loading

PPE Testing Equipment Manufacturer | Safety Equipment Testing Machines | GESTER


Products

Fabric pilling test method and instrument

As a result of research on anti-pilling properties, a variety of test methods have emerged. It is usually required that the hair balls produced by the test should be close to the actual conditions of use. In addition, since the laboratory test should be made before the actual wearing test, the laboratory test must be quickly pilled. This makes the fabric bear stronger stress than it is actually worn. In principle, the fabric to be tested is placed on a gentle friction object, and frictional movement in various directions with relatively small pressure and tension. The following points should be considered for this kind of test: (1) The sample area should be as large as possible to eliminate local differences in the surface characteristics of the fabric and obtain a full picture of the pilling of the fabric. (2) The sample should be tested as far as possible without tension, or under the smallest tension that can be controlled, because strong tension will cause the fibers to merge strongly. And thus get the illusion of lower pilling tendency. (3) The friction pressure of the friction object on the sample should be as small as possible. In order to achieve a soft friction effect similar to actual use. (4) The friction material should be wear-resistant and the surface roughness should be uniform, so that the friction effect can be kept constant during the test and the test can be repeated. (5) The relative movement between the sample and the friction object is generally a curve instead of a linear movement, so that the fiber of the sample can be easily entangled. (6) The speed of the relative movement should be larger, so that the pilling test can be completed quickly. The various pilling test methods can be summarized into two categories: 1. Fixing of the sample. In the same form as the wear test, the sample is actively moved. This type of method is divided into two types: one type uses a vigorous friction object to make the specimen pre-fuzz, and then uses a soft friction body for friction. Figure (a) is the principle diagram of this type of tester, and the pressure can be self-xia or aggravated. This method is commonly used in filament knitted fabrics, wool fabrics, chemical fiber pure spinning, blended knitted fabrics and woven fabrics. The other is to test with only soft friction bodies. Figure (b) is the principle diagram of this kind of tester. The sample is rolled on a rubber tube as shown in the figure, and it is subjected to irregular movement and friction in a rotating box lined with cork. The effect of this method is close to the practical wearing effect of tightly organized fabrics. 2. The method of placing the sample in the box and turning freely. Figure 1 shows its principle diagram in a cylinder lined with rubber (cork). The three samples are stirred at the same time by the rotating blade, giving irregular buckling, rubbing and friction effects. This form has a high correlation with practicality. Figure 2 shows a commonly used fabric pilling instrument. It separates the fuzzing and pilling of the fabric. First, use a nylon brush to rub the fabric sample a certain number of times to make the surface of the fabric hairy, and then rub the sample and the abrasive fabric for pilling. The relative movement trajectory of the sample and the abrasive is circular. The sample is ground 60 times per minute. The instrument is equipped with an electromagnetic counter. When the predetermined number of frictions is reached, the test will automatically stop. The pilling instrument is suitable for ten chemical fiber filament fabrics and chemical fiber staple fabrics. When only fabrics are used as abrasives, it can be used for wool fabrics and other fabrics that are easy to pilling. The samples used in the instrument need to be humidified for more than 24 hours in the standard atmosphere before testing. The sample should be 1/10 of the edge of the cloth. Randomly cut 3 pieces (5 pieces of wool fabric samples) within the width. The self-diameter of the sample is 112.8mm. There should be no defects that affect the test result. The pressure of the sample on the abrasive varies with different types of fabrics. The domestic standards stipulate; the pressure of chemical fiber filament fabric and chemical fiber staple fabric is 588cN; the combed wool fabric is 784cN; the carded wool fabric is 490cN, and the friction times of various fabrics The requirements are: polyester low-elastic filament knitted fabrics, first on the nylon brush, and then on the abrasive fabric, each for 150 revolutions; polyester low-elastic filament and chemical fiber staple fabrics are first on the nylon brush, and then on the abrasive fabric. 50 revolutions for the combed wool fabric; 60 revolutions for the abrasive fabric for the combed wool fabric; 50 revolutions for the carded wool fabric. Then put the sample in the grading box and compare it with the standard sample to determine the pilling grade of the fabric. The characteristic of the Martindale type abrasion tester is that the sample fabric is mounted on the sample chuck for friction with the same fabric mounted on the grinding table. The sample rotates freely around the axis, the relative movement of the sample chuck and the grinding table is a Li Sharu pattern, and the relative movement speed is 45~48r/min. For various fabrics, the pressure on the abrasive is 196cN( 200gf) and other dry grinding head's own weight. This instrument is suitable for woolen fabrics and other fabrics that are easy to pilling, and is more suitable for woven fabrics. But it is not suitable for fabrics with a thickness of more than 3mm, because such fabrics cannot be fitted into the sample holder.

