loading

PPE Testing Equipment Manufacturer | Safety Equipment Testing Machines | GESTER


Products

Development of Light and Thin Antibacterial and Flame Retardant Fabrics

1 Background of research and development With the continuous development of science and technology, various sudden natural disasters and accidents have brought immeasurable losses to personal safety and property in recent years, making people's requirements for safety protection textiles higher and higher. The development of safety protection textiles presents a new era of characteristics, which are embodied in higher technological content, wider application fields, better wearing comfort, and integration of various protective functions [1]. Because the human body sweats a lot, the traditional flame retardant fabric clothing is easy to produce odor and breed bacteria during use. To this end, we try to develop light and thin antibacterial and flame retardant safety protective fabrics, which not only reflect the safety protection function, but also eliminate the odor of clothing, prevent the breeding of bacteria, and ensure the comfort and health of safety protective clothing when wearing it. There are two main ways to realize the antibacterial and flame retardant function of fabrics. One is after finishing, which has the advantages of short process flow, many types of functional additives and wide application range. Extensive use will pollute the environment; the other is to start with the fiber material itself, and develop functional fabrics by using fibers with antibacterial and flame retardant functions, but there are not many such studies [2]. Qu Caixin et al. developed children's clothing fabrics with flame retardant function by using polysulfone/viscose, mulberry/polyester and polyester low elastic yarn [3]; Zhang Shengzhong et al. sulfone fibers were blended to develop functional protective fabrics [4]; Du Yantao blended aramid and chitosan, and the developed fabrics were washed many times, and their antibacterial rate was still high, and the flame retardant effect was also good[4] 5]. In general, the current development of antibacterial and flame retardant fabrics generally has problems such as high cost, unstable antibacterial and flame retardant functions, and inability to wash, and the application field needs to be expanded. By testing the flame retardant properties of several groups of fiber blend samples, we obtained the best blended yarn fiber blend ratio, and developed several low-cost, long-lasting, light and thin antibacterial and flame retardant protective fabrics. The specific development process is described as follows . 2 Flame retardant test of fiber blend samples 2.1 Test materials, instruments and test standards×38 mm. The test instrument is YSZ-I automatic limiting oxygen index tester. The reference standard is GB/T 5454—1997 'Textile combustion performance test oxygen index method'. 2.2 Test scheme and result analysis refer to GB/T 5454—1997 'Textile Combustion Performance Test - Oxygen Index Method', the fiber raw materials are manually carded, mixed, twisted, etc. to make braided fiber bundles. The prepared fiber blend sample was clamped on the sample holder, ignited from the top of the fiber bundle, and the flame retardant performance of the pre-mixed fiber sample was measured by YSZ-I automatic limiting oxygen index tester. When the LOI of the fiber blend sample was greater than 28% When it is considered that its flame retardant performance is good [6]. Two groups were designed in the experiment, the group A using antibacterial polyester and the group B using antibacterial viscose. In order to ensure the antibacterial performance of the fabric and the thermal stability of the fabric, the proportion of antibacterial polyester in group A and antibacterial viscose in group B are both 25%; the proportion of aramid 1414 in both groups is 5%. The content of flame retardant viscose is 0, 10%, 20%, 30%, 40%, 50%, 60%, and the corresponding acrylic content is 70%, 60%, 50%, 40%, 30%, 20 %, 10%, the LOI test results of the samples in group A were 26.4%, 28.1%, 30.2%, 30.8%, 30.6%, 30.8%, and 30.8%. It can be seen from the above test results that for group A, when the content of acrylic vinyl chloride is 70%, the LOI of the sample is only 26.4%, which is caused by the high content of acrylic vinyl chloride; the flame retardant mechanism of acrylic vinyl fiber is in the combustion process. By releasing free radicals and blocking the combustion chain, the flame retardant effect is achieved; when the content of acrylic polyvinyl chloride is too high, the carbon layer formed by the combustion residue of the sample is fluffy, resulting in a decrease in flame retardant performance [7]. When the content of flame retardant viscose is 30%, the LOI of the sample is the highest, reaching 30.8%; at this time, there is a positive synergistic effect between various flame retardant fibers; when the antibacterial polyester is burned, the molten material falls off and can take away part of the heat ; Due to the existence of condensed phase flame retardant fiber flame retardant viscose, the fiber shrinks and deforms when it is burned, and the fiber carbon residues in different positions are bonded together to form a complex network of cross-linked carbon residues. At the same time, the thermal shrinkage and softening properties of flame retardant viscose improve the“wick”effect, further improving the densification of carbon residues. When the content of flame retardant viscose continued to increase, the density of the combustion residue did not change, so the LOI of the fiber blend tended to be stable.

Anyone who has seen the latest tensile tester manufacturers textile testing equipment in operation cannot help but be impressed with how far the technology has progressed over the past few years.

During GESTER International Co.,Limited’s existence in a market we didn’t receive any negative feedback from our customers.

Many of the textile testing equipment listed here can be purchased for less money, but in general we recommend paying a slightly higher price for significantly improved performance. These are our top choices and their recommended configurations.

textile testing equipment has its grasp on oversees market also and has a very good repute.

The engineers and developers of GESTER International Co.,Limited are the best in their own professional way and we guarantee to provide related service to our dear customers.

