Fabric Stiffness Tester

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Fabric Stiffness Tester

Fabric Stiffness Tester

Fabric Stiffness Tester

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

Fastness Rotary Friction Tester

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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

Fatigue tester for Elastic fabric

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Fatigue Tester for Elastic Fabric

Fatigue tester for Elastic fabric

Fatigue tester for Elastic fabric

  A Fatigue Tester for Elastic Fabric is a specialized instrument designed to evaluate the durability and performance of elastic materials, such as elastic bands, tapes, and fabrics, under repeated stretching and relaxation cycles. This testing is crucial for applications where elastic materials are subjected to continuous or repetitive stress, ensuring they maintain their functionality over time.   Purpose Fatigue Tester for Elastic Fabric The primary objective of this tester is to simulate the conditions that elastic fabrics endure during actual use. By repeatedly stretching and relaxing the material, the tester assesses:   - Elastic Recovery: The ability of the material to return to its original length after stretching. - Fatigue Resistance: How well the material withstands repeated cycles without significant degradation. - Durability: The lifespan of the elastic properties under continuous use.   Working Principle of Fatigue Tester for Elastic Fabric The tester operates by clamping a specimen of the elastic fabric and subjecting it to cyclic stretching and relaxation.   Key operational features include: Cycle Count: The number of stretching and relaxation cycles is set according to testing requirements. - Speed Regulation: The rate of stretching can be adjusted to simulate different usage conditions. - Monitoring: The tester records data such as the number of cycles completed and any changes in the fabric's properties.   For instance, the Elastic Band Fatigue Tester ADL-FT01 features a high-speed linear slide, servo motor, and touch screen control software, allowing precise control over stretching parameters   Key Specifications of Fatigue Tester for Elastic Fabric While specifications may vary among different models, common parameters include: - Stretch Percentage: Adjustable from 0% to 100%. - Stretching Speed: Up to 40 cycles per minute. - Sample Length Range: Maximum of 260mm. - Cycle Count Capacity: Up to 9,999,999 cycles. - Control Interface: Typically a 7-inch color touch screen. - Power Supply: AC220V 50Hz/60Hz. These features enable comprehensive testing of elastic materials under various conditions.   Benefits of Fatigue Tester for Elastic Fabric - Quality Assurance: Ensures that elastic materials meet required durability standards. - Product Development: Aids in the design of materials with improved fatigue resistance. Cost Efficiency: Identifies potential material failures early, reducing product returns and warranty claims. - Compliance: Helps manufacturers adhere to industry standards such as GB/T 37635.   Applications of Fatigue Tester for Elastic Fabric Fatigue testers for elastic fabrics are widely used in: - Textile Manufacturing: Testing elastic components in garments, such as waistbands and cuffs. - Medical Textiles: Evaluating the durability of elastic materials used in bandages and supports. - Automotive Industry: Assessing elastic components in car interiors. - Research and Development: Developing new elastic materials with enhanced properties.   Features of Fatigue Tester for Elastic Fabric:
  1. Adjustable Stretch Range - Allows setting stretch levels (e.g., 0–100%) to simulate real-life fabric use.
  2. High-Cycle Capability - Supports up to millions of stretch-relax cycles for long-term fatigue analysis.
  3. Touch Screen Control - 7-inch color display for easy setup, monitoring, and data entry.
  4. Servo Motor Driven - Ensures precise and smooth linear motion during testing.
 
  1. Customizable Speed - Adjustable test speed (e.g., up to 40 cycles per minute) based on test requirements.
  2. Multi-Sample Testing - Some models allow testing multiple specimens simultaneously.
  3. Cycle Counter with Alarm - Built-in counter with programmable stop after preset cycles and auto-alert feature.
 
  1. Durable Construction - Robust metal frame suitable for continuous testing in lab environments.
  2. Standard Compliance - Designed to follow standards like GB/T 37635 for elastic fabric testing.
  How to Use Fatigue Tester for Elastic Fabric:
  1. Prepare the Sample
- Cut the elastic fabric to the specified size (e.g., 260 mm max length). - Mark the gauge length if needed for measurement after testing.
  1. Mount the Sample - Secure both ends of the fabric in the upper and lower clamps.
  2. Set Test Parameters
- Enter the desired stretch percentage (e.g., 50%). - Set the number of cycles and speed (e.g., 30 cycles/min). - Adjust dwell time if required (time fabric stays stretched).  
  1. Start the Test - Press start on the touch screen interface. - The machine will cyclically stretch and release the sample.
  2. Monitor Progress - Observe operation or let it run automatically.
- Machine stops automatically after reaching the set cycles.
  1. Remove and inspect - Take out the fabric and measure elongation, recovery, or visual defects.
  2. Record and Compare Results - Compare with initial measurements or standard performance criteria.
    Fatigue tester for Elastic fabric

