Products Description
The thermal shock test equipment, also known as the thermal shock test chamber, has an amazing ability to switch temperature differences at extreme speed. It can achieve a sharp change from ultra-high temperature to extremely low temperature in an instant, such as a sharp drop from +180°C to -70°C, and this sharp temperature change can accurately simulate the extreme thermal stress scenarios that the product may encounter in actual use. Whether it is precision electronic components in aerospace, high-temperature components in automotive engines, or outdoor equipment in communication base stations, thermal shock test equipment allows them to undergo a simulated harsh thermal environment, exposing potential material defects, welding problems, and structural weaknesses in advance, providing a key basis for product optimization and quality improvement.
Equipment advantage
The body of the thermal shock test equipment is made of high-quality materials with high strength, high temperature and low temperature resistance, providing excellent mechanical properties and stability. The key components, such as the heating element, refrigeration unit and air duct circulation system, are carefully designed and strictly screened to withstand long-term, high-intensity thermal shock test tasks. Whether it is day-to-day batch sampling of industrial products or long-term thermal performance research of scientific research projects, it can run stably, effectively reduce the test interruption and data deviation caused by equipment failure, and ensure the efficient and smooth conduct of test work.
Application field
Thermal shock test equipment plays an indispensable and critical role in many industries. In the electronics industry, it ensures the reliability and stability of mobile phones, computers and other electronic products under different ambient temperatures; In the field of new energy, thermal performance evaluation of batteries, photovoltaic modules, etc., to help the efficient and safe development of the energy industry; In the manufacture of medical equipment, ensure the accurate operation of medical devices in various use scenarios; In the machinery manufacturing industry, improve the heat and cold resistance of parts, enhance the overall quality and durability of mechanical equipment.
successful cases
Choose the plan that suits you best.

Smartphone reliability testing
Given that smartphones face complex temperature environments in daily use, such as use in hot outdoor sunlight, cold winter outdoor calls, or playing games for a long time causing the body to heat up, thermal stability is crucial.

Durability evaluation of automotive engine parts
An automobile manufacturing company developed a new engine, the engine cylinder head, piston and other core components need to withstand the high temperature generated by combustion and the drastic temperature changes during starting and extinguishing. To verify the durability of parts, companies use thermal shock test equipment.

Weather resistance testing of photovoltaic modules
The market of high-altitude and high-cold areas developed by photovoltaic enterprises, where the temperature difference between day and night reaches more than 40 ° C, and the ultraviolet radiation is strong, photovoltaic modules are facing severe tests. The company uses thermal shock test equipment, combined with local climate data to simulate the test environment: simulate the day and night cycle every day for 30 consecutive days.

Avionics stability test
Aerospace companies develop avionics for new passenger aircraft, given the height of the aircraft, large geographical span, electronic equipment to withstand extreme temperature differences. The thermal shock test equipment simulates the thermal environment in flight, the high temperature zone is set to 75°C, and the simulation equipment runs at full load. Low temperature zone -60°C, simulate high-altitude cruise.
Product parameter
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Product name |
Two box type temperature impact test box |
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Product model |
BT-2TS100 |
BT-2TS180 |
BT-2TS300 |
BT-2TS1000 |
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Nominal volume |
Unit/L |
100 |
180 |
300 |
1000 |
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Inner size |
Width × depth × height (mm) |
500×500×400 |
600×600×500 |
700×700×600 |
1000×1000×1000 |
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External size |
Width × depth × height (mm) |
1020×1200×1850 |
1200×1500×1900 |
1350×1600×1980 |
2450×1800×1980 |
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Basket size |
Width × depth × height (mm) |
350×350×250 |
450×450×350 |
550×550×450 |
800×800×800 |
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Operating mode |
A.vertical basket B. horizontal basket type |
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Performance index |
temperature range |
A,-75℃~200℃ B,-90℃~200℃ C,-120℃~200℃ |
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Impact range |
A,-55℃~160℃ B,-75℃~160℃ C,-85℃~160℃ |
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Temperature fluctuation |
±0.5℃ |
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Temperature uniformity |
≤±2.0℃ |
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Temperature deviation |
≤±2.0℃ |
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heating rate |
RT~+200℃,≤40Min |
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Cooling rate |
A,+25℃~-75℃,≤60Min;B,+25℃~-90℃,≤80Min;C,+25℃~-90℃,≤100Min; |
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Temperature conversion time |
≤15s |
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Temperature recovery time |
≤5Min |
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Exposure conditions |
High temperature exposure 30Mins; Low temperature exposure 30Mins |
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Refrigeration method |
Compressor refrigeration |
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Cooling method |
Air-cooled/water-cooled |
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Main components |
Control System |
Siemens programmable controller + touch screen + independent development program |
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Heating system |
Fully independent system, high efficiency stainless steel finned tube heater |
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Cooling System |
Importer-type scroll compressor |
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Circulatory system |
Temperature and low noise motor, stainless steel centrifugal impeller |
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Main materials |
Carton material |
High-quality carbon steel plate, phosphating electrostatic spray treatment |
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Inner box material |
International standard SUS304# stainless steel mirror treatment |
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Insulation material |
Hard flame retardant polyurethane foam |
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Sealing material |
High and low temperature environment-friendly silicone rubber seal |
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voltage |
380±10% VAC,50Hz;3L+N+G |
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Communication Interface |
RS232 communication interface, USB data interface |
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Standard configuration |
1 sample holder, 1 test lead hole, 1 silicone plug |
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Optional accessories |
Recorder, Remote Control Software, Insulated Sample Holder, Split Manipulator, Dry Air Purge |
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safety devices |
Leakage, short circuit, motor overheating, heater overheating, humidification, water shortage, compressor overpressure, overload, multiple overtemperature protection |
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Environmental requirements |
Ambient temperature: 5 ~ 35 °C, relative humidity: ≤ 85% RH, no strong vibration, electromagnetic radiation, dust and corrosive substances around; Water supply temperature: ≤ 30 °C, water pressure: 0.1 ~ 0.3MPa, water quality meets industrial water standards; |
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