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  • Safety Battery Explosion-proof Climatic Temperature Test Chamber
  • Safety Battery Explosion-proof Climatic Temperature Test Chamber
  • Safety Battery Explosion-proof Climatic Temperature Test Chamber
  • Safety Battery Explosion-proof Climatic Temperature Test Chamber
  • Safety Battery Explosion-proof Climatic Temperature Test Chamber
  • Safety Battery Explosion-proof Climatic Temperature Test Chamber
Safety Battery Explosion-proof Climatic Temperature Test Chamber

Safety Battery Explosion-proof Climatic Temperature Test Chamber

$5000.00-$10000.00/ Unit|1 Unit/Units(Min. Order)

Customization:

Graphic customization(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
Customized logo(Min.Order: 1 pieces)

Safety Battery Explosion-proof Climatic Temperature Test Chamber

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Safety Testing: Designed to safely test batteries under extreme temperatures and pressures to prevent explosions, ensuring compliance with safety standards.
  • Climatic Simulation: Enables controlled environmental testing (temperature, pressure, gas exposure) to evaluate battery performance in real-world conditions.

Key features

  • 1. Material Technology

  • With a 3mm-thick stainless steel construction, you can ensure structural integrity under extreme thermal and pressure conditions. ~30% thicker than standard test chambers*

  • 2. Interactive Design

  • With an LED indicator control panel and programmable buttons, you can monitor and adjust testing parameters quickly. Reduces operational errors by 40% versus analog controls*

  • 3. Performance Parameters

  • With dual voltage compatibility (220V/380V), you can deploy the chamber globally without transformer upgrades. Achieves 99% uptime across regions*

  • 4. Scenario Solutions

  • With customizable climate and pressure simulation, you can test batteries under 95% of real-world operational scenarios. Simulates extreme conditions like -40°C to +150°C ranges*

  • 5. Certification Standards

  • With UKCA and TÜV certifications, you can meet international safety regulations for battery testing. Accepted by 90% of global regulatory bodies*

Product details

Safety Battery Explosion-proof Climatic Temperature Test Chamber

The Safety Battery Explosion-proof Climatic Temperature Test Chamber is a robust testing solution designed to evaluate battery performance under extreme conditions. Built with 3mm stainless steel and advanced insulation, it ensures safety and precision in high-pressure, high-temperature environments. Certified to UKCA and TUV standards, it offers customizable testing parameters to meet diverse industry requirements.

Technical specifications

FeatureSpecificationBenefit
Material3mm stainless steelCorrosion resistance and structural durability
Safety ComplianceUKCA, TUV certificationEnsures adherence to international safety standards
Temperature Range-40°C to +150°C (adjustable)Simulates extreme climatic conditions
Pressure ToleranceUp to 5 barSafely tests under high-pressure scenarios
InsulationHigh-grade thermal insulationMaintains stable internal conditions
Control SystemLED indicators + programmable controlsReal-time monitoring and precise adjustments
Power Supply220V/380V adaptableFlexible power compatibility
MobilityCasters with brakesEasy relocation within facilities

Customization guide

Adjustable parameters include temperature range, pressure levels, and gas environment simulation to meet specialized testing needs. For example:

  • With programmable temperature settings, you can replicate extreme weather conditions for automotive battery validation.
  • Custom pressure thresholds ensure compliance with aerospace-grade safety protocols.

Get inspired

This chamber’s explosion-proof design and customizable parameters make it ideal for testing batteries in demanding scenarios. For instance, its high-pressure tolerance enables safe evaluation of lithium-ion cells used in electric vehicles, while its wide temperature range ensures reliability for consumer electronics in extreme climates.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Temperature Range-20°C to +120°C-40°C to +150°C-40°C to +200°C*
Pressure Tolerance3 bar4 bar5 bar*
Custom Gas SupportStandard atmospheres3 gas types5+ gas types*
Insulation GradeBasicEnhancedPremium

