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Battery slurry solid content test device and test method

A test device and test method technology, applied in the direction of weighing by removing certain components, can solve the problems that copper and aluminum foil cannot be reused, affect the test results, and the copper and aluminum foil is easy to oxidize, so as to avoid storage stability and reduce spillage. Splashing and low oxidation activity

Inactive Publication Date: 2019-06-07
ETRUST POWER ETP GRP LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] There are certain shortcomings in the above two methods respectively: although the method of using copper foil (or aluminum foil) as a carrier is simple, the copper and aluminum foil cannot be reused. It is easy to oxidize under baking, which affects the test results, resulting in certain test errors. In addition, the instrument test defect of the infrared moisture tester is that its price is relatively expensive. If the above problems can be solved by making certain improvements to the test carrier, a win-win situation will be achieved. will solve the above problem

Method used

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  • Battery slurry solid content test device and test method
  • Battery slurry solid content test device and test method
  • Battery slurry solid content test device and test method

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Embodiment 1

[0020] Please refer to figure 1 As shown, the present invention discloses a battery slurry solid content test device, specifically a concave tray, the concave tray includes a circular tray bottom with a diameter of 5 cm and an outer edge; the outer edge is 1 cm higher than the bottom of the tray On the one hand, the design of this size avoids easy spillage of the battery slurry to be tested during placement and measurement, and on the other hand, it achieves a balance of convenience in taking and placing; the design of the bottom of the circular tray does not have too many corners, and it is easy to clean.

[0021] The concave tray is prepared from a composite material, and the specific preparation raw materials of the composite material include the following components: C: 0.03%, Si: 0.6%, Mn: 2%, Cr: 19.0%, Ni: 9%, N : 1.0%, Fe: 68.37%.

Embodiment 2

[0023] Please refer to figure 1 As shown, the present invention discloses a battery slurry solid content testing device, specifically a concave tray, the concave tray includes a circular tray bottom with a diameter of 5.5 cm and an outer edge; the outer edge is higher than the tray bottom 1cm; on the one hand, the design of this size avoids easy spillage of the battery slurry to be tested during placement and measurement, and on the other hand, it achieves a balance of convenience in taking and placing; the design of the circular tray bottom does not have too many corners, which is easy to clean.

[0024] The concave tray is prepared from a composite material, and the specific preparation raw materials of the composite material include the following components: C: 0.06%, Si: 0.8%, Mn: 2.1%, Cr: 22.0%, Ni: 11.5%, N : 1.2%; Fe: 62.34%.

Embodiment 3

[0026] Please refer to figure 1 As shown, the present invention discloses a battery slurry solid content test device, specifically a concave tray, the concave tray includes a circular tray bottom with a diameter of 6 cm and an outer edge; the outer edge is 1.5 cm higher than the bottom of the tray. cm; on the one hand, the design of this size avoids easy spillage of the battery slurry to be tested during placement and measurement, and on the other hand, it achieves a balance of convenience in taking and placing; the design of the bottom of the circular tray does not have too many corners, which is easy to clean.

[0027] The concave tray is prepared from a composite material, and the specific preparation raw materials of the composite material include the following components: C: 0.05%, Si: 0.7%, Mn: 2.05%, Cr: 20.5%, Ni: 10%, N : 1.1%; Fe: 65.6%.

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Abstract

The invention discloses a battery slurry solid content test device and test method. The device is specifically a concave type tray. The concave type tray comprises a tray bottom and an external rim. The concave type tray is made of a composite material. The specific raw materials for preparing the composite material comprise the following ingredients: C: 0.03-0.06%, Si: 0.6 -0.8%, Mn: 2-2.1%, Cr:19.0-22.0%, Ni: 9-11. 5%, N: 1.0-1.2%, and the balance being Fe. Compared with the prior art, the device has the following advantages: 1) the design of the concave type tray structure effectively ensures storage stability of the slurry to be tested in the taking and putting, testing and transporting process, and reduces splashing; 2) the test device prepared through the composite material is low in oxidation activity, is high in high-temperature tolerance and can maintain constant weight before or after baking, thereby reducing errors caused by the device itself of the test method; and 3) thetest method is simple, and the device is low in cost.

Description

technical field [0001] The invention relates to the testing field of lithium ion battery slurry, in particular to a battery slurry solid content testing carrier and a testing method. Background technique [0002] At present, there are two main methods for testing the solid content of lithium-ion battery slurry. One is to use copper foil (or aluminum foil) as a carrier. Calculate the solid content by weight before and after baking; the other is to use an infrared moisture tester, smear the slurry on the copper foil (or aluminum foil), put it in the tray, click to heat, and the instrument will automatically display the solid content data after drying. [0003] There are certain shortcomings in the above two methods respectively: although the method of using copper foil (or aluminum foil) as a carrier is simple, the copper and aluminum foil cannot be reused. It is easy to oxidize under baking, which affects the test results, resulting in certain test errors; in addition, the i...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N5/04
Inventor 彭邦葱张磊李星
Owner ETRUST POWER ETP GRP LTD
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