Walk-in design Provide a larger test space that can accommodate large equipment or multiple samples Real-time testing, applicable to batch testing requirements. It is convenient for the user to enter the equipment for operation or observation.
High precision control Adopt advanced temperature and humidity control system to ensure the stability and uniformity of temperature and humidity. High-precision sensors provide real-time monitoring to ensure the accuracy of test data.
Versatility Various test modes such as high and low temperature, damp and hot circulation, constant temperature and humidity can be carried out to meet different test requirements. It has the ability of rapid temperature rise and drop and humidity adjustment to improve the test efficiency.
Security Equipped with multiple safety protection measures, such as over-temperature, over-humidity, short circuit and other alarm functions Be able to ensure the safety of equipment and operators. Use environmentally friendly materials and designs to meet relevant environmental standards.
Durability High-quality materials and structural design, with good corrosion resistance and durability, suitable for long-term use. The maintenance is simple and the use cost is reduced.
Areas of Application
Automotive industry Vehicle and parts test: The walk-in environmental chamber is used to test the performance of the vehicle under extreme weather conditions such as high temperature, low temperature and humidity, so as to ensure the reliability and durability of the vehicle body, engine, electronic system and other parts in harsh environments.
Aerospace Environmental adaptability test of aerospace vehicles: evaluate the performance of aircraft, satellites, and spacecraft under extreme conditions such as high temperature, low temperature, low atmospheric pressure, and hot and humid conditions, so as to ensure that they can operate normally in different atmospheric and space environments.
Electronic and electrical equipment Environmental testing of electrical and electronic equipment: walk-in environmental chamber is used to evaluate the reliability of household appliances, industrial equipment, communication equipment, etc. In high humidity, temperature change, salt fog and other environments; Component durability test: test the performance of electronic components, chips, circuit boards in the environment of temperature and humidity changes, vibration, etc.
Construction and engineering materials Weather resistance test of building materials: test the anti-aging performance of building materials such as concrete, steel, glass, etc. In high temperature, low temperature and humidity changes; Testing of coatings and anticorrosive materials: evaluate the corrosion resistance of coatings and anticorrosive materials in hot and humid, salt spray and other harsh environments;
Industry and National Defense Environmental adaptability of equipment: used to test the operational performance of equipment (such as weapon systems, vehicles, communication equipment) under extreme weather conditions; Battlefield simulation test: The walk-in environmental box can simulate extreme battlefield environment and test the durability of equipment under vibration, impact, corrosion and other conditions.
Energy and Power Industry New energy equipment test: used to test the working performance of solar cells and wind power generation equipment under extreme weather conditions;
Medical devices Environmental adaptability of medical equipment: walk-in environmental chamber is used to test the reliability of medical equipment in high temperature, low temperature and humidity change; Biomaterial testing: assess the aging and performance changes of medical implants, prostheses and other biomaterials in the simulated external environment of the human body;
Food and pharmaceutical industry Weatherability test of packaging materials: evaluate the stability of food and packaging under high humidity, high temperature or low temperature conditions; Shelf life test: quickly evaluate the shelf life of food and medicine by simulating various storage conditions;
Marine engineering Anti-corrosion test of offshore equipment: evaluate the corrosion resistance and anti-aging performance of offshore platforms, hulls, submarine cables and other equipment in the marine environment; Testing of marine engineering materials: The walk-in environmental chamber can simulate the high humidity and salt fog in the ocean to help test the durability of building materials used in ports and offshore facilities;
Scientific research and academic research Research and development of new materials: provide a test platform to help researchers develop new anti-aging and corrosion-resistant materials; Environmental impact studies: Simulating the impact of climate change on materials and equipment