DBST-336
Danble
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The Two-Zone Thermal Shock Test Chamber is designed to assess the durability of materials and components under abrupt temperature changes. It features two independent chambers (high-temperature and low-temperature zones) connected by a transfer basket system. Samples are automatically moved between zones to expose them to thermal shock cycles, enabling rapid identification of thermal stress-induced failures.
|Key Technical Features:
Dual-Zone Independent Temperature Control
The chamber comprises separate high-temperature and low-temperature zones with independent refrigeration/heating systems, ensuring rapid temperature transitions without ambient interference.
A transfer basket (pneumatic or motor-driven) moves samples between zones within ≤10 seconds, simulating extreme thermal shock scenarios.
High-Speed Temperature Transition
Achieves full temperature recovery within 5 minutes after zone switching,meeting IEC 60068-2-14 standards.
Temperature fluctuation:±0.5℃; Deviation: ≤±2.0℃ under unloaded conditions.
Advanced Thermal Uniformity System
Forced air circulation via high-performance fans and optimized ducts ensures uniform temperature distribution(±0.5℃ stability).
Insulation design: Multi-layered (stainless steel + polyurethane foam) to minimize heat loss and maintain efficiency.
Precision Control & Monitoring
PID-programmable controllers (e.g., ±0.1°C resolution) with real-time data logging and curve visualization.
Integrated safety systems: Over-temperature/under-temperature alarms, compressor overload protection, and leakage detection.
Durable & Safe Construction
Materials:
Inner chamber: 1.2 mm SUS304 stainless steel for corrosion resistance.
Insulation: High-density glass wool + polyurethane foam for thermal efficiency.
Safety mechanisms: Door interlock, emergency stop, and phase-loss protection.
Flexible Configuration
High-temperature zone: Up to +200°C.
Low-temperature zone: As low as -70°C (depending on model).
Optional water-cooling systems for high-load applications.
User-Friendly Interface
7-inch touchscreen HMI for parameter setup, cycle programming, and diagnostic alerts.
RS-485/USB communication for data export and integration with PC software.
Application Scenarios
EV Battery Validation: Cycle life testing under thermal shock and fast-charging conditions.
Grid Storage Testing: Long-term deep discharge and fire resistance evaluation.
Aerospace Certification: High-altitude pressure simulation and vibration resistance.
Workflow Integration
Pre-Test Setup: Define parameters (voltage limits, cycle count) via intuitive touchscreen.
Test Execution: Chamber automates charge-discharge cycles while monitoring safety metrics.
Post-Test Analysis: Export Excel data for capacity fade analysis and compliance reporting.
Compliance Standards
IEC 60068-2-14 (Environmental Testing)
MIL-STD-810G (Mechanical Vibration)
GB/T 2423.22 (Temperature Cycling)
IEC 62619
GB/T 31486
Why Choose Us?
ISO 9001 Certified Manufacturer with 13+ years of R&D experience
Customizable Configurations: Support non-standard sizes and temperautre ranges per project needs.
Global Compliance: Meets IEC, GB, GJB, and UL standards
Global Recognition: Trusted by Fortune 500 companies and R&D labs worldwide.
The Two-Zone Thermal Shock Test Chamber is designed to assess the durability of materials and components under abrupt temperature changes. It features two independent chambers (high-temperature and low-temperature zones) connected by a transfer basket system. Samples are automatically moved between zones to expose them to thermal shock cycles, enabling rapid identification of thermal stress-induced failures.
|Key Technical Features:
Dual-Zone Independent Temperature Control
The chamber comprises separate high-temperature and low-temperature zones with independent refrigeration/heating systems, ensuring rapid temperature transitions without ambient interference.
A transfer basket (pneumatic or motor-driven) moves samples between zones within ≤10 seconds, simulating extreme thermal shock scenarios.
High-Speed Temperature Transition
Achieves full temperature recovery within 5 minutes after zone switching,meeting IEC 60068-2-14 standards.
Temperature fluctuation:±0.5℃; Deviation: ≤±2.0℃ under unloaded conditions.
Advanced Thermal Uniformity System
Forced air circulation via high-performance fans and optimized ducts ensures uniform temperature distribution(±0.5℃ stability).
Insulation design: Multi-layered (stainless steel + polyurethane foam) to minimize heat loss and maintain efficiency.
Precision Control & Monitoring
PID-programmable controllers (e.g., ±0.1°C resolution) with real-time data logging and curve visualization.
Integrated safety systems: Over-temperature/under-temperature alarms, compressor overload protection, and leakage detection.
Durable & Safe Construction
Materials:
Inner chamber: 1.2 mm SUS304 stainless steel for corrosion resistance.
Insulation: High-density glass wool + polyurethane foam for thermal efficiency.
Safety mechanisms: Door interlock, emergency stop, and phase-loss protection.
Flexible Configuration
High-temperature zone: Up to +200°C.
Low-temperature zone: As low as -70°C (depending on model).
Optional water-cooling systems for high-load applications.
User-Friendly Interface
7-inch touchscreen HMI for parameter setup, cycle programming, and diagnostic alerts.
RS-485/USB communication for data export and integration with PC software.
Application Scenarios
EV Battery Validation: Cycle life testing under thermal shock and fast-charging conditions.
Grid Storage Testing: Long-term deep discharge and fire resistance evaluation.
Aerospace Certification: High-altitude pressure simulation and vibration resistance.
Workflow Integration
Pre-Test Setup: Define parameters (voltage limits, cycle count) via intuitive touchscreen.
Test Execution: Chamber automates charge-discharge cycles while monitoring safety metrics.
Post-Test Analysis: Export Excel data for capacity fade analysis and compliance reporting.
Compliance Standards
IEC 60068-2-14 (Environmental Testing)
MIL-STD-810G (Mechanical Vibration)
GB/T 2423.22 (Temperature Cycling)
IEC 62619
GB/T 31486
Why Choose Us?
ISO 9001 Certified Manufacturer with 13+ years of R&D experience
Customizable Configurations: Support non-standard sizes and temperautre ranges per project needs.
Global Compliance: Meets IEC, GB, GJB, and UL standards
Global Recognition: Trusted by Fortune 500 companies and R&D labs worldwide.