loading

PPE Testing Equipment Manufacturer | Safety Equipment Testing Machines | GESTER


Products

Practice of energy saving of air-conditioning in textile mills

As an important equipment for adjusting the temperature and humidity of the workshop and improving the production environment, the air conditioner in textile mills is one of the most energy-consuming equipment in textile mills. Take our company's 150,000-spin spinning production line as an example. There are two production plants with a total of 15 air-conditioning equipment. Before 2016, the air-conditioning power consumption accounted for about 9%, which is equivalent to the 14.5 tex air-conditioning ton yarn power consumption of 290 kW· h; Since 2017, in order to improve the phenomenon of high air-conditioning electricity consumption, and at the same time increase the qualified rate of temperature and humidity in the workshop, a series of effective measures have been carried out. The proportion of air-conditioning electricity consumption has been reduced to about 8%, and air-conditioning electricity consumption per ton of yarn Reduced to 243 kW·h, some of our practices are summarized as follows. 1 Periodic maintenance of air-conditioning equipment 1.1 Develop a monthly air-conditioning maintenance plan Due to environmental reasons, the high temperature season in summer is July and August each year. The production process of the textile factory has extremely strict requirements on temperature and humidity, in order to improve the temperature and humidity throughout the year. Rate, reduce air-conditioning power consumption, formulate maintenance plans, comprehensively overhaul air-conditioning equipment, make air-conditioning equipment good and economical operation, and ensure production process requirements. 1.2 Maintenance of air-conditioning equipment according to plan According to the maintenance plan every month, the maintenance personnel are in place, the tools and materials are sufficient, and the maintenance content includes water baffle cleaning, spray nozzle cleaning, pool cleaning, scale cleaning of water pipes, and water pump maintenance. At the same time, measure the air supply volume before and after the maintenance, compare the maintenance effect, summarize the maintenance experience and methods, facilitate the next maintenance, use the least maintenance personnel, obtain the best maintenance quality, improve the air conditioning adjustment ability, and increase the temperature and humidity qualification rate of the workshop . To ensure production process requirements, overhaul of air-conditioning equipment can not only improve the production environment of the workshop, but also play a great role in energy saving and consumption reduction. On December 21, 2017, the 3# air-conditioning room nozzle was replaced, and the electricity consumption in the 4 days before and after the 21st was statistically compared. The average electricity consumption in the first 4 days was 532 kW·h, and the average electricity consumption in the 4 days after the replacement was 482. kW·h, the difference between front and rear is 50 kW·h. The overhaul and maintenance of air-conditioning equipment is very important. If the spray nozzle is blocked, the energy consumption of the water pump will increase, and the spray effect will be poor. With 1 set of air-conditioning equipment, the daily power consumption can save 50 kW·h. Our company has 15 air-conditioned rooms. , Monthly power saving is 50 kW·h×15 sets×30 daysu003d22 500(kW·h), annual power saving is 270,000 kW·h, and production cost is reduced by 175,500 yuan. 2 Periodic maintenance of electrical equipment 2.1 Application of automatic control system for daily touring air-conditioning electrical equipment, saving time and labor for adjustment, and the pass rate can be controlled within the standard range. It is especially important to do the daily touring of the automatic control system. The frequency conversion of each air-conditioning fan The inverter and the water pump inverter are operating normally, so that the morning inspection is in place, the inspection is effective, and the problems are solved in time and feedback is found. At the same time, do the daily cleaning of the power distribution cabinets, electrical components, and frequency converters, and the cooling fans operate normally. Air-conditioners daily 6 s inspection of the management area of u200bu200bthe air-conditioning room: the area is the mixing room, the pump room, the surface of the equipment, the sanitation of the pool, etc., and the management regulations require the on-duty staff to complete each inspection and cleaning. 2.2 Refueling and daily maintenance of each motor equipment in the air-conditioning room. Electrical personnel follow the air-conditioning maintenance personnel to overhaul the air-conditioning plan, overhaul the blower, exhaust fan, and high-pressure dust collector fans, perform regular maintenance and motor refueling, and measure the motor temperature and operation based on the motor running time and on-site Current, motor vibration, and bearing sound are the standards for refueling and maintenance to ensure that the motors of the air conditioner operate normally. 3 Air conditioning adjustment methods and methods 3.1 Daily adjustment Daily adjustment refers to changes in weather factors such as outdoor temperature and humidity, wind direction, wind speed, air pressure, and sunny weather, as well as changes in indoor load, etc., in order to reduce the temperature in the workshop within 24 hours. Humidity fluctuations or corresponding adjustment measures and methods to meet certain temperature and humidity requirements. 3.2 Annual adjustment Annual adjustment refers to the adjustment and adjustment of the air-conditioning system in accordance with the climatic characteristics of different seasons and the requirements of indoor temperature and humidity during the four seasons of the year, and in accordance with the principles of economy, reliability, and ease of operation. Management method. 3.3 'Transition season' adjustment Generally, the adjustment range between the enthalpy value of winter dew point temperature and the enthalpy value of summer dew point temperature is called 'transition season' adjustment in the annual adjustment. Adjusting the mixing ratio of the new return air is mainly carried out during the transition season. Adjustment method: While ensuring the minimum fresh air volume in the workshop, adjust the opening degree of the new return air window blades according to the enthalpy difference between indoor and outdoor in the workshop to control the mixing ratio of the fresh return air. It must be emphasized that the appropriate 'openness' is the result of long-term experience.

