryer:

    1. Compact Bench-Top Design – Ideal for laboratory use with limited space requirements.
    2. Adjustable Temperature Control – Precise heating (usually up to 220–250°C) with digital controllers for accurate processing.

     

    1. Variable Conveyor Speed- Allows adjustment of fabric dwell time for different drying or heat-setting needs.
    2. Width Adjustment Mechanism – Equipped with clips or pins to stretch and fix fabric width-wise, simulating industrial stenter conditions.

     

    1. Transparent Viewing Window – Enables visual monitoring of fabric movement and drying inside the chamber.
    2. Digital Display Panel- Easy-to-use interface for setting and monitoring temperature, speed, and time.
    3. Stainless Steel Construction- Durable and corrosion-resistant for long-term use at high temperatures.

     

    1. Uniform Heat Distribution- Ensures consistent fabric treatment across the width.
    2. Safety Features- Over-temperature protection and insulated body for operator safety.
    3. Versatile Applications – Suitable for drying, heat-setting, shrinkage testing, and chemical finish evaluations.

     

    Laboratory Mini Stenter Dryer dealer In Bangladesh,

    Lab Mini Stenter Dryer Importer in Bangladesh,
    Mini Stenter Dryer in Bangladesh,
    Laboratory Stenter Dryer in Bd,
    Lab Stenter Dryer In Uttara,
    Lab Stenter Price in Bangladesh,
    Laboratory Stenter Dryer in Bangladesh,
    Laboratory Mini Dryer in Bangladesh,

     

    Automatic fixing dryer

    Application:
    used for simulating the production onsite to produce the textile that meets customer requirement,
    including the time、temperature、resin auxiliary agent formula, elongation of the same textile, and
    it is also can provide basis manufacture and to ensure the correctness of mass production.
    Basic design as Automatic Fixing Dryer,also connect external steam for printing sample
    steaming. Owing the wide adjusting ranges regarding temperature, humidity, dwelling time, this
    apparatus can be used for :
    a) Electric heating for drying, curing and thermofixation, room temp.~230℃.
    b) Steaming with saturated steam 102±2℃
    c) Electric heating and steam together for HT steaming between 102±230℃

    Textile Testing Instruments
    Automatic Fixing Dryer  dealer In Bangladesh,
    Automatic Fixing Dryer Importer in Bangladesh,
    Automatic Fixing Dryer in Bangladesh,
    Automatic Fixing Dryer  in Bd,
    Automatic Fixing Dryer  In Uttara,
    Automatic Fixing Dryer  Price in Bangladesh,
    Automatic Fixing Dryer  Supplier in Bangladesh,
    Lab Dryer Machine in Bangladesh,
    Rapid Dryer Mini Stanter in Bangladesh

    Categories: Dyeing Lab Machine, Physical Testing & Fabric Testing Tags: Automatic Fixing Dryer Importer in Bangladesh, Automatic Fixing Dryer in Bangladesh, Automatic Fixing Dryer  dealer In Bangladesh, Automatic Fixing Dryer  Price in Bangladesh, Automatic Fixing Dryer  Supplier in Bangladesh, Lab Dryer Machine in Bangladesh, Lab Mini Stenter Dryer Importer in Bangladesh, Lab Stenter Dryer In Uttara, Lab Stenter Price in Bangladesh, Laboratory Mini Dryer in Bangladesh, Laboratory Stenter Dryer in Bangladesh, Laboratory Stenter Dryer in Bd, Mini Stenter Dryer in Bangladesh, Rapid Dryer Mini Stanter in Bangladesh Brand: DUNLIN
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    Fiber Oil Fast Extractor

    Fiber Oil Fast Extractor

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    Fiber Oil Fast Extractor

    Fiber Oil Fast Extractor

    Fiber Oil Fast Extractor

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

      Fiber Oil Fast Extractor

     
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    Fabric air permeability tester