    Fatigue tester for Elastic fabric

   

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

 

Fully Automatic Radio Frequency Dryer

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Fully Automatic Radio Frequency Dryer
Fully Automatic Radio Frequency Dryer

Fully Automatic Radio Frequency Dryer

  A Fully Automatic Radio Frequency (RF) Dryer is an advanced drying machine that uses radio frequency waves (similar to microwaves but at lower frequency) to dry materials like textiles, paper, wood, and food products. It delivers uniform and rapid moisture removal from within the material, rather than just the surface.   Purpose of Fully Automatic Radio Frequency Dryer: To dry moisture-sensitive materials quickly and evenly using electromagnetic energy, especially where conventional drying is slow or inconsistent.   How It Works: RF waves penetrate deep into the material. Moisture molecules absorb RF energy, generating heat internally. This causes water to evaporate from the inside out. Built-in sensors and controls automate and optimize the process.     Applications of Fully Automatic Radio Frequency Dryer: Textile drying (especially for fabrics with high GSM or special finishes) Paper and nonwoven industries Wood drying Food processing (e.g., pasta, fruits)   Benefits of Fully Automatic Radio Frequency Dryer: Fast Drying Time - RF energy dries materials from the inside out, significantly reducing drying time. Uniform Drying - Prevents surface overheating or under-drying issues common with conventional dryers. Energy Efficient - Targets moisture directly, using less energy compared to thermal dryers.   Improves Product Quality - Reduces shrinkage, deformation, and color fading, especially in textiles. Fully Automatic Operation - Programmable controls minimize manual handling and ensure consistency. Safe for Delicate Materials - Ideal for sensitive or high-value products that can't withstand high surface heat. Reduced Footprint - Compact, vertical designs save floor space in industrial setups.     Features of Fully Automatic Radio Frequency Dryer: Touchscreen Control Panel- For setting drying time, temperature, and moisture target. Auto Load/Unload System - Increases productivity with minimal labor. Moisture Sensors - Monitor and control drying to prevent over-drying. RF Power Generator - High-efficiency RF unit for stable energy output.   Cooling System Built-in cooling for temperature-sensitive materials post-drying. Safety Interlocks - Automatic shutoff if overheating or door open detected.   How to Use Fully Automatic Radio Frequency Dryer: Prepare the Material - Ensure the fabric or material is clean and evenly spread or stacked as required. Power On the Machine - Switch on the main power and wait for the system to initialize. Load the Material - Use the conveyor or auto-loader to place material inside the drying chamber.   Set Drying Parameters of Fully Automatic Radio Frequency Dryer - On the touchscreen panel, input: - Drying time - Target moisture level - RF power level - Temperature limits (if applicable)   Start the Drying Cycle - Press the start button. The RF system activates and begins drying internally. Monitor Process (Auto/Manual) - Most machines auto-adjust based on moisture sensor feedback. - You can monitor real-time temperature and drying progress on the display.   Cooling (Optional) - If enabled, the cooling cycle will activate after drying to stabilize the material. Unload Material - Use the conveyor or manual method to remove the dried product safely.   Shutdown - Turn off the system and clean the chamber if required. Maintenance Tips for Fully Automatic RF Dryer: Daily Cleaning   - Wipe down the drying chamber and conveyor to remove lint, dust, and moisture residue. Check RF Generator   - Inspect cables, connectors, and ventilation; clean RF components weekly.   Inspect Moisture Sensors - Clean sensor surfaces regularly for accurate readings. Lubricate Moving Parts - Grease conveyor rollers and motor bearings as per the maintenance schedule. Filter Maintenance - Clean or replace air filters monthly to ensure proper ventilation and cooling. Software Updates - Keep the control system firmware updated if your model supports it. Electrical Checks - Inspect wiring, switches, and interlocks for wear or overheating signs.     Safety Precautions:  Use Trained Operators Only - Ensure only qualified personnel operate and maintain the machine. Avoid Overloading - Exceeding material load limits can reduce efficiency and risk damage. Keep Away from RF Area during Operation - Follow RF safety guidelines—do not tamper with shielding or interlocks. Emergency Stop - Know the location and function of the emergency stop switch. Allow Cooling Before Maintenance Let the system cool completely before touching internal components.   Daily Maintenance Checklist – Fully Automatic RF Dryer: [ ] Wipe inside drying chamber [ ] Remove lint/debris from conveyor [ ] Check for unusual noise or vibration [ ] Verify sensor readings on display [ ] Ensure air vents are unobstructed [ ] Inspect emergency stop function   Weekly Maintenance Checklist: [ ] Clean moisture sensors with soft cloth [ ] Inspect RF generator cables and connections [ ] Check conveyor belt tension and alignment [ ] Lubricate moving mechanical parts [ ] Test auto-stop and safety interlocks [ ] Review system logs (if digital system is used)     Monthly Maintenance Checklist: [ ] Clean or replace air and dust filters [ ] Inspect electrical wiring and panel for wear [ ] Tighten loose bolts, screws, or fasteners [ ] Calibrate moisture sensors if needed [ ] Verify RF power output levels [ ] Back up control panel settings and software (if applicable)  
Fully Automatic Radio Frequency Dryer

