Climatic Walk-in Chambers & Rooms for Aerospace Material & Component Testing
Product Description:
Our custom-engineered climatic walk-in chambers and rooms are designed to provide large-scale environmental testing solutions for aerospace materials and components. These chambers offer spacious testing environments capable of accommodating entire aerospace assemblies or multiple components simultaneously. By precisely controlling temperature and humidity, our chambers simulate the extreme conditions encountered in aerospace applications, ensuring the reliability and durability of critical materials and components.
Key Features:
Customizable Design:
Tailored to meet the specific dimensions and testing requirements of aerospace materials and components.
Customizable interior dimensions, temperature ranges, and humidity ranges.
Spacious Testing Environment:
Provides ample space for testing large aerospace assemblies or multiple components concurrently.
Facilitates easy access for testing personnel during operation and maintenance.
Comprehensive Environmental Control:
Precise temperature and humidity control systems for stable and uniform testing conditions.
Ability to simulate various extreme climatic conditions, including high and low temperatures, high and low humidity, and high altitude.
Real-Time Data Acquisition and Analysis:
Integrated high-precision sensors and data acquisition systems for real-time monitoring and recording of test data.
Provides detailed test reports and data analysis for product improvement.
Robust Safety Features:
Multiple safety interlocks and monitoring systems for secure testing.
Complies with relevant industry standards and safety regulations.
3. Specific Parameters
Model
WIV-6
WIC-11
WIC-15
WIC-48
WIC-66
WIC-1000
Inside dimension(W x D x H) mm
200 x 220 x 150
250 x 220 x 200
350 x 220 x 200
500 x 240 x 400
500 x 240 x 400
100 x 100 x 100
Outside dimension(W x D x H) mm
280 x 260 x 180
350 x 260 x 230
455 x 260 x 230
610 x 280 x 430
680 x 280 x 530
155 x 190 x 160
Internal material
#304 Stainless Steel
External material
Powder coated #304 Stainless Steel
Temperature range
+ 150℃~ - 70 ℃
Humidity range
20% ~ 98% R. H
Temperature resolution ℃
0.01
Humidity resolution % R. H.
0.1
Temperature stability ℃
±0.5
Humidity stability % R. H.
±2
Heating time
30min
Cooling time
-40℃/50min, -20℃/30min
Air circulation system
Mechanical convection system
Cooling system
Sirocco Fan
Heating system
Sus316 Stainless steel Efficient heater
Humidification system
Steam Generator
Humidification water supply
Reservoir, Sensor-controller solenoid valve, recovery-recycle system
Controller
Touch panel
Electrical power requirements
Please contact us for requirements of specific models
Safety device
Circuit system load protection, compressor load protection, control system load protection, humidifier load protection, overtemperature load protection, fault warning light
6. Application Areas and Success Stories
Avionics Component Testing
An aerospace avionics company used the chamber to test a new generation of flight computer systems. The systems were subjected to a combination of extreme temperature and humidity conditions, including rapid temperature cycling and high-humidity soak tests. The testing revealed a vulnerability in the thermal management of the computer's microprocessors, which could lead to overheating and system failures. By redesigning the heat sink and improving the ventilation within the computer enclosure, the company was able to enhance the system's reliability and ensure its proper functioning in a wide range of aerospace environments.
Aircraft Structural Component Evaluation
A major aircraft manufacturer tested a new composite wing spar design in the chamber. The spar was exposed to temperature and humidity conditions simulating different flight altitudes and climates. The results showed that the adhesive used in the composite layup had a reduced bond strength at low temperatures and high humidity. By developing a new adhesive formulation and modifying the curing process, the manufacturer was able to improve the spar's structural integrity and durability, reducing the risk of in-flight failures.
Engine Component Research and Development
An aerospace engine research facility used the chamber to test a novel turbine blade coating. The blades were subjected to high-temperature, high-humidity, and corrosive gas environments to evaluate the coating's performance in protecting the blades from oxidation and erosion. The testing identified areas where the coating could be improved in terms of its adhesion and resistance to thermal shock. Based on these results, the research team was able to refine the coating composition and application process, leading to enhanced turbine blade performance and longer service life.
Benefits:
Enables testing of large aerospace assemblies or multiple components.
Enhances the reliability and durability of aerospace materials and components.
Accelerates product development and validation processes.
Reduces the risk of in-field failures.
Meets stringent aerospace industry standards and testing requirements.
Why Choose Us:
We specialize in providing high-quality environmental testing solutions for the aerospace industry. Our custom walk-in chambers and rooms are designed and manufactured to the highest standards, ensuring reliable and accurate testing results. We offer comprehensive support, including design, installation, and ongoing maintenance.
Contact our expert team today to discuss your specific aerospace material and component testing requirements and discover how our custom climatic walk-in chambers and rooms can optimize your testing processes.