    Fabric air permeability tester

    Dyeing Lab Machine, Physical Testing & Fabric Testing
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    Fabric Air Permeability Tester
    Fabric air permeability tester

    Fabric air permeability tester

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

    Gray scale

    Physical Testing & Fabric Testing
    $0.00
    Gray Scale
    Gray Scale

    Gray Scale

      The Gray Scale is a visual tool used in the textile and dyeing industry to evaluate and grade the color change or staining of a fabric after testing (e.g., washing, rubbing, and light exposure). It helps assess how much a fabric's color has altered or transferred during durability or fastness tests. Types of Gray Scale:
    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 :
    1. Standardized Evaluation - Provides a consistent and objective way to assess color change or staining.
    2. Simple and Quick to Use - Enables rapid visual comparison during fabric testing.
    3. Widely Accepted - Complies with international standards (ISO, AATCC) for color fastness grading.
    4. Cost-Effective Tool - Inexpensive yet essential for reliable quality control in textiles.
     
    1. Enhances Quality Assurance - Helps detect dyeing or printing issues before bulk production.
    2. Supports Multiple Tests - Used for evaluating wash fastness, rubbing fastness, perspiration, light exposure, and more.
    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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    Laboratory Padder
    Laboratory Padder

    Laboratory Padder

    Dyeing Lab Machine
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    Laboratory Padder

    Laboratory Padder

    Mini Lab Dyeing Padder

    A Laboratory Padder is a compact, laboratory-scale machine used to apply liquids like dyes, chemicals, and finishes to fabric samples. It simulates the padding process in textile manufacturing, where fabric is passed through a liquid solution, then squeezed between rollers to ensure uniform application and absorption.   Key Features of a Laboratory Padder:
    1. Adjustable Rollers - The fabric is passed through two or more rollers to apply even pressure and squeeze out excess solution, ensuring uniform chemical or dye application.
    2. Variable Pressure Control - Allows adjustment of roller pressure for different fabric types and chemical formulations, ensuring optimal penetration without damage.
     
    1. Solution Bath - Holds the liquid (e.g., dye, finish, or other chemical treatments) in a bath through which the fabric is dipped before passing through the rollers.
    2. Fabric Speed Control - Adjustable conveyor speed allows for control over the time the fabric spends in contact with the liquid solution, affecting the degree of treatment.
     
    1. Digital Control Panel - Provides easy adjustment of pressure, speed, and solution volume to ensure precise and reproducible results.
    2. Compact Design - Smaller, lab-scale version of industrial padders, ideal for research, development, and small-scale testing.
     
    1. Safety Features - Safety guards, emergency stops, and proper handling mechanisms to prevent accidents during operation.
    Applications: - Dyeing: For even application of dye or pigment on fabric. - Finishing: Applying finishes like softeners, water repellents, or flame retardants. - Chemical Treatments: Applying various chemicals used in textile manufacturing, such as anti-microbial treatments or stain-resistant solutions. - Shrinkage Testing: Simulating treatments to test fabric behavior under different conditions.   Benefits of Laboratory Padder:
    1. Precise Application of Chemicals - Provides uniform and controlled application of dyes, finishes, and other chemicals, ensuring consistent results.
    2. Small-Scale Testing - Ideal for small sample testing, allowing for fabric treatment without needing full-scale production equipment.
     
    1. Versatile Use - Suitable for dyeing, finishing, and applying various chemical treatments, making it a flexible tool for R&D labs.
    2. Cost-Effective - Reduces the need for large-scale machinery and the associated costs, while providing reliable results for small batches.
     
    1. Controlled Fabric Treatment - Offers adjustable pressure, speed, and solution concentration, enabling fine-tuned processing for different fabric types and applications.
    2. Accelerates Development - Speeds up the testing and development of new products or finishes, improving time-to-market for textile manufacturers.
    3. Energy Efficient - Consumes less energy compared to larger, industrial-scale machines, making it suitable for lab use.
    4. Compact and Space-Saving - Designed for laboratory environments with limited space, without compromising on functionality.
     
