loading

Gester Instruments | Professional Glove, Mask, Safety Helmet, Protective Clothing & Footwear Testing Equipment Manufacturer Since 1997


Products
Test Standard

Do flame retardant materials really not burn?

The three elements of combustion are known to most people, that is, the combustible material, the combustion-supporting material such as oxygen, and the temperature to reach the ignition point. As long as these three elements are present, combustion will occur. The same is true for flame-retardant materials or products. If these three conditions are met, they will burn. Since flame retardant materials or products will also burn, what's the point of being flame retardant? The answer is yes, flame retardant still has a role, and can play a corresponding role in preventing and delaying when danger occurs. What exactly is flame retardant? Its English standard translation name: flameretardance, refers to the property that the material has or that the material has after processing to obviously delay the spread of flame. Flame retardant is actually not easy to burn or will extinguish itself after leaving the fire, not non-combustible. The purpose of using flame retardant materials is to prevent or delay combustion. When a fire occurs, the material is not easy to be burned, and the scope of combustion will not be aggravated or expanded. In order to find hidden dangers as soon as possible and save valuable time in time. Flame retardant is also graded. Most of the unmodified plastic materials have poor flame retardant properties and are easy to burn. By adding corresponding flame retardants for modification, the flame retardant properties of the materials are improved and become less flammable, which meets the requirements of the corresponding standards. Different countries have different grades and classifications, and have corresponding scientific testing standards and methods. At present, there are many methods for evaluating flame retardancy, such as oxygen index measurement method, horizontal or vertical combustion test method, etc. For example, China's national standard GB/T5169.11-2006 'Fire Hazard Test for Electrical and Electronic Products Part 11: Glow Wire/Basic Test Method for Glow Wire Flammability Test Methods for Finished Products' (IEC60695-2-10:2000, IDT ), the flame retardant test of the product is specified and described in detail. The flame retardant grade of the product also has 650 ℃, 750 ℃, 850 ℃ and other grades. Another flame retardant standard that is widely used in the field of electrical and electronic products is UL94, which has global influence. Standard splines, standard flames, and standard combustion methods are required for flame retardant testing. The flame retardant grades also include HB, V2, V1, V0 and other levels. In the flame retardant test of UL94, for the fuel that produces the flame, the height, angle and burning time of the flame from the test material spline are specified in detail, and the size of the spline is also standard, so that the test results can be guaranteed. reliability, stability and accuracy. It is obviously unscientific to use ordinary lighters to ignite corresponding products and test their flame retardancy. First of all, different substances have different heats of combustion. What is the heat of combustion? The heat of combustion (ΔcH0) refers to the heat released when a substance and oxygen undergo a combustion reaction. It is generally measured by the amount of energy per unit substance, unit mass or unit volume of fuel when it is burned. At 25°C and 101kPa, the heat released when 1mol of combustibles is completely burned to form stable oxides is called the heat of combustion of the substance. The unit is kJ/mol. It can also be measured in units of megajoules/kg. There are many types of lighters, and all the fuels are not the same. Therefore, the flame temperature produced by different types of lighters is very different, and the accuracy range specified by the standard test cannot be reached at all, and the test results are of course unconvincing. In addition, when testing with a lighter, the time, position, and angle of the flame contacting the test product are arbitrary. In such a test, if the sample is ignited, it does not mean that it is unqualified. Burning level. Therefore, such a test does not explain the problem at all. Using a lighter for flame retardant test is not only meaningless, on the contrary, it will cause the danger of burns and fire. Therefore, consumers must not use such methods to test, and do not believe such tests. It is recommended to choose branded products when purchasing, or ask the merchant to provide the corresponding professional test report. More about Flammability Testers: http://www.standard-groups.com/FlammabilityTesting/4.html

Given the important role played by in ensuring proper functioning of tensile tester manufacturers, every individual must take an interest towards improving tensile tester manufacturers.

Click GESTER Instruments for super quality from one of the state's premier producers.

To strengthen and grow our leadership position by providing textile testing equipment across a range of market segments, including tensile tester manufacturers, and high-performance servers.