Fully Automatic Radio Frequency Dryer

 

Gray scale

$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?
Gray Scale

Gray Scale

GSM Cutter with Balance

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GSM Cutter with Balance
GSM Cutter with Balance

GSM Cutter with Balance

  A GSM Cutter with Balance is a lab toolset used to determine the GSM (Grams per Square Meter) of fabrics, which indicates the fabric's weight and density. The kit includes a GSM round cutter and a precision weighing balance.   Purpose GSM Cutter with Balance: To accurately measure the weight per unit area of textile, paper, or nonwoven samples for quality control and product classification.   How It Works: GSM Cutter: - A circular blade cuts a fixed area (usually 100 cm²) from the fabric. Weighing Balance: - The cut piece is weighed, and the result is multiplied by 100 to get GSM. GSM = Weight (in grams) × 100   Applications of GSM Cutter with Balance: Textile and garment industry Nonwovens and paper manufacturing QC labs and R&D   Benefits of GSM Cutter with Balance: Accurate GSM Measurement - Ensures precise fabric weight analysis for quality control. Quick and Simple Operation - Allows fast sampling and GSM calculation in minutes. No Need for Area Calculation - Cutter gives a fixed area (usually 100 cm²), simplifying the formula. Improves Product Consistency - Helps maintain uniform fabric weight across batches.   Portable and User-Friendly - Compact design makes it ideal for labs and production floors. Cost-Effective Tool - Offers high accuracy without the need for expensive equipment. Versatile Use - Suitable for fabrics, paper, leather, films, and more.   Features of GSM Cutter with Balance: Rotary Blade Cutter - Stainless steel blades for clean and accurate circular cuts. Fixed Sample Area - Typically 100 cm², eliminating the need for area measurement. Precision Digital Balance   - Measures in grams with high resolution (0.01 g or better).   Rubber Cutting Pad - Protects blade and provides a smooth surface for cutting. Safety Lock - Prevents accidental blade exposure. Compact & Durable Design- Long-lasting, lab-friendly construction.   How to Use GSM Cutter with Balance: Prepare the Fabric Sample- Place the fabric on the rubber cutting pad. Cut the Sample - Hold the GSM cutter firmly and rotate it to cut a 100 cm² circular sample. Turn on the Balance - Power up the digital weighing scale and tare it to zero.   Weigh the Sample - Place the cut fabric piece on the balance and note the weight in grams. Calculate GSM - Multiply the weight by 100 to get GSM.  - GSM = Sample weight (g) × 100 Record the Result- Log the GSM value for quality control or analysis. Clean and Store - Wipe the cutter and balance, and store them safely after use.   GSM Calculation Formula: GSM (g/m²) = (Weight of Sample in grams) × 100 When using a GSM cutter (100 cm²): The cutter gives a fixed area of 100 cm², which is 1/100th of a square meter. So, multiplying the sample's weight by 100 gives the GSM directly. Example: If the sample weighs 1.75 g, then: GSM = 1.75 × 100 = 175 g/m²   Balance Calibration Guide (Manual Calibration): Warm-Up   - Turn on the balance and let it warm up for 10–15 minutes if required. Level the Balance   - Use the built-in bubble level and adjust leveling feet until the bubble is centered. Tare the Balance   - Press the “TARE” or “ZERO” button to reset the display to 0.000 g.   Enter Calibration Mode   - Press the “CAL” or “MODE” button (depends on the model). - Some balances may require holding the button for a few seconds. Use Standard Weight   - When prompted, place a certified calibration weight (e.g., 100g, 200g) on the pan.   - Wait for the display to stabilize.   Confirm Calibration   - The balance will beep or show “PASS” once successful.   - Remove the weight when done. Recheck Zero  - Ensure the display returns to 0.000 g after removing the weight.   Tips: Use certified weights for accuracy (Class F1 or E2). Calibrate in a draft-free, vibration-free environment. Calibrate daily or before critical measurements.     GSM Cutter  & Balance GSM Cutter Brand: Schroder Origin: Germany Capacity: 100 Sq.cm Supplied with 1 pcs cutting Pad and 04 pcs cutting blade. Digital Electronics balance Precision GSM Weight Balance 0.01g to 200g Model: GSM200 Brand: Schroder Origin: Germany