If you have a need for tensile tester manufacturers textile testing equipment, like , and , you need to be able to find a dependable provider who you can trust when necessary.

Many websites provide additional information on the topic of textile testing equipment. One such site worth visiting is GESTER Instruments.

tensile tester manufacturers textile testing equipment may be adapted for use at any tensile tester manufacturers and is suitable for tensile tester manufacturers.

An easy and inexpensive textile testing equipment solution can be easily obtained now through purchasing a textile testing equipment tensile tester manufacturers online. Find your solution at GESTER Instruments, your demand will be satified.

GET IN TOUCH WITH Us
recommended articles
DIN Abrasion Tester vs Taber Abraser: What Is the Difference?

Choosing the right abrasion testing equipment is essential for obtaining accurate and repeatable wear resistance results. DIN Abrasion Tester and Taber Abrasion Tester are two widely used abrasion testing machines, but they are designed for different material types and testing purposes.

This article provides a detailed comparison between DIN Abrasion Tester and Taber Abraser, covering their working principles, specimen requirements, industry applications, standard compliance, technical characteristics, operation features and practical advantages. DIN Abrasion Tester is mainly designed for rubber, elastic materials, tires, conveyor belts and footwear soles, while Taber Abrasion Tester is suitable for flat materials such as coatings, textiles, plastics, leather, metals and decorative surfaces.

By understanding the differences between these two abrasion testing methods, laboratories can select the most suitable abrasion tester based on sample geometry, testing standards and production quality control requirements.
What is the Safety Glove & Shoe Upper Cutting Tester GT-KC29
The Safety Glove & Shoe Upper Cutting Tester GT-KC29 is a high-precision testing instrument developed to measure the cut resistance performance of safety gloves and footwear uppers. In industrial and construction environments where sharp tools and metal edges pose significant injury risks, the GT-KC29 provides a reliable evaluation method by simulating real cutting motion. This tester meets EN 388 section 6.2, ISO 20344:2021 section 5.23, GB/T 20991 section 6.14, and other global standards, making it essential for PPE manufacturers, testing laboratories, and quality control departments. With automated operation, high repeatability, and multi-standard compliance, it helps companies improve product safety levels, enhance global competitiveness, and ensure superior protection for end users.
PPE Testing Laboratory Equipment List
Setting up a PPE testing laboratory requires the right combination of instruments for safety footwear, gloves, protective clothing, masks and safety helmets. This guide explains the core testing equipment used in modern PPE laboratories, the standards they support, and the functions of each instrument, helping manufacturers, third-party laboratories and certification bodies choose a reliable and compliant testing setup.
Why TDM Cut Test Machine GT-KC28 Is Needed in PPE Testing

Cut resistance is one of the most critical performance indicators in personal protective equipment (PPE) testing, directly affecting worker safety in high-risk industries such as metal processing, machinery manufacturing, and emergency rescue. The TDM Cut Test Machine GT-KC28 plays a vital role in accurately evaluating the cut resistance of PPE products, including gloves, protective clothing, footwear materials, composite materials, rubber, and industrial textiles.

