Neware WFB-220L-2K Explosion-Proof Chamber with Constant Temperature for Battery Testing, ENWFB220L2KEPC

SKU: ENWFB220L2KEPC

Neware WFB-220L-2K Explosion-Proof Chamber with Constant Temperature for Battery Testing, ENWFB220L2KEPC — Neware WFB-220L-2K dual-compartment explosion-proof battery chamber with two 220 L test spaces, reinforced safety construction, and controlled 25°C operation.

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Neware WFB-220L-2K Explosion-Proof Chamber with Constant Temperature for Battery Testing, ENWFB220L2KEPC

Product Type: Explosion-Proof Constant-Temperature Battery Test Chamber
Brand: Neware
Part Number: ENWFB220L2KEPC

Product Introduction

The Neware WFB-220L-2K is a dual-compartment explosion-proof chamber for battery safety and abuse-testing workflows. Reinforced construction and controlled exhaust provisions help contain hazards associated with overcharge, short-circuit, and thermal-runaway experiments.

Key Features

Two 220 L compartments — separated test spaces within one cabinet
Explosion-resistant construction — reinforcement bars, safety latches, and protected observation windows
25°C constant-temperature operation — ±1°C specified fluctuation and ±2°C deviation
Forced exhaust capability — supports removal of smoke and gases after a test
Optional fire suppression — automatic extinguishing configuration available

Specification

ParameterSpecification
Part Number
  • ENWFB220L2KEPC
Power
  • AC110V or AC220V±10%, single phase, 50/60Hz, 800W
Constant Temperature 
  • 25℃
Temperature Fluctuation
  • ±1℃
Temperature Deviation
  • ±2℃
Nominal Chamber Volume
  • 220 L * 2 (Inner Size: W780mm × D680mm × H220mm)
Dimension
  • W950mm × D980mm × H1180mm
Weight
  • ~200 kg

Applications

Battery abuse testing, overcharge and forced-discharge studies, short-circuit testing, thermal-runaway observation, and safety validation.

References:

T. Shan, et al., Explosion behavior investigation and safety assessment of large-format lithium-ion pouch cells, Journal of Energy Chemistry, 2022, 72, 241-257

T. Shan, et al., Understanding the boundary and mechanism of gas-induced explosion for lithium-ion cells: Experimental and theoretical analysis, Journal of Energy Chemistry, 2023, 86, 546-558.

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