High speed hard winding machine

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High Speed Hard Winding Machine
High Speed Hard Winding Machine

High Speed Hard Winding Machine

  A High Speed Hard Winding Machine is a textile winding machine designed to wind yarns, threads, or fibers onto cones or packages at high speeds with firm tension. It is used to prepare yarn packages for subsequent processes like weaving or knitting.     Purpose of High Speed Hard Winding Machine: - To wind yarn evenly and tightly with controlled tension for storage or further processing.   Key Features of High Speed Hard Winding Machine - High-speed winding for increased productivity. - Precise tension control to avoid yarn breakage or slack. - Automatic package building to maintain uniform shape. - Suitable for various yarn types—cotton, polyester, wool, etc. - User-friendly controls and safety features.   Applications of High Speed Hard Winding Machine: - Textile mills preparing yarn for fabric production. - Quality control labs for winding test samples. - Textile manufacturing units needing uniform yarn packages.   Benefits of High Speed Hard Winding Machine:
  1. Increased Productivity - High-speed operation reduces winding time significantly.
  2. Consistent Package Quality - Ensures uniform and firm yarn packages ideal for further processing.
  3. Reduced Yarn Breakage - Precise tension control minimizes yarn damage during winding.
  4. Versatility - Handles different types of yarns including delicate and coarse fibers.
 
  1. User-Friendly Operation - Simple controls and automation reduce operator fatigue.
  2. Improved Efficiency - Automatic package build-up reduces manual adjustments.
  3. Space Saving - Compact design fits well in production lines and labs.
  How to Use High Speed Hard Winding Machine:
  1. Set Up the Machine - Switch on the power and check all safety guards.
  2. Load Yarn - Thread the yarn through tension guides and eyelets as per the manual.
  3. Adjust Tension - Set tension according to yarn type to avoid slack or breakage.
  4. Place Empty Cone/Package - Mount the empty cone or package holder securely.
 
  1. Start Winding- Press the start button; machine will begin winding at set speed.
  2. Monitor the Process - Observe yarn package build-up and make adjustments if necessary.
  3. Stop and Remove Package - Once winding is complete, stop the machine and remove the yarn package carefully.
  4. Maintenance - Clean the machine regularly and lubricate moving parts as needed.
  Specifications of High Speed Hard Winding Machine: - Winding Speed: Typically 1000 to 3000 RPM (varies by model) - Package Type: Conical or cylindrical yarn packages - Tension Control: Adjustable mechanical or electronic tension system - Drive System: AC motor with variable frequency drive (VFD) for speed control - Power Supply: Usually 220V/380V, 50/60 Hz - Package Weight Capacity: Depends on model, generally up to 2 kg - Machine Size: Compact footprint for space-saving installation - Control Panel: Digital or analog with start/stop and speed adjustment - Safety Features: Emergency stop, yarn break detection, overload protection     Troubleshooting Tips: - Yarn Breakage: - Check and reduce tension; inspect yarn for weak spots. - Clean guides and rollers to remove any debris. - Uneven Winding: - Ensure correct threading path and tension balance. - Adjust package build-up mechanism. - Machine Not Starting: - Check power supply and emergency stop switch. - Verify control panel settings.   - Excessive Noise: - Lubricate moving parts and tighten loose components. - Inspect bearings for wear. - Package Slippage: - Secure cone properly and check tension settings.   Features of High Speed Hard Winding Machine:
  1. High-Speed Operation - Capable of winding yarns at fast speeds (up to 3000 RPM) to boost productivity.
  2. Precise Tension Control - Adjustable tension mechanism to prevent yarn breakage and ensure tight winding.
  3. Automatic Package Formation - Uniform, firm package build-up for consistent yarn quality.
  4. Versatile Yarn Compatibility - Suitable for cotton, polyester, wool, and blended yarns.
 
