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Thermal Runaway Fire Propagation in Cell Energy Storage Systems by UL 9540A Tester

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Thermal Runaway Fire Propagation in Cell Energy Storage Systems by UL 9540A Tester

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Brand Name :AI
Model Number :TUL9540A
Certification :ISO
Place of Origin :CHINA
MOQ :1 SET
Price :negotiable
Payment Terms :Western Union, T/T, L/C
Supply Ability :20 sets per month
Delivery Time :60 days
Packaging Details :Plywood case
Test standard :UL 9540A
Test object :cell,battery etc
Function :evalutate Thermal Runaway Fire Propagation in Cell Energy Storage Systems
Capacity :82L
Material :Q345R high-pressure resistant steel plate
Max pressure :7Mpa
Heat rate :4c~7c/min
Diameter of cabin :450mm
Color :Grey
Control :Computer + LabVIEW
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Introduction
The
Thermal Runaway Fire Propagation Tester is mainly used for lithium battery thermal runaway combustion and even explosion experiments. Lithium battery burns and explodes rapidly, instantly releases huge energy, and releases a variety of toxic and harmful gases. Therefore, in the experiment in a sealed environment, it is necessary to design the compression tank according to the process of explosion shock pressurization.
The
Thermal Runaway Fire Propagation Tester is composed of the following parts: explosion chamber, heating system, pressure detection system, temperature detection system, air purging system, nitrogen charging system, vacuum pumping system, gas sampling system.


Standards:

UL 9540A, the Standard for Test Method for Evaluating Thermal Runaway Fire Propagation in Battery Energy Storage Systems, to help manufacturers have a means of proving compliance with the new regulations.



Features:
1.The test chamber is designed as a cylindrical tank with a volume of about 82L, which is composed of chamber body, chamber door, support feet, chamber back cover, rotary lifting cover, etc.
2.The inner diameter of the cylinder of the experimental cabin is designed to be 450mm, with a total length of about 500mm. It is made of Q345R high-pressure resistant steel plate, with an overall impact pressure of more than 5MPa and a maximum pressure of 7MPa.
3.The hatch is connected with the cylinder through the rotating boom device, which can be unscrewed in the right direction. The diameter of the hatch hole is 450mm, which is consistent with the cylinder, which is convenient for operation. After the cabin door is closed, the bolts are tightened with rings, which can withstand the maximum impact pressure of 5MPa without leakage.
4.Electric heating forced failure device:
(1) Heating control system, which can control the maximum power of 2KW.
(2) Heating temperature and heating rate can be set. Heating rate 4c~7c/min.
(3) Computer automatically controls heating rate testing system.
5.Measuring system
(4) Computer + LabVIEW test software system.
(5) Failure test mode of computer automatic electric heating.
(6) The
Thermal Runaway Fire Propagation Tester is equipped with oxygen concentration monitoring system. Imported oxygen sensor.

Thermal Runaway Fire Propagation in Cell Energy Storage Systems by UL 9540A Tester

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