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Ensuring Product Safety and Reliability: Comprehensive Testing Solutions

Ensuring Product Safety and Reliability: Comprehensive Testing Solutions

2025-04-09

At Dongguan Precision Test Equipment Co., Ltd., we understand the paramount importance of product safety and reliability across various industries. To help manufacturers ensure their products meet stringent quality standards and withstand real-world conditions, we offer a comprehensive range of environmental test chambers designed to comply with a multitude of international and national testing standards. This document serves as a guide to the key testing standards our equipment is built to meet, particularly focusing on the critical area of New Energy Battery Testing and other essential environmental simulations.

 

I. Powering the Future Safely: New Energy Battery Testing Standards

 

The safety and performance of new energy batteries are critical. Our test chambers are designed to facilitate testing according to the following key standards:

  • Mechanical Impact Testing:

    • UL 1642: Standard for Lithium Batteries - Mechanical Tests - Impact Test
    • UL 2054-2005: Household and Commercial Batteries - Mechanical Tests - Impact Test
    • UN 38.3: Recommendations on the Transport of Dangerous Goods - Manual of Tests and Criteria - Section 38.3 - Impact Test
    • GB/T 18287-2000: General Specification for Lithium-ion Batteries for Cellular Telephones - Heavy Object Impact Test
    • SJ/T 11169-1998: Standard for Lithium Batteries - Impact Test
    • YD 1268-2003: Safety Requirements and Test Methods for Lithium Batteries and Chargers for Mobile Communication Handsets - Impact Test
    • SJ/T 11170-1998: Safety Standard for Household and Commercial Batteries - Mechanical Tests - Impact Test
  • Crush (Squeeze) Testing:

    • GB/T 2900.11-1988: Safety Performance Inspection Specification for Lithium-ion Batteries for Miner's Lamps - Crushing
    • YD 1268-2003: Safety Requirements and Test Methods for Lithium Batteries and Chargers for Mobile Communication Handsets - Crush Resistance Performance
    • SJ/T 11169-1998: Standard for Lithium Batteries - Crush Test
    • UL 1642: Standard for Lithium Batteries - Compression Test
    • GB/T 8897.4-2002: Primary Batteries - Part 4: Safety of Lithium Batteries - Crushing
    • SJ/T 11170-1998: Safety Standard for Household and Commercial Batteries - Crushing
    • YDB 032-2009: Backup Lithium-ion Battery Packs for Communication Use - Resistance to Extrusion
    • UL 2054: Standard for Household and Commercial Batteries - Compression Test
    • QB/T 2502-2000: General Specification for Lithium-ion Rechargeable Batteries - Crushing (Internal Short Circuit) Test
  • Puncture (Nail Penetration) Testing:

    • GB/T 18332.2-2001: Nickel-metal Hydride Rechargeable Batteries for Electric Road Vehicles - Puncture Test
    • MT/T 1051-2007: Lithium-ion Batteries for Miner's Lamps - Nail Penetration Test

II. Simulating Diverse Climatic Conditions: High & Low Temperature and Humidity Testing

Our High and Low Temperature Test Chambers, Constant Temperature and Humidity Test Chambers, and High and Low Temperature Humidity Test Chambers are engineered to meet the requirements of the following standards, ensuring reliable performance evaluation under various climatic stresses:

  • GB/T 5170.5-2008
  • GB/T 10586-2006
  • GB/T 2423.1-2008 (Test A: Cold)
  • GB/T 2423.2-2008 (Test B: Dry Heat)
  • GB/T 2423.3-2006 (Test Ca: Steady State Damp Heat)
  • GB/T 2423.4-2008 (Test Db: Alternating Damp Heat)

III. Withstanding Rapid Temperature Changes: Thermal Shock Testing

Our Thermal Shock Test Chambers are designed to subject products to rapid and extreme temperature variations, adhering to and satisfying the requirements of the following standards:

  • GB/T 2423.1-2001: Environmental testing for electric and electronic products - Part 2: Test methods - Test A: Cold
  • GB/T 2423.2-2001: Environmental testing for electric and electronic products - Part 2: Test methods - Test B: Dry heat
  • GB/T 2423.22-1989: Environmental testing for electric and electronic products - Part 2: Test methods - Test N: Change of temperature
  • GJB 150.3-86: Environmental test methods for military equipment - Low temperature test
  • GJB 150.4-86: Environmental test methods for military equipment - High temperature test
  • GJB 150.5-86: Environmental test methods for military equipment - Temperature shock test
  • GJB 360.7-87: Test methods for electronic components - Method 405: Temperature shock test
  • GJB 367.2-87: Test methods for electronic equipment - 405 Temperature shock test
  • SJ/T 10187-91: Y73 series temperature cycling test chambers - Single chamber type
  • SJ/T 10186-91: Y73 series temperature cycling test chambers - Two chamber type
  • IEC 68-2-14: Environmental testing - Part 2: Tests - Test N: Change of temperature
  • GB/T 2424.13-2002: Environmental testing for electric and electronic products - Part 2: Test methods - Guidance for temperature cycling tests
  • GB/T 2423.22-2002: Environmental testing - Part 2: Test methods - Test N: Change of temperature
  • QC/T 17-92: General rules for weathering test of automotive parts
  • EIA 364-32: Thermal Shock (Temperature Cycling) Test Procedure for Electrical Connectors and Sockets Environmental Effects Assessment

IV. Accelerating Failure Analysis: Highly Accelerated Life Testing (HAST) Chambers

Our Highly Accelerated Life Testing (HAST) Chambers are designed to accelerate the aging process of products under controlled high temperature and high humidity conditions, complying with:

  • GB/T 5170.2-1996: Environmental testing equipment for electric and electronic products - Part 2: Temperature chambers
  • IEC 60068-2-66-1994: Environmental testing - Part 2-66: Tests - Test Cy: Damp heat, steady state, accelerated test primarily intended for components

V. Evaluating Resistance to Sunlight: Ultraviolet Weathering Test Chambers

Our Ultraviolet Weathering Test Chambers simulate the damaging effects of sunlight, rain, and dew to assess the durability of materials exposed to outdoor environments, meeting the requirements of standards such as:

  • ASTM G154: Standard Practice for Operating Fluorescent Ultraviolet (UV) Lamp Apparatus for Exposure of Nonmetallic Materials
  • ASTM D4587-91:
  • ISO 11507/4892-3: Plastics - Laboratory sources of light - Part 3: Fluorescent UV lamps
  • NE 927-6
  • ASTM G 153: Standard Practice for Operating Enclosed Carbon Arc Light Apparatus for Exposure of Nonmetallic Materials
  • ASTM D 4329: Standard Practice for Fluorescent UV Exposure of Plastics
  • ASTM D 4799: Standard Practice for Accelerated Weathering Test Conditions and Procedures for Bituminous Materials (Xenon Arc Method)
  • ASTM D 4587: Standard Practice for Conducting Determinations of Resistance to Industrial Fluids
  • SAE J 2020: Accelerated Exposure of Automotive Exterior Materials Using a Fluorescent UV and Condensation Apparatus
  • ISO 4892:

VI. Your Partner in Compliance and Reliability: Dongguan Precision

At Dongguan Precision Test Equipment Co., Ltd., we are committed to providing high-quality, reliable environmental test chambers that empower manufacturers to meet the stringent demands of various industries. Our equipment is designed with precision engineering and adheres to a wide array of national and international testing standards, ensuring the safety, performance, and longevity of your products.

Contact us today to discuss your specific testing requirements and discover how our comprehensive solutions can help you achieve compliance and build greater confidence in the reliability of your products.