  1. User-Friendly Interface - Easy controls with digital or analog panels for speed and tension adjustment.
  2. Robust Construction - Durable stainless steel or metal frame for long-term reliability.
  3. Safety Features - Includes emergency stop buttons and yarn break sensors.
  4. Compact Design - Space-saving structure ideal for labs and production floors.
  5. Low Maintenance - Designed for easy cleaning and minimal upkeep.
    high-speed hard winding machine is used to produce hard cone packages for knitting machine, shuttle loom, warping machine and hosiery machine. It is an ideal winding machine for cotton threads, hemp threads and chemical fiber yarns. TECHNICAL PARAMETERS Grooved drum O/D 82mm, lead 2.5 (turns) ×147, angle: 0° Take-up tubes Cylindrical or cone with conicity of 3°30′, 4 °20′ Bobbin length Standard 170mm, customized range: 170-280mm Yarn length control Electronically set the winding yarn length up to 999999m according to the final package. Electric waxing device (optional) Square wax piece is used for uniform waxing, a set per spindle Slow start Ensures a slow and stable start to improve the winding quality. Counterweight yarn brake Prevent the yarn from shaking during the feeding to provide suitable winding tension. Electronic tensioner Tension plate Number of spindles per section 12 per section Number of spindles, max. 120 Drive Individual variable frequency motor per spindle Max. winding linear speed 1100 m/min, individually controlled per section, frequency control Traverse Standard: 147mm Creel balancer Winding tension is controlled by a spring balancer Yarn detector Photoelectric sensor Package diameter Max. 280mm Start/Stop Membrane switch control, touch screen Vertical anti-patterning device Computer controlled Vacuum cleaner/blower Optional, 1100W (cleaning power) Power consumption 60W/spindle (at the highest speed), including the power of cleaner motor Power supply 3-phase 380V 10%, 50/60Hz, 220V, 440V Weight (12 spindles) 350kg Dimension (12 spindles) 2250mm (L)×1100mm(W)×1400mm(H) Cleaner weight 132 kg, depending on the number of spindles Weight and dimension of the electricity box 45kg, 700mm(L)×300mm(W)×1320mm(H)   FUNCTIONS The winding speed can be set and controlled automatically by the computer, offering a maximum speed of 1100 m/min. Advanced yarn cleaning, tension device and photoelectric yarn detector avoids the yarn loop. Accurate and sensitive speed controller ensures even and consistent winding length (weight). Electrically rotary waxing ensures the waxing quantity and uniformity.
High Speed Hard Winding Machine

High Speed Hard Winding Machine

High Speed Soft Winding Machine

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High Speed Soft Winding Machine latest 2026

High Speed Soft Cone Winding Machine latest 2026

High Speed Soft Cone Winding Machine latest 2026

Brand: FEIHU Model: FHCT-S / As Per Machine Origin: China Machine Type: Cone to Cone Winding Machine Application: Before Dyeing Yarn Preparation

Product Introduction

The High Speed Soft  Winding Machine latest 2026 is a high-efficiency industrial yarn winding machine specially designed for preparing yarn cones before the dyeing process. It is suitable for winding a wide range of yarns, including Cotton, Wool, Acrylic, Polyester and other commonly used textile yarns.The machine is designed to produce well-formed and uniform soft yarn packages, helping improve the quality and consistency of the subsequent dyeing process. With a winding speed of 100–1000 m/min, the machine provides high productivity while allowing the operator to adjust the process speed according to yarn quality and feeding conditions. The High Speed Soft Cone Winding Machine latest 2026 also helps reduce manual workload and improve operational efficiency in textile yarn preparation. Its integrated yarn monitoring and control functions make it suitable for modern spinning, dyeing and textile processing facilities.

