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Hangzhou Joule Intelligent Technology Co., Ltd

  • E-mail

    hzjoule@163.com

  • Phone

    19012707638

  • Address

    No. 598 Hejing Road, Hezhuang Street, Qiantang District, Hangzhou City, Zhejiang Province

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Lithium battery adiabatic temperature rise test - Hangzhou Joule Intelligent Technology Co., Ltd

NegotiableUpdate on 02/07
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Overview
The adiabatic temperature rise test of lithium batteries has the characteristics of simple operation, smooth experimental start-up and operation, accurate experimental data collection, and reliable data analysis. Integrated with thermal and electrical abuse functions, it synchronously collects data on battery voltage, current, charge, temperature, pressure, and time under various abuse conditions.
Product Details

Adiabatic temperature rise test for lithium batteries Introduction

The lithium battery adiabatic temperature rise tester is an instrument specially developed for the GB/T36276-2023 standard "Lithium ion batteries for electric energy storage". This instrument provides accurate data for lithium battery enterprises to optimize battery design, guide thermal management system design, and establish battery thermal models.


Adiabatic temperature rise test for lithium batteries Test Standard

GB/T36276-2023


Product specifications and technical parameters

Product Model

ARC Titans-Eco

Container diameter

450

Container depth

550

Temperature control range

40℃~150℃

Temperature Control Mode

Adiabatic temperature rise mode

Temperature rise rate detection threshold

/

Temperature tracking rate

/

Temperature display resolution

0.001℃

Temperature stability of calorimeter chamber

±0.002℃/min

temperature fluctuation

≤±0.05℃

Furnace cover opening method

manual

Optional features

Module Name

function

Charging and discharging module

Excessive use of electricity leads to thermal runaway, as well as testing for heat generation during charging and discharging

Explosion proof module

3.5mm stainless steel explosion-proof box

Product Features

Thermal insulation environment simulation: isolate external heat exchange and accurately measure battery temperature changes.

High precision temperature control: Fast response to temperature changes, high temperature control accuracy, ensuring reliable data.

In situ calibration of sensors: The consistency between the sample and the furnace thermocouple is tested in situ calibration, without the need for frequent temperature baseline.


Installation requirements

Electrical requirements

380V

Venue requirements

Flat ground, recommended on the first floor

Environmental Requirements

The equipment should be placed horizontally in a well ventilated laboratory, with sufficient space around for operation and maintenance.

Temperature: 25 ± 5 ° C, Humidity: 50 ± 25% RH

environmental requirements

During the experiment, smoke will be generated. It is recommended to install a smoke collection hood and exhaust duct above the equipment to solve the problem of smoke emissions