loading

PPE Testing Equipment Manufacturer | Safety Equipment Testing Machines | GESTER


Products

Dust filtration test process of automobile air-conditioning filter

This section specifies several test methods for testing air-conditioning filters to filter dirt (including dust and pollen, etc.) in the air entering the cabin. This section evaluates or compares the performance of the cabin air filter and filter element in the laboratory. The following information of the filter can be given through the test: pressure drop, graded filtration efficiency and ash storage capacity, etc. Normative Reference Documents The clauses in the following documents have become clauses of this part after being quoted in this standard. For dated reference documents, all subsequent amendments (excluding errata content) or revisions do not apply to this section. However, all parties who have reached an agreement based on this section are encouraged to study whether the latest versions of these documents can be used . For undated reference documents, the latest version is applicable to this section. ISO 12103-1:1997 Road vehicles—Dust for filter evaluation—Part 1: Arizona test dust DIN EN 779:2002 Air filters for general ventilation—Determination of filtration performance DIN EN 1822-1:1998 High efficiency air filters (HEPA and ULPA)—Part 1: Classification, performance testing, and labeling. Test conditions 1. Air condition The temperature of the sucked air must be 23°C±2°C, and the relative humidity must be 50%±3%. During the entire experiment of testing the ash storage capacity G of the filter, the above-mentioned temperature and humidity conditions must be maintained. The test conditions are summarized in Table C.2. 2. The air in the clean air suction device must be filtered by a high-efficiency filter of at least H12 level defined in EN 1822-1, and the front stage of the high-efficiency filter must be configured according to EN 779 Defined F7 or F8 level middle-efficiency filter. In view of the air purification requirements and the protection of the test equipment, it is recommended to install a similar device at the exhaust end to capture the dust that penetrates the test sample. 3. Test object ①, test dust Test dust uses A2 ash (fine ash) or A4 ash (coarse ash) defined in ISO 12103-1. Before the test, the test dust should be dried at 105°C±5°C for 4 hours before use. ② Other test dusts For special requirements, other test dusts/aerosols can also be used, such as potassium chloride (KCl), mono- or polydisperse latex balls, plant pollen or other dusts. In this case, the test procedure and test conditions should be negotiated by the filter manufacturer and user. Test equipment 1. Basic structure A structural layout example of the test equipment required to complete the test is shown in Figure A.1 to Figure A.5. The specific dimensions of the main parts are given in Figure A.2. This device, at least from the ashing part to the sampling port on the air outlet, should be made of conductive material and grounded. The basic principle is to minimize the loss of dust particles. The test equipment that meets the specification must meet the requirements of Chapter 5 and Table C.1 and Table C.2. 2. Air supply The air supply needs to be prepared in accordance with 4.1.2. It is required to install a flow adjustment device in the pipeline at the back end of the air suction device, the adjustment range is 150m3/h~680 m3/h. The flow adjustment has nothing to do with the amount of test dust added to the filter, and requires an accuracy of ±2%. It is required to seal the air flow conveying pipe after the flow regulating device. When the pressure difference between the inside and outside of the pipeline reaches 500 Pa, the leaked flow rate should be less than 100 l/min. The size of the airflow guide component can be selected according to the actual situation. 3. Test channel The test channel shall be arranged vertically. Through appropriate measures, such as adding a guide plate, ensure that the air flow is evenly distributed in the transverse section. As shown in Figure A.2. 4. Test the ashing device ①, the ashing device is selected to be the ashing device, so that the test dust selected according to section 4.2 is uniformly supplied. During the test, the ash adding device is required to not change the original particle distribution of the test dust. ② When measuring the grading filtration efficiency with the dilution device of particle distribution density, small particles may stick together and be mistakenly counted as large particles. Therefore, it is equipped with a selection of particles of different sizes as shown in Figure A. A flexible dilution device to reduce the distribution density of dust particles. The device is installed on the dust supply pipe behind the metering equipment, and can replace the dilution equipment in front of the particle counter. When doing ash storage test, the dilution device should be closed.

GESTER International Co.,Limited is committed to fulfill the demands of our customers with using textile testing equipment.

GESTER International Co.,Limited promises you that you will be satisfied with our service.

If you need any help in textile testing equipment tensile tester manufacturers, GESTER International Co.,Limited can help you. We provide the best in class. Our design and services will enable you to create the ideal room that you have always wanted!

Choose the right platform for selling textile testing equipment and we'll reach the right customers. But if we have the right idea in the wrong platform, that still adds up to the wrong idea.

GET IN TOUCH WITH Us
recommended articles
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.
Which Safety Footwear Test Method Is Suitable for You?
Selecting the correct safety footwear test method is essential for ensuring product durability, worker protection, and international compliance. Different tests evaluate different performance characteristics, including impact resistance, slip resistance, and outsole abrasion. This article explains how each testing method works, the applicable ISO, ASTM, DIN, and SATRA standards, and when manufacturers should use each test to improve product quality, reduce failures, and meet global certification requirements.
Gloves Testing Equipment: Complete Buying Guide

Safety gloves are critical personal protective equipment (PPE) used in industries such as manufacturing, welding, construction, firefighting and chemical processing. To ensure reliable protection, gloves must undergo strict performance testing before entering the market.

Professional gloves testing equipment helps manufacturers evaluate important properties including cut resistance, thermal protection, contact heat resistance, tensile strength and impact protection. By selecting suitable testing machines, companies can improve product quality, meet international standards and reduce safety risks.

This complete buying guide introduces the main types of glove testing equipment, explains their applications and provides practical advice on choosing the right solution for your laboratory or production requirements.
Looking for a Laboratory Protective Clothing Tester Supplier? Key Criteria to Consider
As global demand for high-performance PPE surges, selecting a qualified laboratory protective clothing tester supplier becomes critical for manufacturers and regulators. This article outlines core selection criteria: compliance with international standards (ISO, EN, ASTM), comprehensive protective gear tests (particle resistance, fluid barrier, thermal resistance, electrostatic safety), manufacturer qualifications (ISO 9001 certification, partnerships with SGS/TUV/Intertek), equipment precision (automation, modular design, data traceability), and end-to-end service (global support, calibration, customization). With 25+ years of experience, GESTER International delivers standards-aligned, high-precision testing instruments and integrated laboratory solutions, ensuring PPE meets rigorous safety requirements for medical, industrial, and chemical sectors. Explore how to choose a partner that safeguards worker safety through reliable testing.
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.
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.
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.
What is Air Permeability Tester? Detailed Overview and Benefits

The air permeability tester is a high-precision testing instrument designed to evaluate the breathability of PPE materials, textile fabrics, non-woven fabrics, woven fabrics, and industrial filter media. It plays a critical role in quality control, product development, and laboratory research across multiple industries including PPE, textiles, automotive interiors, and filtration systems.

Modern instruments such as the GT-C27 Air Permeability Tester are developed with advanced sensor systems, automated control logic, and multi-standard compatibility to ensure reliable and repeatable results. Complying with global standards such as ISO 9237, ASTM D737, DIN 53887, and GB/T 5453, it guarantees internationally recognized testing performance.

With high automation, accurate pressure sensing, and flexible unit conversion systems, air permeability testing equipment significantly improves testing efficiency while reducing human error. It is widely used in PPE manufacturing, textile engineering, non-woven product development, and industrial filtration quality inspection.
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.
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.
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