GET IN TOUCH WITH Us
recommended articles
Leather Industry Innovations: GESTER at ACLE as a Footwear Testing Equipment Factory
The global leather and footwear industry is shifting toward prioritizing durability, material integrity, and functional excellence—driving demand for high-precision testing equipment. As a highlight of ACLE 2026 (All China Leather Exhibition), GESTER International Co., Ltd., a 25+ year footwear testing equipment factory, showcases innovative solutions tailored to this trend. Trusted by leading testing institutes like SGS, TUV, and Intertek, GESTER’s product lineup includes the Martindale Abrasion Tester (for surface durability), Tension Testing Machine (for mechanical properties), and Safety Shoe Cutting Tester—all compliant with ISO, ASTM, and EN standards. These instruments integrate automation (PLC systems) and data traceability to reduce human error, support ISO 9001 compliance, and streamline laboratory efficiency. With a global service network spanning 160+ countries, GESTER offers on-site installation, calibration, and software updates to ensure long-term usability. The article also outlines strategic procurement tips for manufacturers, emphasizing modular design, standard compatibility, and supplier track records. For leather and footwear brands seeking to enhance product reliability, avoid recalls, and stay competitive, GESTER’s ACLE 2026 innovations and end-to-end support provide a definitive quality assurance solution.
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.
GESTER: China Top PPE Testing Equipment Company Leading Global Safety Standards
Since 1997, GESTER International Co., Ltd has emerged as China’s top PPE testing equipment company, with 25+ years of R&D experience in high-precision testing instruments. Serving clients in over 160 countries and partnering with global leaders like SGS, Intertek, and TUV, GESTER aligns its products with international standards (ISO, ASTM, EN, GB) to ensure reliable PPE performance. Highlighted by the GT-RC02B TPP Thermal Protection Tester—capable of simulating extreme thermal environments and calculating critical safety metrics like TPP values and escape time—and the GT-KC28 TDM Cut Test Machine, GESTER’s portfolio covers thermal protection, cut resistance, footwear testing, and more. The company offers comprehensive support, including ISO 17025/NFPA-aligned calibration, on-site installation, and staff training, empowering PPE manufacturers and testing laboratories to meet stringent global regulations, prevent workplace injuries, and accelerate market access. As a leader in global safety standards, GESTER combines technical precision, user-centric design, and lifecycle service to deliver tailored solutions for high-risk industries worldwide. Visit https://www.gesterinstruments.com/ for full product details.
Safety Footwear Test Explained: Compression and Puncture Tester
This article fully explains the working principle, applicable international standards, test advantages and application scope of safety footwear compression and puncture tester GT-KB12A. It covers core protective performance testing of safety shoe toecap and sole steel plate, complies with GB, ISO, EN, ASTM and other global standards, and serves manufacturers, third-party labs and safety footwear R&D institutions for quality control .
Glove Tester: Key Standards EN 388 & EN 407
Protective glove testing is the core link to verify hand safety protection performance for industrial PPE. This article focuses on the two most authoritative EU mandatory standards EN 388 and EN 407, elaborates on standardized test necessity, complete test items, professional supporting glove testers, result rating rules, and the differences between mechanical risk testing and thermal risk testing. It provides one-stop compliant testing reference for glove manufacturers, third-party testing labs, and safety supervision institutions to meet global CE certification and workplace safety production requirements.
How to Choose the Right Glove Testing Equipment
Choosing the right glove testing equipment is essential for evaluating the safety, durability, and protective performance of gloves. This guide explains the main types of glove testing equipment, including thermal protection, cut and abrasion resistance, tensile strength, and environmental conditioning equipment. It also introduces key glove testing standards such as EN 388, EN ISO 13997, ISO 37, ASTM D412, ISO 12947, and related thermal protection standards. By understanding your testing requirements, applicable standards, sample conditioning needs, maintenance requirements, and budget, you can build a more efficient and standard-compliant glove testing laboratory.
Sweating Guarded Hotplate Buying Guide
Choosing the right Sweating Guarded Hotplate is essential for obtaining accurate thermal resistance (Rct) and water vapor resistance (Ret) data for textiles. This guide explains how Sweating Guarded Hotplate testing works, introduces international standards including ISO 11092 and ASTM F1868, compares the most important purchasing considerations, and answers common questions from textile laboratories and apparel manufacturers.
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.
How to Choose the Right DIN Abrasion Tester
This article provides a comprehensive guide to selecting the right DIN Abrasion Tester for material wear performance evaluation. It covers the instrument's function, applicable standards (including ISO 20344, DIN-53516, ISO 4649, ASTM D5963), key features like digital counter and auto-stop, application scope for rubber, tires, shoe soles, and conveyor belts, as well as quality, construction, brand considerations, and FAQs on troubleshooting. Ideal for laboratories, quality inspection departments, and material research institutions.
How to Choose a PPE Testing Equipment Manufacturer: 10 Things to Check
Choosing the right PPE testing equipment manufacturer is an important decision for PPE manufacturers, testing laboratories, certification bodies, research institutions, and quality inspection organizations. The right supplier should provide more than individual testing machines—it should offer standards-compliant equipment, reliable measurement performance, calibration support, technical expertise, customization, and long-term service. This guide explains 10 essential factors to check before selecting a PPE testing equipment manufacturer.
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)18059983973
Address:  No.15, Chifeng Road,Licheng Region, Quanzhou city of Fujian,PR China.
Customer service
detect