Scope of Application

The High Speed Soft Cone Winding Machine latest 2026 is mainly used for before-dyeing yarn preparation. It can be used in textile mills, yarn dyeing factories, spinning mills and other facilities where yarn needs to be prepared in soft cone form before dyeing. It is suitable for:
  • Cotton yarn
  • Wool yarn
  • Acrylic yarn
  • Polyester yarn
  • Blended yarn
  • Other suitable textile yarns
The machine is particularly useful where consistent package formation, controlled yarn tension and efficient production are required.

Standard Features

  • High-speed winding operation
  • 96 spindles per set
  • 12 spindles per section, double side
  • Cone-to-cone winding system
  • Adjustable winding speed from 100–1000 m/min
  • Suitable for different types of textile yarn
  • Individual 90W DC motor for each spindle
  • Meter counting system
  • Automatic yarn break sensor
  • Adjustable speed control
  • Yarn tension control device
  • Anti-stack device
  • Centralized control box
  • Touch-screen control system
  • Voltage regulator
  • Complete with standard accessories
  • Designed for efficient and uniform yarn package formation

Technical Specification of High Speed Soft Winding Machine latest 2026

Parameter Specification
Machine Name High Speed Soft Cone Winding Machine
Brand FEIHU
Model FHCT-S / As Per Machine
Origin China
Machine Type Cone to Cone
Application Before Dyeing Yarn Preparation
Spindle Number 96 Spindles/Set
Spindle Arrangement 12 Spindles/Section, Double Side
Winding Speed 100–1000 m/min
Motor Power 90W DC Motor / Spindle
Yarn Tension Adjustable
Meter Counting Available
Yarn Break Sensor Available
Speed Control Adjustable
Anti-Stack Device Available
Control System Centralized Control Box
Display Touch Screen
Voltage Regulation Available
Standard Accessories Complete Set
Dimension L 18160 × W 1060 × H 1560 mm / As Per Machine
Net Weight As Per Machine

Winding Speed

The FEIHU FHCT-S provides a winding speed range of 100–1000 m/min. The actual process speed can be adjusted according to the quality of yarn, yarn type, feeding condition and required package formation. This adjustable speed function allows users to select an appropriate operating condition for different yarn materials and production requirements.

Spindle Configuration

The High Speed Soft  Winding Machine latest 2026 is configured with 96 spindles per set, arranged as 12 spindles per section with double-side construction. This configuration allows the machine to achieve high production capacity while maintaining an organized and efficient winding arrangement. The multi-spindle design makes the FHCT-S suitable for industrial-scale yarn preparation where continuous and reliable production is required.

Individual Spindle Motor

Each spindle is equipped with a 90W DC motor, providing independent and efficient spindle operation. The individual motor arrangement supports stable winding performance and allows the machine to operate effectively across its specified speed range.

Yarn Tension Control

Consistent yarn tension is an important requirement for producing a properly formed yarn package. The FHCT-S is equipped with a yarn tension device to help maintain controlled yarn tension during the winding process. Proper tension control helps produce more uniform packages and supports improved performance during subsequent textile processing and dyeing operations.

Meter Counting System

The integrated meter counting system enables operators to monitor the winding length during operation. This feature provides convenient production monitoring and helps maintain consistency between yarn packages.

Yarn Break Sensor

The machine is equipped with a yarn break sensor for detecting yarn breakage during winding. This helps the operator identify interruptions quickly and improves the overall efficiency of the winding operation.

Anti-Stack Device

The built-in anti-stack device is designed to support proper yarn distribution during winding. It helps reduce concentrated yarn build-up and contributes to better package formation.

Centralized Touch-Screen Control

The FEIHU FHCT-S features a centralized control box with touch-screen operation, providing convenient access to machine operating functions. The centralized control arrangement makes it easier for operators to monitor and control the winding process from a single operating point.

Voltage Regulator

A voltage regulator is included as part of the standard machine configuration. It supports stable electrical operation and helps protect the machine's control system under suitable operating conditions.

Package Formation

One of the main purposes of the High Speed Soft Winding Machine latest 2026 is to produce a well-formed soft yarn package suitable for subsequent dyeing operations. Proper package formation is important in yarn dyeing because it supports consistent penetration and circulation of dye liquor through the yarn package. The machine's controlled winding speed, yarn tension system and anti-stack arrangement work together to support uniform package preparation.

