Cold and Hot Cycle Testing Machine

The thermal cycling test chamber controls the temperature to alternate within a set range through programmed settings, causing the sample to repeatedly undergo thermal expansion and contraction. It is used to detect the durability and stability changes of materials in alternating temperature environments, commonly employed for environmental adaptability verification of electronic components, coatings, and plastic products.
Selection
When selecting, focus on ensuring the temperature range covers the actual usage limits, the temperature change rate matches the testing standards, and the sample size fits the workspace volume. Confirm the temperature uniformity index and ensure the program steps are sufficient for simulating complex working conditions. Consider the equipment's energy consumption and maintenance costs, as well as interface compatibility with data acquisition systems.

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

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

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 integrated design does not require a cold water tower, with dual pump dual temperature control function, cooling capacity of 600W and temperature Stability of +/- 1.0K, supports multiple Safety protection and remote Communication interface to ensure reliable operation of the equipment.

$ 1498.00

Temperature range -25 ℃, temperature control accuracy +/- 1 ℃, can simulate the natural low temperature environment for bending test, observe material changes, determine the degree of cold resistance.

$ 6770.00

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 equipment has 200x200mm hot pressing area, temperature control accuracy +/- 2 ℃, heating temperature up to 250 ℃. Using light curtain protection and safety protection design, the upper and lower templates have high parallelism, and the hot pressing time, temperature and pressure can be adjusted.

$ 4430.00

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

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 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

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

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

The equipment adopts dual-station synchronous unwinding and thermostatic hot pressing technology, the bonding speed is adjustable from 2-10m/min, the hot pressing temperature is room temperature to 200 ° C, the line pressure is 5-50N/mm, and it is equipped with automatic deviation correction and full closed-loop tension control to ensure the material alignment accuracy and stable winding.

$ 24279.00

Adopt -80 ° C cold trap temperature and ≤ 5Pa Vacuum Level, with sample pre-freezing function and color Touchscreen operation, support data export and remote control, built-in maintenance reminders and one-click defrosting.

$ 6050.00

Articles

Application of High-Frequency Fatigue Testing Machine in Infinite Life Testing of Valve Springs
This article discusses the application of high-frequency fatigue testing machines in the infinite life testing of valve springs. The test simulates the long-term working stress of the spring through high-frequency cyclic loading, with parameters such as preload, amplitude, and cycle count set according to international standards.
Constant temperature bath selection: circulation method and temperature control range.
This article on thermostatic bath selection primarily analyzes two core factors: circulation mode and temperature control range. The circulation mode is divided into natural convection and forced circulation, where the former is suitable for simple static experiments, while the latter offers higher precision and is better suited for multiple samples or integration with external devices.
Rapid temperature change high and low temperature test chamber for thermal fatigue evaluation of PCB board solder joints.
This paper discusses the application of rapid temperature change high and low temperature test chambers in evaluating the thermal fatigue of PCB board solder joints. Solder joint fatigue is primarily caused by differences in material thermal expansion, and the test chamber simulates thermal stress through temperature cycling to accelerate the fatigue process.
Application of Three-Chamber High and Low Temperature Test Chambers in Rapid Temperature Cycling for Electronic Products
The three-chamber high-low temperature test chamber is used for reliability testing of electronic products, enabling rapid temperature transitions through independent high temperature, low temperature, and test zones. Compared to traditional single-chamber equipment, it reduces temperature change time and enhances testing efficiency.
The Impact of Cooling Circulating Water Chillers on the Temperature Stability of Digesters
The cooling circulator helps maintain a stable temperature for the digester by circulating the cooling medium, thereby improving the repeatability of experiments. Its working principle involves using a refrigeration system to lower the water temperature, and then circulating the cooled water to the digester through a circulation pump to absorb excess heat.
Effect of Rapid Temperature Change Aging Chamber on Thermal Cycling of Composite Materials
This article primarily explores how rapid thermal cycling chambers affect the performance of composite materials during thermal cycling. It explains that thermal cycling can induce internal stresses in composite materials due to differences in the thermal expansion coefficients of their components, potentially leading to microcracks or performance degradation.
Salt spray aging test chamber for cyclic corrosion evaluation of coating weatherability.
This article introduces the method of using a salt spray aging test chamber to conduct cyclic corrosion tests for evaluating the weather resistance of coatings.
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.
Tensile testing machine measures the bending fatigue life of flexible OLED films.
This article introduces a method for testing the bending fatigue life of flexible OLED films using a tensile testing machine. The test simulates repeated bending to evaluate the accumulation of damage in the film under cyclic stress, and monitors performance changes to determine the failure point.
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.
Fatigue testing machine evaluates the long-term durability of resin-based composite materials.
The fatigue testing machine is a key piece of equipment for evaluating the long-term durability of resin-based composite materials. These materials are widely used in fields such as aerospace, but their performance gradually degrades under cyclic loading.
The Taber Abraser evaluates the wear resistance of coatings.
The Taber abrasion tester simulates surface wear of materials through rotational friction, used to evaluate the wear resistance of coatings. During testing, a grinding wheel is used to rub the specimen under a fixed load, and performance is quantified by measuring mass loss or thickness changes after a specified number of cycles.
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.
UV aging test machine evaluates the UV resistance of ink.
This article introduces how to test the UV resistance of ink using a UV aging test chamber. The equipment accelerates aging by simulating ultraviolet light and controlling temperature and humidity, with key testing conditions including temperature, irradiance, and cycle time.
Application of Laboratory Coating Machines in the Preparation of Lithium Battery Electrodes
As a key device for achieving uniform coating of active material slurries onto current collectors, the application of laboratory coating machines directly influences the areal density consistency, thickness uniformity, and microstructure formation of electrodes, thereby affecting the energy density, cycle life, and safety of batteries.