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Two Zone High Low Temperature Thermal Shock Test Chamber Cycling Lab Test Machine 140L

Place of Origin China
Brand Name Neide
Certification CE
Model Number ND-140
Document Neide catalogue.pdf
Minimum Order Quantity 1 set
Price Negotiable
Packaging Details Wooden Box(standard export packaging)
Delivery Time 7-22 work days
Payment Terms L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability 100sets/month

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Product Details
Brand Neide Customized Welcome
Factory Yes Customer More Than 500+
Material SUS304 Or Customized After-sales Service Yes
Transportation By Sea Reply For Probme Within 24 Hours
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Two Zone Thermal Cycle Test Chamber

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140L Thermal Shock Test Chamber

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High Low Temperature Thermal Shock Chamber

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Product Description

Cycling Lab Test Machine With Two-Zone High And Low Temperature Thermal Shock Test Chamber

 

Introduction:

The Thermal Shock Test Chamber (Two-Zone) is a specialized experimental equipment designed to simulate rapid temperature changes in natural environments. It evaluates the physical and chemical damage that products may endure under extreme thermal conditions, helping to identify quality issues and drive improvements in product design and performance.

This chamber is widely used across various industries, including:

  • Photovoltaic Modules: Testing solar panels for durability under temperature fluctuations.
  • LED Tubes and Lamps: Assessing the reliability of lighting components.
  • Electronics and Electrical Components: Ensuring the stability of semiconductors, PCBs, and connectors.
  • Automotive Parts: Evaluating the performance of sensors, batteries, and engine components.
  • Metals, Chemical Materials, and Plastics: Analyzing the effects of thermal expansion and contraction on material integrity.

 

Major Specification:

 

Model
ND-140B
Temperature humidity adjustment mode
Smart balanced temperature(humidity) control - BT(H)C
Test area capacity
140L
Workspace dimensions
 (WxHxD)mm
600*500*500
Exterior dimensions 
(WxHxD)mm
1670*2270*2130
Temperature
Performance
High temperature shock range
 +60℃ to +150℃
Low temperature shock range
-65℃ to -10℃
Hot zone Temperature setting range
+60℃ to +200℃
Cold zone Temperature setting range
-65℃ to -10℃
Shock recovery time
-40℃ to +150℃ about 5min
Transfer time
≤10sec.
High and low
temperature impact
constant temperature  time
more 30 min
Temperature uniformity
±2.0℃
Temperature fluctuation
±0.5℃
Load(KG)
 
Material
Interior
Matte SUS #304 Stainless Steel Plates
Exterior
Powder Coated Carbon Steel Plates

 

Two Zone High Low Temperature Thermal Shock Test Chamber Cycling Lab Test Machine 140L 0

 

 

Company Information:

 

Dongguan Neide Technology Co. Ltd  located in Dongguan, Guangdong province with convenient transportation access. We take immense pride in our journey of excellence as a premier provider of top-quality testing equipment. With our unwavering commitment to innovation, we specialize in crafting cutting-edge environmental test chambers and mechanical test machines.

 

Our extensive range includes temperature and humidity chambers, thermal shock test chambers, tensile testing machines, and vibration test machines. What sets us apart is our proficiency in creating customized testing equipment tailored to your specific needs.

 

At the heart of our operations lies a dedication to precision and compliance. Our products are engineered to meet and exceed international standards, such as ISO, ASTM, DIN, EN, GB, BS, JIS, AMSI, UL, TAPPI, AATCC, and IEC.

 

This ensures that our solutions not only adhere to industry benchmarks but set new standards of excellence. Our services and products find applications across diverse sectors, including R&D institutions, quality inspection establishments, universities, and electronics and communications industries.

 

FAQ:

1.What is the main function of this test chamber?
This test chamber is mainly used to test the ability of materials, components, or products to withstand rapid temperature changes between high and low temperatures. It can quickly expose the test samples to extreme high and low temperature environments, helping you detect potential problems caused by thermal expansion and contraction, such as cracks, delamination, or performance degradation, in a short time. For example, it is very useful for testing the reliability of electronic components, automotive parts, and aerospace materials.
 
2. How does the two - zone design work?
The two - zone design consists of a high - temperature zone and a low - temperature zone. When testing, the samples are quickly transferred between these two zones by a precise mechanical system. This design allows for extremely fast temperature transition times. For instance, the transfer time between the high - temperature zone and the low - temperature zone can be as short as [X] seconds, ensuring that your test samples experience the most realistic and efficient thermal shock conditions. 
 
3. What kind of calibration and verification procedures does the equipment have?
 Regular calibration is crucial to ensure the accuracy of the test results. We recommend calibrating the equipment at least once a year. During calibration, we use high - precision temperature sensors that have been traceable to international standards. These sensors are placed at multiple positions in the high - temperature and low - temperature zones to measure the actual temperature. The measured data is then compared with the set values of the equipment. If there are any deviations, the equipment's control parameters will be adjusted accordingly. In addition to calibration, we also perform verification tests. These tests involve running a series of standard thermal shock test cycles on reference samples with known thermal properties. By comparing the test results of the reference samples with the expected values, we can verify the overall performance and accuracy of the equipment.
 
4. How does the equipment handle the stress relief of samples during the thermal shock test?
Our test chamber has a built - in stress - relief algorithm. During the test, when the temperature changes, the equipment will adjust the heating or cooling rate in a specific way. For example, during the initial stage of temperature change, the rate will be relatively slow to allow the sample to gradually adapt to the temperature change and relieve internal stress. Then, as the sample reaches a certain degree of temperature adaptation, the rate can be adjusted to the normal test rate. Also, the control system can monitor the temperature distribution of the sample through additional sensors (if needed). If it detects abnormal stress - induced temperature differences in the sample, it will automatically adjust the test parameters to ensure that the sample can withstand the thermal shock test without being damaged by excessive stress.