Low Temperature High and Low Temperature Thermal Shock Test Chamber

The low-temperature high-low temperature thermal shock test chamber subjects specimens to rapid temperature changes by quickly switching between high and low-temperature environments. This equipment is used to test the resistance of materials to sudden temperature variations, commonly applied in quality verification for industries such as electronic components, coatings, and plastics.
Selection
When selecting a low-temperature high-low temperature thermal shock test chamber, considerations should include the temperature range, transition time, chamber dimensions, and control system. Determine the temperature limits based on testing standards, ensure the transition speed meets requirements, confirm the chamber capacity accommodates the sample size, and ensure the control system is user-friendly and reliable.

Terms

Instruments

Temperature range -40 ℃ to + 150 ℃, the temperature conversion time is only 10 seconds, using PID full digital automatic Control system, can quickly detect the material in the extremely high temperature and low temperature continuous environment resistance and thermal expansion and contraction changes.

$ 17303.00

The three-box structure design is adopted, the test sample is still in the test area, the temperature recovery time is ≤ 5min, and the conversion time is ≤ 10s. It has three test functions of high temperature, low temperature and Thermal Shock, meeting a variety of standard requirements.

$ 21858.00

Using a two-box mobile Impact structure, the air pressure drives the test object to move up and down, the Thermal Shock mechanism moves within 10 seconds, and the temperature recovery time is within 5 minutes. Equipped with HFC environmentally friendly refrigerant and ultra-low temperature freezing system, the cooling is fast and efficient.

$ 16840.00

Using triple-channel thermal insulation structure, the damper switching time is completed within 10 seconds, and the temperature recovery time is within 5 minutes. With 96 test specification settings, the maximum Impact time is 9999 minutes, meeting the needs of high and low temperature rapid change testing.

$ 27829.00

Using three-box equipment structure, the temperature conversion time does not exceed 10 seconds, the temperature control accuracy reaches +/- 0.5 ℃, and the air circuit switching method realizes fast Thermal Shock, which is suitable for material physical and chemical change testing.

$ 38156.00

The three-box heat storage and cold storage structure is adopted, the temperature conversion time is ≤ 10 seconds, and the temperature recovery time is ≤ 5 minutes, which can realize the rapid Impact test of high temperature 150 ℃ to low temperature -55 ℃, and meet the environmental adaptability verification of the extreme temperature of the material.

$ 18437.00

The three-box structure is used to achieve a completely static test zone, with a temperature conversion time of ≤ 10 seconds and a temperature recovery of ≤ 5 minutes. It has an Impact range of 150 ° C in the high temperature zone and -55 ° C in the low temperature zone, meeting the needs of rapid temperature change testing.

$ 24133.00

The three-box structure is used to realize the static test sample, the strong cooling hot air circuit switching technology, the temperature conversion time is less than or equal to 10 seconds, the temperature recovery time is less than or equal to 5 minutes, and the temperature control function is independent in the high temperature zone, the low temperature zone and the test zone.

$ 15032.00

Adopting a two-box mobile structure, the high temperature zone reaches 150 ° C and the low temperature zone reaches -40 ° C, the conversion time is within 10 seconds, and the recovery time is within 5 minutes. It is equipped with a touch screen controller and rigid polyurethane insulation material.

$ 21406.00

The two-box mobile structure is adopted, the Thermal Shock mechanism moves within 10 seconds, and the temperature recovery time is within 5 minutes. It is equipped with HFC environmentally friendly refrigerant and binary ultra-low temperature freezing system, which has high cooling speed and efficiency. It supports paperless recording and real-time Linear dispersion display function.

$ 16840.00

With two-box mobile Impact structure, the temperature recovery time is less than 5 minutes, and the conversion time is only 10 seconds. Equipped with rigid polyurethane foam insulation material, it has ultra-low temperature thermal conductivity and waterproof performance, and supports programmed temperature control.

$ 14564.00

The three-box structure is used to realize the static test sample, the heat storage and cold storage design is matched with the forced air circuit switching, the temperature conversion only takes 10 seconds, and the temperature control accuracy reaches +/- 0.5 ℃, which meets the requirements of continuous testing in extremely high temperature and extremely low temperature environment.

$ 17307.00

With three-box structure design, the temperature conversion time is only 10 seconds, the temperature control accuracy is up to +/- 0.5 ℃, and it is equipped with touch graphic operation interface and air passage switching system to achieve fast and stable Thermal Shock testing.

$ 36381.00

Adopting triple-channel thermal insulation structure, the throttle switching time is completed within 10 seconds, and the temperature recovery time is completed within 5 minutes. With 96 test specification settings, the Impact time can reach 9999 minutes, and the cycle period is 9999 times, meeting the needs of High Accuracy Temperature Control.

$ 16372.00

The three-box structure design is adopted, the temperature conversion time does not exceed 10 seconds, the temperature control accuracy is up to +/- 0.5 ℃, the Thermal Shock test is realized through the air circuit switching, and the touch graphic operation interface is equipped to simplify the operation process.

$ 16759.00

Articles

Thermal shock test chamber measures the thermal shock resistance of polymer films.
This article introduces how to test the thermal shock resistance of polymer films using a thermal shock test chamber. The test involves rapidly switching the film between high and low temperatures to simulate the drastic temperature changes that may occur in actual use, thereby generating thermal stress within the material.
Thermal Shock Test Chamber Measures Film's Temperature Change Resistance
The thermal shock test chamber creates thermal stress inside the film by rapidly switching between high and low temperature environments, testing its resistance to temperature changes. During the test, key parameters such as temperature range and dwell time need to be set, and the film is observed for issues such as cracking or performance degradation.
Thermal Shock Test Chamber Evaluates Coating Thermal Stability
The thermal shock test chamber simulates sudden temperature changes by rapidly switching between high and low temperature environments, used to evaluate the thermal stability of coatings. In practical applications, coatings may develop internal stresses due to drastic temperature fluctuations, leading to issues such as cracking and peeling.
The essential difference between thermal shock test chambers and high-low temperature alternating test chambers.
Both thermal shock test chambers and temperature cycling test chambers are used to test the temperature resistance of products, but their core differences lie in the method and purpose of temperature change.
Technical Differences Between Two-Chamber and Three-Chamber Thermal Shock Test Chambers
The thermal shock test chamber is used to test a product's resistance to sudden temperature changes, primarily through two methods: the two-chamber method and the three-chamber method. What are the differences between them? This article will tell you!
The difference between thermal shock test chambers and constant temperature and humidity chambers
This article compares the differences between thermal shock test chambers and constant temperature and humidity chambers in terms of working principles, key performance, and applications.