GET IN TOUCH WITH Us
recommended articles
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.
PPE Testing Equipment Standards: Complete Guide to ISO, EN and ASTM Requirements

Personal protective equipment must meet specific performance requirements before it can be used in demanding workplace environments. ISO, EN, and ASTM standards provide important test methods and performance requirements for different PPE categories. However, the applicable standard depends on the product, intended application, target market, and specific protection requirements.

This guide explains the role of ISO, EN, and ASTM standards in PPE testing and introduces common requirements for safety footwear, protective gloves, protective clothing, masks, and safety helmets. It also explains how laboratories can select suitable PPE testing equipment according to the applicable test method.
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 Test Firefighter Turnout Gear Thermal Protection?
Firefighter turnout gear plays a critical role in protecting firefighters operating in extreme environments involving high temperatures, flames, radiant heat, and convective heat. Its thermal protective performance directly affects firefighter safety and survival during fireground operations. This article explains how to test firefighter turnout gear thermal protection through Thermal Protective Performance (TPP) testing. It introduces the scientific principle based on the Stoll curve, outlines key influencing factors such as heat flux intensity and exposure time, and reviews internationally recognized standards including NFPA 1971 and ISO 17492. The article also highlights the testing advantages of the GT-RC02 TPP Thermal Protection Tester, which provides accurate, stable, and standards-compliant evaluation of flame-retardant protective clothing materials under combined radiant and convective heat exposure.
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.
PPE Testing Equipment: Complete Guide to Personal Protective Equipment Testing
PPE Testing Equipment is used to evaluate the safety, durability, and protective performance of personal protective equipment under controlled test conditions. This complete guide covers five major PPE testing categories: Safety Footwear Testing Equipment, Glove Testing Equipment, Protective Clothing Testing Equipment, Mask Testing Equipment, and Safety Helmet Testing Equipment. Learn about common PPE test methods, applicable standards, equipment types, laboratory requirements, and key factors to consider when selecting PPE Test Equipment for quality control, product development, certification, and laboratory applications.
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.
Elmendorf Tearing Strength Tester GT-C11A You Should Know
The Elmendorf Tearing Strength Tester GT-C11A is a pivotal instrument for evaluating the tearing resistance of various materials, including textiles, non-wovens, paper, and films. Utilizing the proven pendulum method, it delivers precise, repeatable data crucial for quality assurance, product development, and compliance with international standards like ASTM and ISO. This article explores its working principle, key features such as automated testing and pneumatic clamping, and its wide-ranging applications across multiple industries, highlighting why the GT-C11A is a trusted choice for professionals seeking reliable and efficient material performance analysis.
Heat Contact Machine GT-C101-The Ultimate Selection Guide

The Heat Contact Machine GT-C101 is a specialized testing instrument designed for evaluating the heat resistance and thermal protective performance of gloves, protective clothing, and other heat-resistant materials used in high-temperature environments. In industries such as smelting, casting, welding, and glass manufacturing, workers are frequently exposed to intense heat, making accurate testing of contact heat resistance essential for ensuring safety and compliance.

GT-C101 simulates real working conditions by measuring heat transfer delay and thermal transmission under instant contact with high-temperature surfaces. Fully compliant with EN 407, EN 702, and ISO 12127-1 standards, this machine provides precise, repeatable data for manufacturers, laboratories, and research institutions. With high-temperature capability up to 500°C, advanced calorimetry, digital monitoring, and adjustable contact speed, the Heat Contact Machine GT-C101 is an indispensable tool for developing and certifying next-generation PPE and heat-insulation materials.
Whole Shoes Flexing Tester GT-KA01-2: An Ultimate Guide to Its Benefits and Applications
The Whole Shoes Flexing Tester GT-KA01-2 is an advanced footwear testing instrument designed to evaluate the flexing resistance and durability of finished shoes. By simulating repeated walking and bending movements, it helps manufacturers identify cracks, material fatigue, and structural weaknesses in footwear products. Compliant with SATRA TM92, ISO 24266 Method A, and HG/T 2871-2022 Method B, this testing machine provides accurate, repeatable, and reliable results for sports shoes, casual shoes, work shoes, and other footwear types. This guide explores its features, benefits, industry applications, and frequently asked questions to help footwear manufacturers improve product quality and meet international testing requirements.
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