    1. Reproducible Results - Ensures consistent application of treatments across multiple samples, aiding in accurate testing and comparison.
      Features of Laboratory Padder:
    1. Adjustable Roller Pressure - Allows precise control over the pressure applied to the fabric, ensuring uniform chemical or dye application.
    2. Variable Speed Control - Adjustable conveyor speed for controlling the time the fabric spends in the solution bath, influencing the absorption rate.
     
    1. Solution Bath - Holds dye, chemicals, or finishes, and the fabric passes through this bath before moving to the rollers.
    2. Digital Control Panel - Easy-to-use interface for setting and adjusting parameters like speed, pressure, and solution concentration.
     
    1. Compact and Lab-Friendly Design - Designed for smaller, space-efficient use in textile labs, allowing for small sample testing.
    2. Roller Gap Adjustment - Allows for fine-tuning of the gap between rollers to regulate the amount of solution squeezed out of the fabric.
     
    1. Stainless Steel Construction - Durable and resistant to corrosion from the chemicals used in textile treatments.
    2. Safety Mechanisms - Includes safety guards, emergency stops, and user protection features during operation.
    3. Even and Controlled Application - Ensures even distribution of treatments (dye, finish, etc.) on fabric with minimal waste.
    4. Versatility in Application - Can be used for a wide range of textiles and treatments, including dyeing, softening, flame-retardant treatments, etc.
      How to Use a Laboratory Padder:
    1. Prepare the Fabric Sample - Cut the fabric sample to the required size for the experiment. Ensure it’s clean and free of any debris.
    2. Prepare the Solution - Mix the dye, chemical, or finish solution according to the desired concentration and the fabric's needs. Ensure that the solution is homogeneous.
     
    1. Set the Parameters - Pressure: Adjust the roller pressure based on the fabric type. Different fabrics require different pressure levels to ensure uniform application. - Speed: Set the fabric conveyor speed depending on the desired treatment time (longer exposure for deeper treatment).
    - Roller Gap: Adjust the roller gap to control the amount of liquid squeezed out from the fabric.  
    1. Load the Fabric into the Machine - Place the fabric carefully into the machine. The fabric should go through the solution bath and then pass between the rollers.
    2. Start the Machine - Turn on the machine and allow the fabric to pass through the rollers. The solution will be evenly applied to the fabric as it moves through the bath and is squeezed by the rollers.
     
    1. Monitor the Process - Keep an eye on the fabric to ensure it is being treated uniformly and there are no blockages or fabric jams.
    2. Unload the Fabric - Once the fabric has been treated, carefully remove it from the machine. Inspect for even application of the solution and any excess liquid.
     
    1. Dry or Process Further - Depending on the treatment, proceed with further steps such as drying, heat setting, or curing, as required by the experiment or process.
    Safety Tips:- Always wear appropriate personal protective equipment (PPE), such as gloves and goggles, when handling dyes or chemicals. - Ensure the machine is turned off and the rollers are stopped before attempting to remove or adjust the fabric.   Laboratory Padder dealer In Bangladesh, Lab Padder Importer in Bangladesh, Laboratory Padding mangle in Bangladesh, Laboratory Padding mangle in Bd, Laboratory Padder  Price in Bangladesh, Laboratory Padder in Bangladesh, Laboratory Padding mangle price in Bangladesh       Laboratory Padder
    Laboratory Padder

    Mini Lab Dyeing Padder

    Brand: DUNLIN Model:PM-A1 Origin: China Roller position: Vertical Rollers width :450mm Rollers diameter:125mm Rubbers hardness: 70degree shore Cloth speed: 0-10m/min Standard pressure: 0.6Mpa Retained dyestuff ratio: 40-80% Power supply: 1∮AC 220V 50/60HZ Dimensions (L x W x H):710 x 600x 1340mm Standard Accessories English manual Certificate of quality. Laboratory Padder Machine Dunlin price in Bangladesh Laboratory Padder Machine Dunlin in textile Textile testing equipment in Bangladesh Textile testing equipment in Dhaka Textile testing equipment in Uttara MAAM tex Laboratory Padder Machine Dunlin price in BangladeshLaboratory Padder
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    Digital Bench top PH Meter
    Digital Bench top PH Meter