By adopting high-precision force control systems, intelligent data processing, and stable transmission technology, the GT-KC28 TDM Cut Tester can accurately measure the critical cutting force of materials and ensure excellent repeatability and comparability of test results. Its user-friendly touch-screen operation, comprehensive data storage, USB data export, and built-in thermal printer greatly improve laboratory efficiency and data traceability.

The TDM Cut Test Machine GT-KC28 fully complies with major international and national standards such as ISO 13997, EN 388, ASTM F2992/F2992M, ANSI/ISEA 105, and GB 24541-2022, making it a reliable solution for PPE manufacturers, third-party testing laboratories, and research institutions. Through precise and standardized cut resistance testing, the GT-KC28 helps reduce industrial cutting injuries, supports PPE certification across global markets, and ensures that protective equipment delivers reliable safety performance in real-world applications.
Mask Testing Equipment: Everything You Need to Know
This article comprehensively introduces mask testing equipment, including its definition, application significance, core international testing standards, main equipment types and functional characteristics. It also puts forward a step-by-step selection guide and common selection misunderstandings, providing a reference for mask manufacturers, third-party testing institutions and regulatory departments to select appropriate testing equipment, so as to ensure mask product quality, pass international certification and protect user safety.
Bally Resistance Flexing Tester – An Effective Method for Testing Material Flexing
The Bally Resistance Flexing Tester, also known as the Bally Leather Flexometer, is an essential testing instrument for evaluating the flex durability of leather, coated fabrics, synthetic leather, and textile materials. By accurately simulating repeated bending conditions encountered during actual use, the tester helps manufacturers assess material performance, prevent premature product failures, and meet international quality standards. This article explores the working principle, key benefits, applicable testing standards, and common specimen materials suitable for Bally flexing resistance testing.
Safety Footwear Tester Guide ISO 20346 with Buying Tips
This guide explains the ISO 20346 standard for general-purpose protective footwear, differentiates it from related ISO standards, and shares core buying tips for qualified safety footwear testers. It also introduces professional multi-standard compliant testing equipment for footwear quality control and compliance verification.
10 Benefits of GESTER PPE Testing Equipment You Need to Know
Choosing PPE testing equipment requires more than comparing machine prices. Measurement accuracy, test repeatability, applicable standards, fixture design, automation, calibration, customization and technical support can directly affect laboratory efficiency and testing reliability. GESTER provides integrated PPE testing solutions covering safety footwear, protective gloves, protective clothing, masks and safety helmets. This article explains 10 technical advantages to consider when comparing GESTER PPE Testing Equipment with alternative suppliers.
Sweating Guarded Hotplate GT-C98 Guide: Find the Right Testing Machine for Your Needs
The Sweating Guarded Hotplate GT-C98 is a professional instrument designed to evaluate the thermal resistance (Rct) and water-vapor resistance (Ret) of textiles and related materials. By simulating human skin heat dissipation and sweating under controlled conditions, it provides accurate and repeatable data for comfort and protective performance analysis. This guide introduces the testing principle, applicable international standards, industry applications, and key technical features to help users identify the right testing machine for product development, quality control, and research.
Analysis of Pilling Influencing Factors and Testing Methods
Pilling testing plays a vital role in textile quality control, helping manufacturers evaluate and improve the wear performance of fabrics. Through the use of advanced instruments like ICI Pilling Box Test Method (GT-C18) , Martindale Abrasion Test Method (GT-C13B) , and Random Tumble Pilling Test Method (GT-C19A) , laboratories can conduct precise and standardized assessments, ensuring that final textile products deliver superior appearance, comfort, and longevity.
GESTER International Co., Ltd. gains certificates of ISO 9001, 3A and SGS Audited supplier etc. with advanced design concept, excellent manufacturing technology and strict quality control.
WeChat
Contact us
Tel: +86-595-28886108 
Fax: +86-595-22515221
E-mail: sales10@gester-instruments.com,
                 info@gester-instruments.com
Mobile/Whatapp/ Wechat:  
             + 86(0)18059985379
Address:  No.15, Chifeng Road,Licheng Region, Quanzhou city of Fujian,PR China.
Customer service
detect