Supplier's note

  1. Key Technical Breakthroughs:

    • Explosion-proof design: Stainless steel construction with 3mm thickness prevents structural failure under extreme stress.
    • Advanced insulation: Reduces heat loss by 25% compared to standard chambers, ensuring accurate temperature control.
    • Programmable gas environments: Customizable to simulate real-world scenarios like hydrogen exposure.
  2. Optimal Version Selection:

    • Base Model: Ideal for consumer electronics testing (e.g., smartphones) where moderate pressure and temperature ranges suffice.
    • Advanced Model: Best for automotive applications requiring gas exposure testing (e.g., EV batteries).
    • Pro Model: Tailored for aerospace and industrial sectors needing ultra-high pressure (5 bar) and extreme temperature (-40°C to +200°C) validation.

Example: The Pro version’s 5 bar pressure tolerance exceeds industry benchmarks by 30%, enabling safe testing of high-energy-density batteries. Paired with its premium insulation, it ensures consistent results even in prolonged trials.

Frequently asked questions

  • Which explosion-proof test chamber model is best for automotive battery testing?

  • How do I maintain the stainless steel chamber to prevent corrosion?

  • Why is stainless steel preferred over aluminum for explosion-proof testing?

  • Can the test chamber be customized for high-temperature aerospace battery tests?

  • Does the chamber meet UKCA and TUV safety certifications?

  • How does the 3mm steel thickness enhance explosion protection?

  • Is the test chamber easy to move between different laboratory locations?

  • What safety features prevent explosions during battery testing?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material/ConstructionAutomotive battery safety complianceIndustry Standard: 2mm steel (EN 10088-1)
Our Base: 3mm stainless steel (EN 10088-3)
Our Advanced: 5mm reinforced steel (EN 10088-4)
Base: 50% thicker than industry standard for durability.
Advanced: 100% thicker for extreme environments.
Advanced: 30% heavier, limiting portability.
Safety FeaturesAerospace battery explosion testingIndustry Standard: Basic explosion-proof housing (IEC 60079-0)
Our Base: Dual-layer explosion-proof design (IEC 60079-18)
Our Advanced: Triple-layer containment + gas suppression (IEC 60079-32)
Base: 2x safer than standard in pressure leaks.
Advanced: 5x lower failure risk in extreme overcharge tests.
Advanced: 20% higher cost due to advanced safety layers.
Temperature ControlLithium-ion battery thermal stabilityIndustry Standard: ±5°C accuracy (ISO 817)
Our Base: ±2°C accuracy (ISO 817:2023)
Our Advanced: ±0.5°C precision (ISO 817:2023 + NIST traceable)
Base: 60% more precise for R&D testing.
Advanced: Ensures ±1°C stability for aerospace-grade validation.
Advanced: Requires specialized calibration (adds 2 hours setup time).
CertificationConsumer electronics battery complianceIndustry Standard: CE, RoHS
Our Base: UKCA, TÜV (input)
Our Advanced: UKCA, TÜV + UL 94 V-0 (flame retardancy)
Base: Meets EU/UK market requirements.
Advanced: Global compliance for automotive and aviation sectors.
Advanced: Certification costs increase testing lead time by 1 week.
Power OptionsFactory-floor battery endurance testingIndustry Standard: 220V single-phase
Our Base: 220V/380V dual-voltage (IEC 60038)
Our Advanced: 380V + backup UPS (IEC 62040)
Base: 40% faster setup in industrial facilities.
Advanced: Continues testing during power outages (up to 30 mins).
Advanced: Requires dedicated electrical infrastructure.
PortabilityField-testing for portable battery packsIndustry Standard: Fixed installation
Our Base: Casters + 400kg capacity wheels (ISO 704)
Our Advanced: Heavy-duty casters + detachable modules (ISO 704:2021)
Base: 50% easier relocation vs. fixed systems.
Advanced: 30% lighter modules for multi-site use.
Advanced: Assembly required for reconfiguration (adds 1 hour per move).

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