    Digital Bench top PH Meter

    Dyeing Lab Machine
    $0.00

    Digital Bench top PH Meter

    Digital Bench top PH Meter

    Digital Bench top PH Meter

    Brand: Hanna Model: HI2002 Country of Manufacture: Romania Origin: USA

    Digital Bench top PH Meter

    Single parameter of Digital Bench top PH Meter features user-friendly tablet design with bench, portable or wall mount options for ultimate flexibility. Switch from portable to bench in the same procedure or clear the surface for easier working and hang on the wall. Digital Bench top PH Meter Range -2.00 to 16.00pH; pH  Digital smart electrode compatible  Accuracy: ±0.01 pH edge® pH is dedicated to testing pH. Using Hanna's latest innovation in technology and design, edge® can be adapted to suit your working method. Select from hand held, wall mount or bench top - or switch between them all. edge® is happy any which way. Simply plug in the electrode, then play. Measurement is simpler, quicker and more accurate than ever. Results are fast and reliable. Combining high precision technology with the user-friendly dimensions and format of a small digital tablet, edge® is breaking new ground in electrochemistry. This is a must-have meter for your laboratory.
    pH Range basic mode: -2.00 to 16.00 pH; standard mode: -2.000 to 16.000 pH
     Resolution basic mode: 0.01 pH; standard mode: 0.001 pH
     Accuracy (@25°C) basic mode: ±0.01 pH; standard mode: ±0.002 pH
     Calibration basic mode: automatic, up to three points calibration, 5 standard buffers available; standard mode: automatic, up to five point calibration, 7 standard buffers available and two custom buffers
    Temperature Compensation automatic, -5.0 to 100.0°C (using integral temperature sensor)
    Electrode Diagnostics standard mode: probe condition, response time and out of calibration range
    mV pH Range ±1000 mV
     Resolution 0.1 mV
     Accuracy (@25°C) ±0.2 mV
    ORP Range ±2000 mV
     Resolution 0.1 mV
     Accuracy (@25°C) ±0.2 mV
    Temperature Range -20.0 to 120.0°C
     Resolution 0.1°C
     Accuracy ±0.5°C
    Additional Specifications:
     Probe HI-11310 digital glass body pH electrode with 3.5mm connector and 1m cable
     Logging up to 1000 (400 for basic mode) records organised in: manual log-on demand (max. 200 logs), manual log-on-stability (max. 200 logs), interval logging (max. 600 samples; 100 lots)
     Connectivity 1 USB port for storage; 1 micro USB port for charging and PC connectivity
     Environment 0 to 50°C; RH max 95% non-condensing
     Power Supply 5 VDC adapter (included)
     Dimensions 2020 x 140 x 12 mm
     Weight 250 g
    A Digital Bench Top pH Meter is a laboratory-grade instrument designed to measure the pH (acidity or alkalinity) of liquid samples with high precision. It's commonly used in research labs, industrial applications, environmental testing, and educational institutions. Key Features of a Digital Bench Top pH Meter
    1. High Accuracy and Resolution
    - Offers precise pH measurements, often with accuracy up to ±0.01 pH units. - Suitable for applications where exact pH control is critical.  
    1. Digital Display   - Large, clear LCD or LED screen shows pH readings, temperature, and sometimes mV or ion      concentration.   - Some models include a backlit display for better visibility.
     
    1. Electrode System   - Uses a pH-sensitive electrode (usually glass) connected to a reference electrode. Electrodes are often replaceable and require regular calibration and maintenance.
     
