Battery Pack Thermal Shock Heat Abuse Testing Chamber Lithium Impact Tester

Customization: Available
After-sales Service: Support Operation Guidance
Power Supply: 220/380V

Product Description

📋 Basic Info.
Model NO.MBS-RC CertificationCE
Warranty1 Year OriginChina
UsesBattery Thermal Shock Testing PurposeBattery Heat Abuse Tester
CustomizeAcceptable HS Code8419899090
Specification50*50*50cm TrademarkMENTEK
🚀 Product Description

Battery Pack Thermal Shock Heat Abuse Testing Chamber Lithium Impact Tester

Relevant standard test requirements:
Meet the standards: IEC 62133-2012, UL 1642, United Nations 38.3 and 31241-2014.
Standard heat abuse: Put the battery after fully charged into the test chamber. The heating rate is (5±2)ºC/min. When the temperature reaches 130ºC±2ºC, continue for 30min. The battery must not catch fire or explode.

Battery Pack Thermal Shock Heat Abuse Testing Chamber
Model MBS-RC125 MBS-RC216 MBS-RC512 MBS-RC1000
Inner box size (W*H*D mm) 500*500*500 600*600*600 800*800*800 1000*1000*1000
Outer box size (W*H*D mm) 700*1250*600 820*1380*800 1020*1580*1000 1250*1800*1150
Temperature range Rt ºC to 150ºC
Temperature fluctuation ±0.5ºC
Warm-up time +RTºC rises to +150ºC about (5ºC/min ±2ºC)
Observation window 350*350mm (20mm Explosion-proof glass)
Auxiliary functions Explosion-proof pressure relief device, smoke exhaust device

Note: Custom tailor the dimensions of the chamber to seamlessly align with your operational needs.

🛡️ Main Features
01.
Explosion-proof and pressure relief port: When the battery explodes, the pressure is released to prevent deformation of the box.
02.
Safety Reinforcement: Box door plus explosion-proof chain, glass window plus explosion-proof grille to prevent debris splashing.
03.
Insulation Treatment: Teflon treatment of the inner box and test rack for high temperature resistance and short-circuit prevention.

Structural Technology

Crafted with premium galvanized steel and enhanced with advanced electrostatic powder spray baking paint. The inner box is made from imported SUS #304 stainless steel with full argon arc welding to minimize leakage.

Structural Tech
Refrigeration System

Refrigeration System Technology

3D-optimized management utilizing pioneering frequency conversion control technology. The system adjusts compression speed to align perfectly with real-time test chamber loads, optimizing energy efficiency.

Energy Efficiency

Harnesses advanced PID and PWM-driven VRF technology with electronic expansion valves. Reduces energy consumption by up to 30% in low-temperature scenarios by eliminating the need for auxiliary heating.

Energy Saving
Cold Circuit

Innovative Cold Circuit Technology

Employs globally renowned electrical components like Omron and Germany Phoenix Terminal. High-quality soft copper wire and standardized torque connections ensure safety and long-term durability.

Standardized Piping Process

Uses Italian imported pipe bending machinery to reduce welding points and oxides. High-quality steel pipe piping and stringent welding standards guarantee unrivaled stability.

Piping Process
Shockproof Design

Shockproof Design

Incorporates precision-engineered arc bends and specialized nylon fixed clamps for refrigeration copper pipes to prevent deformation and leakage from vibrations or temperature fluctuations.

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Frequently Asked Questions
❓ What safety standards does the battery testing chamber meet?
The chamber meets international standards including IEC 62133-2012, UL 1642, UN 38.3, and GB/T 31241-2014 for battery heat abuse testing.
❓ What are the key safety features for explosion protection?
It includes an explosion-proof pressure relief port, door safety chains, explosion-proof window grilles, and smoke exhaust devices to ensure operator safety.
❓ Can the dimensions of the testing chamber be customized?
Yes, we offer custom tailoring for chamber dimensions to align with your specific operational needs and testing parameters.
❓ How does the refrigeration system achieve energy savings?
By using PID+PWM driven VRF technology and frequency conversion, the system adjusts cooling capacity to match the load, saving up to 30% energy.
❓ What materials are used for the interior of the chamber?
The inner box is constructed from high-quality SUS #304 mirror-finished stainless steel for durability and heat resistance.
❓ Is it possible to export the test data?
Yes, the chamber is equipped with a USB interface that allows for easy export of test data for further analysis.

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