Applications of High Speed Soft Winding Machine latest 2026

The High Speed Soft Winding Machine latest 2026 can be used in:
  • Yarn Dyeing Factories
  • Textile Manufacturing Plants
  • Spinning Mills
  • Knitting Industries
  • Garment Textile Production
  • Cotton Yarn Processing
  • Wool Yarn Processing
  • Acrylic Yarn Processing
  • Polyester Yarn Processing
  • Blended Yarn Processing
  • Before-Dyeing Yarn Preparation

Suitable Yarn Types

The machine is designed for winding various textile yarns, including: Cotton Yarn: Suitable for preparing cotton yarn packages before dyeing. Wool Yarn: Suitable for appropriate wool yarn winding applications. Acrylic Yarn: Can be used for preparing acrylic yarn for subsequent processing. Polyester Yarn: Suitable for polyester yarn package preparation. Other Textile Yarns: The machine can also be configured for other suitable yarn types according to production requirements.

Advantages of High Speed Soft Winding Machine latest 2026

High Production Efficiency

With up to 96 spindles per set and a winding speed of up to 1000 m/min, the machine is designed for high-volume yarn preparation.

Uniform Yarn Packages

Controlled winding parameters and tension management help produce well-formed and consistent soft cones.

Reduced Labor Intensity

The multi-spindle configuration and centralized control system reduce manual workload and improve operator efficiency.

Adjustable Operating Speed

The winding speed can be adjusted according to yarn quality, yarn type and feeding conditions.

Improved Process Preparation

Properly prepared yarn packages can support more consistent performance during subsequent dyeing and textile processing.

Convenient Operation

The centralized touch-screen control system provides a convenient interface for machine operation and monitoring.

Yarn Break Monitoring

The integrated yarn break sensor helps detect winding interruptions and supports efficient production management.

Complete Standard Accessories

The machine is supplied with its standard accessories and essential operating components.

Why Choose High Speed Soft Winding Machine latest 2026

The High Speed Soft Winding Machine latest2026 is designed for textile manufacturers looking for an efficient and reliable solution for before-dyeing yarn preparation. Its combination of 96-spindle capacity, adjustable 100–1000 m/min winding speed, individual DC motors, yarn tension control, meter counting, yarn break sensing, anti-stack technology and centralized touch-screen control makes it suitable for modern textile production environments. The machine can help textile factories improve yarn preparation efficiency, reduce manual workload and achieve more consistent soft cone packages for subsequent dyeing operations.

Standard Accessories

The machine is supplied with complete standard accessories required for normal operation, subject to the final machine configuration and supplier specification.

Machine Dimension

Length: 18160 mm Width: 1060 mm Height: 1560 mm Dimension: As Per Machine Net Weight: As Per Machine

Product Summary of High Speed Soft Winding Machine latest 2026

The High Speed Soft Winding Machine latest 2026 is an industrial cone-to-cone yarn winding machine designed primarily for before-dyeing preparation. With 96 spindles/set, 12 spindles per section, double-side configuration, 100–1000 m/min winding speed and 90W DC motor per spindle, it provides an efficient solution for preparing cotton, wool, acrylic, polyester and other textile yarns. Its meter counter, yarn break sensor, adjustable speed, yarn tension device, anti-stack device, centralized touch-screen control box and voltage regulator provide convenient and controlled winding operation for modern textile processing facilities.

HTHP Glycerin bath dyeing machine

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HTHP Glycerin Bath Dyeing Machine
HTHP Glycerin bath dyeing machine