    1. Temperature Compensation - Automatic or manual temperature compensation to correct pH readings based on sample temperature.   - Integrated temperature sensors or separate probes are used.
    1. Calibration Functions   - Supports 2-point, 3-point, or multi-point calibration using standard buffer solutions.   - Auto-recognition of calibration buffers in advanced models.
    1. Data Storage and Connectivity   - Internal memory for storing results.   - USB or RS232 ports for data export to PCs or printers; some models support wireless connectivity.
    1. Sturdy Design   - Benchtop models are larger and more stable than portable meters.   - Often come with a durable casing and electrode arm for hands-free operation.
    Applications - Water quality testing (e.g., in wastewater treatment, drinking water monitoring) - Chemical and pharmaceutical industries - Food and beverage production - Biological and environmental research - Educational laboratories A Digital Bench Top pH Meter offers numerous benefits, making it a preferred choice in laboratory and industrial environments where accuracy, reliability, and ease of use are essential. Benefits of a Digital Bench Top pH Meter
    1. High Accuracy and Precision
    - Provides accurate and consistent pH readings, often with ±0.01 pH resolution. - Ideal for scientific and quality control applications where precise pH monitoring is critical.  
    1. User-Friendly Interface- Digital displays (LCD/LED) make readings easy to see and interpret.- Many models offer intuitive controls and guided calibration, simplifying operation.
     
    1. Advanced Calibration Features- Supports multi-point calibration for improved accuracy across a wide pH range.- Some models automatically recognize buffer solutions, reducing user error.
    1. Temperature Compensation- Automatic temperature compensation (ATC) corrects readings based on sample temperature, ensuring accuracy.
    1. Stable and Durable Design- Benchtop units are more robust and stable than handheld devices, reducing the risk of spills or tipping.- Often include electrode holders or arms for secure, hands-free measurements.
    1. Data Management and Connectivity- Built-in memory for storing measurement data.USB, RS232, or wireless connectivity for exporting data to computers or laboratory information systems (LIS).
    1. Multi-Functionality- Some models also measure ORP (oxidation-reduction potential), ion concentration, or conductivity.- Suitable for a variety of testing needs beyond just pH.
    1. Ideal for Long-Term Use- Designed for prolonged and repeated use in laboratory environments.- Replaceable electrodes and parts extend the meter’s usable life.
    1. Compliance and Documentation- Data logging features support documentation and compliance with regulatory standards in regulated industries (e.g., pharma, food, environmental testing).
     
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    Random Tumble Pilling Tester

