Refrigeration and heating temperature control system for aerospace vacuum heat sink testing
The application of refrigeration and heating temperature control system in aerospace vacuum environment heat sink testing is very critical. Such equipment is usually used to simulate thermal performance tests under extreme temperature conditions, aiming to simulate the thermal behavior of spacecraft in space environment, so as to evaluate the thermal management capability and reliability of aerospace equipment in space environment.
In the field of aerospace, refrigeration and heating temperature control systems are widely used to evaluate the performance and reliability of key components such as satellites, spacecraft, and rocket engines under extreme temperature conditions. Such equipment plays an irreplaceable role in ensuring that aerospace equipment can withstand the challenges of space environment.
The following are the specific applications and characteristics of refrigeration and heating temperature control system in aerospace vacuum environment heat sink testing:
Wide Temperature Range: The refrigeration and heating temperature control system can provide a wide temperature range from extremely low temperature (such as -180°C) to high temperature (such as 200°C), simulating extreme temperature changes in space environment.
Accurate Temperature Control: The equipment has high-precision temperature control capability, which can accurately adjust the temperature in the test chamber to ensure temperature stability and accuracy during the test.
Vacuum Environment Simulation: The test chamber can operate under vacuum conditions to simulate the low pressure conditions in the space environment to evaluate the thermal performance of aerospace equipment in a vacuum environment.
Heat Sink Test: The cooling and heating temperature control system can simulate the conditions of the heat sink, that is, simulate the process of heat exchange between the spacecraft and the cosmic background radiation in space through thermal radiation, which is used to evaluate the design performance of the spacecraft thermal control system.
Rapid Temperature Change: It can quickly switch between high and low temperatures, simulate the temperature changes of the spacecraft in the earth’s orbit and under the sun, and evaluate the thermal cycle performance of the equipment.
Data Recording and Analysis: It can automatically record the temperature data and other key parameters during the test, which is convenient for subsequent data analysis and evaluation of test results.
Safety and Protection: It has a variety of safety protection measures, such as over-temperature protection, over-current protection, etc., to ensure safety during the test.
Automated Testing: It is usually equipped with an automated control system, such as PLC or a more advanced automated system, to realize the programming, execution and monitoring of the test program, and improve the test efficiency and accuracy.
Scalability and Compatibility: The design takes scalability and compatibility into consideration, and can be integrated with a variety of test equipment, supporting a variety of test standards and protocols.
Durability and Maintenance: Durable materials and design are used, easy to maintain and maintain, ensuring long-term stable operation.
REFRIGERATION HEATING UNITS SUNDI 시리즈
SUNDI Z 주파수 변환 시리즈
왓츠앱 위챗 초고온 냉각 기술은 300℃의 고온에서 직접 냉각할 수 있습니다[팽창의 열전달 매체만 있기 때문에...
SUNDI -10℃~150℃
완전 밀폐형 시스템, 단일 매체로 냉장 및 가열 완료 -120 ~ 350 ℃ ± 0.5 ℃ AC 380V 50HZ 8kW 최대 초고온 냉각 기술은 높은 온도에서 직접 냉각 할 수 있습니다 ...
SUNDI -80℃~250℃
작동 온도 -120°C ~ +350°C ● 이전에는 달성할 수 없었던 성능 ● 지능형 온도 제어 ● 최고의 공정 안정성 및 재현성 ● 판형 열교환기, 파이프라인 가열, 가장 빠른 열...
SUNDI-320/320W
완전 밀폐형 시스템, 단일 매체로 냉장 및 가열 완료 -120~350℃ ±0.5℃ 초고온 냉각 기술은 300℃ 고온에서 직접 냉각할 수 있습니다. Bec...
SUNDI -25℃~200℃
완전 밀폐형 시스템, 단일 매체로 냉장 및 가열 완료 -120~350℃ ±0.5℃ ● 작동 온도 -120°C ~ +350°C ● 이전에는 달성할 수 없었던 성능 ● 지능형 온도 제어...
SUNDI -25℃~300℃
작동 온도 -120°C ~ +350°C ● 이전에는 달성할 수 없었던 성능 ● 지능형 온도 제어 ● 최고의 공정 안정성 및 재현성 ● 판형 열교환기, 파이프라인 가열, 가장 빠른 열...
SUNDI -45℃~250℃
작동 온도 -120°C ~ +350°C● 이전에는 달성할 수 없었던 성능● 지능형 온도 제어● 최대 공정 안정성 및 재현성● 판형 열교환 기, 파이프 라인 가열, 가장 빠른 가열을 채택합니다 ...
SUNDI -60℃~250℃
초고온 냉각 기술은 300℃의 고온에서 직접 냉각할 수 있습니다[팽창 챔버의 열전달 매체만 산소와 접촉하기 때문에...
SUNDI -80℃~250℃
작동 온도 -120°C ~ +350°C ● 이전에는 달성할 수 없었던 성능 ● 지능형 온도 제어 ● 최고의 공정 안정성 및 재현성 ● 판형 열교환기, 파이프라인 가열, 가장 빠른 열...
로딩 중...
이미 마지막 에피소드에 도달했습니다!
관련 권장 사항
-
ZLT HED 시리즈
3260이 장치는 화학 매체를 직접 도입하고 온도를 정확하게 제어할 수 있으며 화학 반응 전 매체의 예열, 예냉 및 온도 제어 역할을 합니다. 화학 매체에는 불화수소가 포함됩니다.
세부 정보 보기 -
-
LNEYA 저온 자동 온도 조절 목욕 지침
1343Low temperature thermostat is widely used in petroleum, chemical industry, electronic instruments, physical, chemical and biological engineering, medicine and health, life sciences, food industry, physical testing and chemical analysis and researc...
세부 정보 보기 -
Simulation control of temperature change in the cooling and heating temperature control system of th
861Industrial cooling and heating temperature control system is a temperature control equipment used in the cooling and heating process of reaction kettle in the pharmaceutical and chemical industry. What are the characteristics of lneya's equipment?...
세부 정보 보기 -
Why is There Frost Phenomenon in the Low Temperature Chiller Circulator?
1133Many low temperature chiller circulators will frost when they are used, but there is no frost phenomenon in low temperature chiller circulators. So, what's the matter? Is it related to refrigeration?First of all, why does the low temperature chill...
세부 정보 보기 -
Heat sink temperature application note
1130As we all know, the semiconductor industry has certain characteristics, small size, high reliability, wide working range, and has a wide range of applications in the civilian, industrial and other fields of semiconductors, but with the increasing ...
세부 정보 보기