GET IN TOUCH WITH Us
recommended articles
Everything You Need to Know About Programmable Temperature Humidity Chamber
A Programmable Temperature Humidity Chamber simulates environmental conditions to test product durability, stability (like shelf life & ageing), and performance across materials, electronics, automotive parts, food, and pharmaceuticals. This guide explains its five core systems (Control, Refrigeration, Heating, Humidity, Air Circulation) and their functions for precise testing.
What Are the ISTA Standard Tests and ISTA Testing Equipment?
ISTA (International Safe Transit Association) standard tests are globally recognized transportation packaging test procedures designed to evaluate the safety and reliability of products and their packaging throughout the logistics chain. By simulating real-world transportation conditions such as drops, vibration, impact, stacking, and compression, ISTA testing helps identify potential packaging weaknesses before products enter large-scale distribution. ISTA testing equipment—including drop testers, vibration testers, incline impact machines, and compression testers—plays a critical role in accurately reproducing these conditions under laboratory settings. Proper selection and use of ISTA-compliant equipment enable manufacturers to reduce transportation damage, lower return costs, enhance packaging design, and improve customer confidence in product quality and logistics safety.
Shoes & Leather - Guangzhou 2025: GESTER Showcased Footwear testing Equipment on Site
GESTER impressed at Shoes & Leather Guangzhou 2025 by exhibiting high-precision footwear testing equipment like the DIN Abrasion Tester and Bally Flexing Tester, essential for quality control in shoe production. The event fostered industry collaboration, with GESTER attracting global buyers and strengthening partnerships.
ISO 17694 / ISO 5402-1: Footwear Flexing Resistance Test Methods
Footwear soles and uppers endure thousands of flex cycles during use, risking premature cracking, delamination, or chipping if material resistance is inadequate. This technical analysis details two critical international standards:

1. ISO 5402-1: Specifies the flexometer method for testing leather flex resistance under repeated bending.

2. ISO 17694: Defines test methods for footwear upper and lining flex resistance, simulating real-world bending stress to assess long-term durability.

C
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.
GESTER's Success at Shoes & Leather - Vietnam 2025
GESTER successfully participated in Shoes & Leather Vietnam 2025 (July 9-11), showcasing cutting-edge footwear testing machines. Visitors explored equipment like the Bally Resistance Flexing Tester and Martindale Abrasion Tester, with many expressing strong collaboration interest. Learn more about GESTER’s innovative solutions for the footwear industry.
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.
What are The Flame Retardant Test Methods ?
Flame retardant testing evaluates materials' ability to resist ignition and slow fire spread. This guide covers key textile test methods (45°, horizontal, vertical), standards (ASTM, ISO, BS), and equipment like flammability testers for upholstery, carpets, and fabrics.
 Fabric Pilling Test: How to Choose the Right ICI Pilling Box Tester GT-C18
Fabric pilling directly affects the appearance, durability, and perceived quality of textile products. With global textile brands enforcing stricter testing standards, reliable laboratory testing equipment has become essential for manufacturers. This article explores how fabric pilling tests are conducted and why textile laboratories increasingly invest in professional ICI pilling box testers such as the GT-C18. It explains the advantages of in-house testing, international compliance requirements, key machine components, and important parameters buyers should evaluate before purchasing a pilling tester. By selecting the right equipment, textile companies can achieve faster quality verification, reduce dependence on third-party laboratories, and ensure their fabrics consistently meet international market standards.
What is a Light Fastness Tester?
A Light Fastness Tester accelerates material aging by simulating sunlight (xenon lamps) and moisture to predict long-term durability. Used in textiles, automotive, plastics, and more, it follows AATCC TM 16, ISO 105-B02, and ASTM standards. Features include real-time light control, temperature/humidity regulation, and energy-efficient testing.
no data
Quanzhou 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:  Block 402,4th floor, f buliding, shengfulan business Center, no.577 jitai road, economic and  Technological development zone quanzhou of fujian.China.
Customer service
detect