    Random Tumble Pilling Tester

    Physical Testing & Fabric Testing
    $0.00

    Random Tumble Pilling Tester

    Random Tumble Pilling Tester

    Random Tumble Pilling Tester

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

    Color fastness to washing machine

    Dyeing Lab Machine
    $0.00
    COLOR FASTNESS TO WASHING MACHINE
    COLOR FASTNESS TO WASHING MACHINE

    COLOR FASTNESS TO WASH MACHINE

    Color fastness to washing machine refers to a fabric’s resistance to fading or bleeding when subjected to washing processes. This test measures how well the dye or colorant stays on the fabric when exposed to water, detergent, heat, and mechanical action—conditions typically found in household or industrial washing machines. Purpose of Color fastness to washing machine - To evaluate the durability of dyed or printed textiles during laundering.- Essential for determining fabric quality and suitability for end-use (e.g., clothing, upholstery). Test Method Usually based on international standards such as: - ISO 105-C06 - AATCC 61- IS 3361- AATCC 28/61/132/151/190, BS 1006 C01-C05, ISO 105 Part C01-C06/C08/D01, M&S C4/C5/C10A/P3B, FTMS 191-5610, NEXT TM2/3/5, GB/T 5711/3921 Procedure (Simplified)1. Sample Preparation:   - A fabric specimen is stitched with undyed adjacent fabrics (usually cotton or wool).2. Washing:   - Washed in a laboratory washing machine using standard detergent, water, and specific temperature/time settings (e.g., 40°C for 30 minutes).
    1. Drying: - After washing, the sample is dried, typically air-dried or tumble-dried.4. Evaluation: - Color change and staining on adjacent fabrics are assessed using a gray scale (1 to 5 scale; 5 = no change, 1 = severe change).   - Results may also be evaluated visually under standard lighting.
    Types of Color fastness to washing machine Tests Domestic laundering (home washing conditions)- Industrial laundering (more intense, commercial cleaning)- Accelerated washing (to simulate multiple washes in less time) Applications- Apparel (especially colored garments)- Home textiles (bed linens, curtains)- Industrial fabrics Would you like to know how to perform this test in a lab setting or check color fastness ratings for specific fabrics? Benefits of Color fastness to washing machine: Ensures Product Quality     - Confirms the durability of dyes and prints during laundering, maintaining the fabric's original appearance.2. Enhances Customer Satisfaction - Reduces complaints and returns caused by fading, bleeding, or color transfer.
    1. Supports Brand Reputation - Reliable color fastness contributes to a premium product image and consistent performance.4. Compliance with Standards - Meets industry requirements (e.g., ISO, AATCC), crucial for export, certifications, and regulatory compliance.
    2. Improves Process Control- Helps identify dyeing or finishing process issues early, leading to better production control.6. Reduces Rework and Waste - Minimizes production losses due to color defects after washing.
    3. Essential for Specific End Uses - Critical for items subject to frequent washing (e.g., uniforms, baby clothes, hospital linens).8. Supports Material Selection - Guides textile manufacturers in choosing appropriate dyes and fabrics for specific applications.
    Features of Color Fastness to Washing Machine Test:1. Standardized Testing Methods - Follows international standards like ISO 105-C06, AATCC 61, ensuring consistency and comparability of results.2. Simulated Washing Conditions - Replicates real-world laundering (water, detergent, temperature, mechanical action) in a controlled lab environment.
    1. Assessment of Color Change and Staining- Evaluates both the fabric’s color retention and the staining of adjacent fabrics using grey scales (1 to 5 rating).4. Multi-Fiber Fabric Use - Tests include fabric stitched with adjacent test strips (cotton, wool, etc.) to assess color bleeding onto different fibers.
    2. Multiple Test Options - Includes domestic, accelerated, and industrial washing conditions depending on the end-use of the fabric.6. Temperature and Time Control - Precise control over wash temperature (e.g., 40°C, 60°C) and duration (e.g., 30 mins), simulating specific washing cycles.
    3. Detergent and Additive Use - Uses standardized detergent formulations with/without optical brighteners, and sometimes alkaline or oxidizing agents.8. Reproducible and Quantifiable - Provides repeatable results that can be objectively measured and documented.
    4. Applicability to All Textile Types - Suitable for dyed, printed, or coated fabrics across various fibers (cotton, polyester, blends, etc.).
    Model: WF-12 Brand: Dunlin Origin: China Beaker Capacity: 12 Test Scope: Dyed textile product Consumables of Color fastness to washing machine: Specimen Container, Stainless Steel Ball, Stainless Steel Disc, Container Sealing Gasket Specification of Color fastness to washing machine: 1. Test dock: 6 unit 550mL containers + 6 unit 1200mL containers 2. Specimen rack rotation speed: 40±2rpm 3. Capacity of container: 550mL, 1200mL 4. Temperature range: Room temperature to 97ºC 5. Temperature accuracy: ± 0.5ºC
    1. Rate of temperature rise: Maximum speed for 2ºC/min 7. Internal materials: Imported Stainless Steel 316L 8. Control panel: Touch screen
    2. Rack point control function helps to replace containers easily 10. Safety device: Safety door switch, over-temperature protector and dry heating protector 11. Heating media: Distilled water 12. Power supply: AC220V 50Hz 30A
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