HTHP dyeing machine

  The HTHP Glycerin Bath Dyeing Machine (High Temperature High Pressure) is a laboratory or small-scale dyeing machine designed to dye textile samples, especially synthetic fibers like polyester, under high temperature and pressure using glycerin as a heating medium instead of water. Key Features:
  1. High Temperature Capability - Operates up to 140°C or more, ideal for disperse dyeing of polyester which requires elevated temperatures.
  2. Glycerin as Heat Transfer Medium - Glycerin allows for precise and uniform heating beyond the boiling point of water, without pressure buildup as in steam-based systems.
  1. Small Sample Dyeing - Used for lab-scale dyeing of fabric or yarn samples (commonly 5–10 g per tube), useful in R&D or color matching.
  2. Multiple Sample Capacity - Usually has multiple dyeing tubes/chambers for simultaneous dyeing of several samples under identical conditions.
  1. Accurate Temperature and Time Control - Digital or microprocessor-based controllers regulate temperature, heating rate, and timing precisely.
  2. Uniform Dyeing - Ensures even dye penetration due to consistent heat distribution and controlled rotation or agitation.
  1. Energy Efficient Glycerin’s heat retention reduces energy consumption compared to steam systems.
  2. Compact and Durable Design - Bench-top design, made from stainless steel and heat-resistant components for long life and lab use.
Applications: - Disperse dyeing of polyester. - Color matching and development. - Small-batch dye recipe trials before production. Benefits of HTHP Glycerin Bath Dyeing Machine: High-Temperature Dyeing - Enables dyeing of synthetic fibers like polyester at temperatures above 100°C without requiring high-pressure steam systems.
  1. Uniform Heating with Glycerin - Glycerin provides consistent heat transfer, ensuring even dye uptake and minimizing shade variation.
  1. Energy Efficient- Glycerin retains heat longer, reducing energy consumption compared to traditional steam-based dyeing.
  2. Accurate Process Control - Precise temperature and time control enhance reproducibility and dyeing consistency.
  1. Ideal for Lab and Sample Work - Perfect for R&D, shade matching, and recipe development with small fabric or yarn samples.
  2. Multi-Sample Dyeing - Allows multiple samples to be dyed simultaneously under identical conditions, saving time and effort.
  3. Compact and Safe - Bench-top design fits in laboratories and is safer than high-pressure steam systems.
  1. Low Maintenance - Simplified operation and fewer mechanical parts compared to steam-based systems lower upkeep needs.
  2. Faster Dyeing Cycles- Glycerin heats and cools quickly, reducing overall dyeing time.
Features of HTHP Glycerin Bath Dyeing Machine:
  1. High-Temperature Operation - Capable of dyeing up to 140–150°C, suitable for synthetic fibers like polyester.
  2. Glycerin as Heat Medium - Uses glycerin for uniform, efficient heat transfer without generating high steam pressure.
  1. Multiple Dyeing Chambers - Usually equipped with 6–24 tubes for simultaneous multi-sample dyeing under identical conditions.
  2. Digital Temperature Controller- Offers precise control of temperature, time, and heating rate with programmable settings.
  1. Compact and Lab-Friendly Design - Bench-top model, easy to operate in laboratory environments with limited space.
  2. Stainless Steel Construction - Corrosion-resistant and durable for long-term, high-temperature operation.
  3. Safety Features - Includes over-temperature protection and thermal insulation to prevent heat loss and ensure operator safety.
  1. Agitation or Sample Rotation- Some models offer rotation or agitation for uniform dye penetration.
  2. Energy Efficient Heating - Glycerin’s heat retention improves energy efficiency over water- or steam-based systems.
  3. Low Maintenance - Simplified mechanical system reduces the need for frequent servicing.
HTHP Glycerin Bath Dyeing Machine dealer In Bangladesh, Glycerin Bath Dyeing Machine Importer in Bangladesh, HTHP  Dyeing Machine in Bangladesh, HTHP Bath Dyeing Machine in Bd, HTHP Dyeing Machine In Uttara, Glycerin Bath Dyeing Machine Price in Bangladesh, HTHP Dyeing Machine Supplier in Bangladesh, Glycerin Bath Dyeing Machine in Bangladesh,   High temperature glycerin Bath Dyeing machine. Brad: DUNLIN Origin: China Application scope of high temperature glycerin machine: it is suitable for high temperature sample dyeing and washing fastness test of needle woven fabric, woven fabric, yarn, cotton, loose fiber and zipper. It is a high temperature dyeing sample machine specially designed for dyeing industry, chemical industry, raw material and cloth industry. It can accurately simulate the actual production conditions and achieve the required process effect. Parameter specification: Model: H-24P Number of test cups: 24*450ml Maximum dyeing temperature: 235 ℃ Bath ratio: 1:10~1:60 Heating power: 10800w Heating medium: Glycerin Motor power: 0.75w Rotor speed: 42 r/min

Hydraulic GSM Cutter

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Hydraulic GSM Cutter

Hydraulic GSM Cutter

Hydraulic GSM Cutter

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

Hydraulic GSM Cutter

ICI Pilling & Snagging Test Machine

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ICI Pilling & Snagging Test Machine An ICI Pilling & Snagging Test Machine is a specialized laboratory instrument designed to