Thermal Cycling Chambers for MIL-STD-810 & MIL-STD-883 Temperature Shock Testing
Product Description:
Our thermal cycling chambers are designed to perform temperature shock tests in accordance with MIL-STD-810 and MIL-STD-883 standards. These chambers provide precise and controlled temperature environments to simulate the extreme thermal stresses that electronic components and systems may encounter in military and aerospace applications.
Key Features:
MIL-STD Compliance: Our chambers meet or exceed the requirements of MIL-STD-810 and MIL-STD-883 standards for temperature shock testing.
Precise Temperature Control: Our chambers maintain accurate and stable temperatures in both hot and cold zones.
Rapid Temperature Transition: The chambers feature a high-speed transfer mechanism to quickly move test samples between hot and cold zones, minimizing the time it takes to complete a test cycle.
Programmable Control System: The chambers have a user-friendly programmable control system that allows you to set test parameters such as temperature, dwell time, and cycle count.
Data Logging: Our chambers can record and store test data for analysis and reporting purposes.
Safety Features: The chambers include safety features such as over-temperature protection and door interlocks to ensure safe operation.
Specific Parameters
Model
TSC-49-3
TSC-80-3
TSC-150-3
TSC-216-3
TSC-512-3
TSC-1000-3
Inside dimension(W x D x H) cm
40 x 35 x 35
50 x 40 x 40
65x 50 x 50
60 x 60 x 60
80 x 80 x 80
100 x 100 x 100
Outside dimension(W x D x H)cm
128x 190 x 167
138 x 196 x 172
149 x 192 x 200
158 x 220 x 195
180 x 240 x 210
220 x 240x 220
Internal material
#304 Stainless Steel
External material
Powder coated #304 Stainless Steel
High temperature range
60 ℃ ~ 200 ℃
Low temperature range
0 ℃ ~ -70 ℃
Test temperature range
60 ℃ ~ 180 ℃ / 0 ℃ ~ -70 ℃
Temperature recovery time
1-5min
Temperature stability ℃
±2
Cylinder switching time
10s
High temperature ℃
150
150
150
150
150
150
Heating time (min)
20
30
30
30
30
30
Low temperature
-40, -50, -65
-40, -50, -65
-40, -50, -65
-40, -50, -65
-40, -50, -65
-40, -50, -65
Cooling time (min)
40, 50, 60
40, 50, 60
40, 50, 60
40, 50, 60
40, 50, 60
40, 50, 60
Air circulation system
Mechanical convection system
Cooling system
Imported compressor, fin evaporator, gas condenser
Heating system
Fin heating system
Humidification system
Steam Generator
Humidification water supply
Reservoir, Sensor-controller solenoid valve, recovery-recycle system
Controller
Touch panel
Electrical power requirements
3 phase 380V 50/60 Hz
Safety device
Circuit system load protection, compressor load protection, control system load protection, humidifier load protection, overtemperature load protection, fault warning light
Application Areas and Success Stories
Aerospace and Defense Electronics
A leading aerospace defense contractor used the Customization Thermal Shock Test Chamber to test the avionics systems for a new fighter jet. The tests revealed a potential issue with the soldering of a critical electronic component, which could lead to intermittent failures during rapid temperature changes. By re-evaluating the soldering process and conducting further tests, they were able to enhance the reliability of the avionics system, ensuring the safety and performance of the aircraft.
A military electronics research institution used the chamber to study the effects of thermal shock on new-generation radar systems. The data obtained led to the development of improved thermal management strategies and component designs, increasing the overall performance and durability of the radar systems in various environmental conditions.
Military Weapons and Ordnance
A manufacturer of military firearms used the test chamber to evaluate the durability of their weapon barrels. The testing identified a weakness in the heat treatment process of the barrels, which could cause cracking under extreme thermal stress. By adjusting the heat treatment parameters and conducting additional tests, they were able to improve the barrel's resistance to thermal shock, enhancing the weapon's reliability and accuracy.
A company producing military ammunition used the Customization Thermal Shock Test Chamber to test the integrity of their explosive charges and projectile casings. The tests ensured that the ammunition could withstand the rapid temperature changes during storage, transportation, and firing, reducing the risk of malfunctions and ensuring the safety of the soldiers using the weapons.
Military Vehicle and Equipment
A manufacturer of military armored vehicles used the chamber to test the durability of their vehicle components, such as the engine cooling systems, hydraulic systems, and electronic control units. The testing helped them identify and address potential issues, such as leaks in the cooling system and malfunctions in the electronic components due to thermal shock. By making improvements based on the test results, they were able to enhance the overall reliability and performance of the vehicles in the field.
A military equipment supplier used the test chamber to test the thermal shock resistance of their portable communication and navigation devices. The tests ensured that these devices could function reliably in a wide range of environmental conditions, from the freezing cold of arctic regions to the sweltering heat of desert operations, providing essential support to military personnel in the field.
Benefits:
Identifies potential failure points in electronic components and systems
Ensures product reliability and durability in extreme temperature environments
Accelerates product development and validation processes
Reduces the risk of field failures and warranty claims
Meets industry standards and customer requirements
Why Choose Us:
We have years of experience in designing and manufacturing thermal cycling chambers. Our chambers are built to the highest standards and are backed by our commitment to customer satisfaction.
Contact us today to learn more about our thermal cycling chambers and how they can benefit your business.