Hot and Cold Shock Test Chamber

The thermal shock test chamber simulates sudden temperature changes by rapidly switching between hot and cold water tanks, causing samples to alternate between immersion in high-temperature and low-temperature water. It is used to test the resistance of materials under alternating cold and hot conditions and is commonly employed in evaluating the temperature tolerance of electronic components, coatings, and plastic products.
Selection
When selecting, ensure the temperature range covers the testing standards, the transition time meets the sample's response speed, and the tank volume is suitable for the sample size. Verify the temperature control accuracy of the water bath and the corrosion resistance of the tank material. Check the safety protection devices and the convenience of daily maintenance.

Terms

Standards

Instruments

Adopt independent control structure of hot and cold box, temperature conversion time ≤ 15 seconds, temperature recovery ≤ 5 minutes, equipped with safety interlock protection and 7-inch Touchscreen controller, support long-term adjustable test.

$ 42981.00

With the independent control structure of the cold and hot box, the temperature conversion takes only 15 seconds and the recovery time does not exceed 5 minutes. The temperature fluctuation in the sample area is controlled within +/- 0.5 ° C, the load-bearing capacity is up to 40kg, and it is equipped with safety interlock protection and 7-inch Touchscreen controller.

$ 38608.00

The temperature conversion time only takes 15 seconds, the recovery time does not exceed 5 minutes, equipped with a 7-inch Touchscreen controller, with an accuracy of +/- 0.1 ° C, and an independent cold and hot box design to improve test efficiency and safety.

$ 34429.00

Adopting an independent control structure of a cold and hot box, the temperature conversion time is less than or equal to 15 seconds, the temperature recovery time is less than or equal to 5 minutes, and it has the ability to accurately control the temperature in the sample area with a temperature fluctuation of less than or equal to +/- 0.5 ° C, supporting an adjustable test time of 9999 hours.

$ 32734.00

The independent control structure of the cold and hot box is adopted, with a temperature conversion time of less than 15 seconds and a temperature recovery time of less than 5 minutes. It is equipped with multiple safety interlock protection and standard lead hole design to ensure efficient and safe testing.

$ 34606.00

Temperature conversion time ≤ 15 seconds, temperature recovery ≤ 5 minutes, cold and hot box independent control does not interfere with each other, with sample area temperature fluctuation ≤ +/- 0.5 ℃ High Accuracy thermostatic performance, improve test reliability.

$ 25328.00

Adopting the independent control structure of the cold and hot box, the temperature conversion time is ≤ 15 seconds, and the temperature recovery is ≤ 5 minutes. Equipped with safety interlock protection, the temperature fluctuation in the sample area is ≤ +/- 0.5 ° C, supporting long-term stable operation.

$ 25328.00

Adopting independent control design of hot and cold box, the temperature conversion time does not exceed 15 seconds, and the recovery time is within 5 minutes. Equipped with safety interlock function and standard lead hole tube, it enhances test efficiency and operation safety.

$ 29120.00

The independent control of the hot and cold box realizes three uses in one box, the temperature conversion time is ≤ 15 seconds and the recovery time is ≤ 5 minutes, the temperature fluctuation in the sample area is ≤ +/- 0.5 ° C, and it is equipped with multiple safety interlock protection and 7-inch Touchscreen control.

$ 38414.00

Adopting independently controlled hot and cold box structure, the temperature conversion time does not exceed 15 seconds, the recovery time is within 5 minutes, and it is equipped with a 7-inch Touchscreen controller with an accuracy of +/- 0.1 ° C, supporting a sample load of 20kg, suitable for a variety of testing needs.

$ 22471.00

Dynamic Impact is achieved with a two-box mobile structure, with a hot and cold conversion time of 10 seconds and a temperature recovery time of 5 minutes. It is equipped with rigid polyurethane foam insulation material, with ultra-low temperature thermal conductivity and multiple safety protection devices.

$ 14564.00

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

Using two-box mobile Impact structure, Thermal Shock mechanism moves within 10 seconds, temperature recovery time ≤ 5 minutes, equipped with rigid polyurethane foam insulation material, effective energy saving and waterproof and moisture proof.

$ 23682.00

Adopt two-box mobile structure, air pressure drive test object Impact, Thermal Shock mechanism moving time within 10 seconds, temperature recovery time within 5 minutes, in line with MIL and other international test standards.

$ 19809.00

Adopt independent control design of hot and cold box, temperature conversion time ≤ 15 seconds, temperature recovery ≤ 5 minutes, equipped with multiple safety interlock protection, support 9999 hours adjustable test time.

$ 29120.00

Articles

Application of Drop Hammer Impact Testing Machine in Evaluating Impact Resistance of Composite Materials
This article introduces how the drop-weight impact testing machine evaluates the impact resistance of composite materials. The test releases a weight to strike the specimen, measuring parameters such as energy absorption, peak load, and damage area, simulating low-velocity impacts like tool drops.
Impact of the Fixture Design of a Drop Hammer Impact Tester on the Plastic Impact Strength Results
This article primarily discusses the impact of the fixture design of a drop-weight impact testing machine on the results of plastic impact strength tests. The geometric parameters of the fixture, clamping method, and contact surface material can alter the stress state and energy transfer of the specimen, thereby affecting the accuracy of the test data.
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.
Pendulum Impact Tester Evaluates Impact Strength of Glass Fiber Reinforced Nylon
This article introduces the use of a pendulum impact tester to evaluate the impact strength of glass fiber reinforced nylon. The test is based on the principle of energy conservation, where the energy absorbed by the material is calculated by measuring the height difference of the pendulum before and after impacting the specimen, thereby quantifying its impact resistance.
Charpy Impact Tester Evaluates Brittle Fracture of Carbon Fiber Plates
This article explains how to use a simply supported beam impact testing machine to evaluate the brittle fracture characteristics of carbon fiber plates. During the test, a pendulum impacts the sample, and the energy absorbed by the material during fracture is calculated based on the energy difference, which helps determine its tendency toward toughness or brittleness.
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.
Dart impact tester measures the toughness of packaging film.
The dart impact test evaluates the material's resistance to damage under dynamic impact, i.e., its toughness, by allowing a dart to fall freely and strike the packaging film. During the test, different impact energies are simulated by adjusting the weight of the dart or the drop height, and sensors are used to detect whether the film ruptures.
Drop Ball Method of Impact Testing Machine for Evaluating the Impact Resistance of Varnish
This article introduces the use of the falling ball method with an impact testing machine to assess the impact resistance of varnish. The method involves dropping a steel ball of specified weight from a predetermined height onto a test panel coated with varnish to observe whether the coating cracks or peels off, thereby evaluating its impact resistance.
Impact testing machine tests the impact resistance of powder coatings.
This article introduces the method of testing the impact resistance of powder coatings using an impact tester. The test simulates instantaneous impact through a falling weight or pendulum hammer, following ISO or ASTM standards.
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 Complementary Relationship Between Drop Testing and Impact Testing in Product Structural Strength Verification
This article discusses the different roles and complementary relationship between drop tests and impact tests in verifying product strength.
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.