IP Library Patent Application 18591020
Patent Application
App. No. 18/591,020

DETECTION METHOD AND DETECTION APPARATUS FOR ELECTRODE PLATE AND STACKING SYSTEM

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Patent No.
US None
App. No.
18/591,020
Abstract

This application provides a detection method for electrode plate, a detection apparatus for electrode plate, a stacking system, a detection device, and a computer-readable storage medium, where the electrode plate includes a coated portion and an uncoated portion located on at least one side of the coated portion in a longitudinal direction. The detection method includes: step S1000: obtaining dimensional parameters D 1 . . . D N at different detection positions P 1 . . . P N of the uncoated portion in a transverse direction perpendicular to the longitudinal direction; and step S2000: comparing the dimensional parameters D 1 . . . D N with a dimensional detection standard S to determine whether the uncoated portion is folded, where N is a positive integer, and N is greater than or equal to 2.

Claims (49)

1 . A detection method for electrode plate, wherein the electrode plate comprises a coated portion and an uncoated portion located on at least one side of the coated portion in a longitudinal direction; and the detection method comprises:

step S1000: obtaining dimensional parameters D 1 . . . D N at different detection positions P 1 . . . P N of the uncoated portion in a transverse direction perpendicular to the longitudinal direction; and

step S2000: comparing the dimensional parameters D 1 . . . D N with a dimensional detection standard S to determine whether the uncoated portion is folded,

wherein N is a positive integer, and N is greater than or equal to 2.

2 . The detection method according to claim 1 , wherein the dimensional parameters are dimensional parameters of the uncoated portion in the longitudinal direction.

3 . The detection method according to claim 2 , wherein step S1000 comprises:

step S1100: driving the electrode plate to move along the transverse direction;

and step S1200: obtaining, during movement of the electrode plate along the transverse direction, the dimensional parameters D 1 . . . D N at the different detection positions P 1 . . . P N of the uncoated portion of the electrode plate.

4 . The detection method according to claim 1 , wherein before step S2000, the detection method further comprises:

step S3000: obtaining a dimensional detection standard S of the uncoated portion of the electrode plate.

5 . The detection method according to claim 4 , wherein step S3000 comprises:

step S3100: obtaining dimensional detection standards S 1 . . . S N at the different detection positions P 1 . . . P N of the uncoated portion of the electrode plate.

6 . The detection method according to claim 5 , wherein step S3100 comprises:

step S3110: determining absolute positions P A1 . . . P AN of each of the different detection positions P 1 . . . P N ; and

step S3120: obtaining, based on the determined absolute positions P A1 . . . P AN , the dimensional detection standards S 1 . . . S N at the different detection positions P 1 . . . P N of the uncoated portion of the electrode plate.

7 . The detection method according to claim 6 , wherein the electrode plate comprises at least one electrode plate having a preset mark; and step S3110 comprises:

step S3111: detecting the at least one electrode plate having the preset mark; and

step S3112: determining, based on positions of the different detection positions P 1 . . . P N relative to the preset mark, the absolute positions P A1 . . . P An of each of the different detection positions P 1 . . . P N .

8 . The detection method according to claim 1 , wherein step S2000 comprises:

step S2100: determining that the uncoated portion is folded in response to M consecutive dimensional parameters in the dimensional parameters D 1 . . . D N being less than the dimensional detection standard S,

wherein M is a positive integer, and M is greater than or equal to 1 and less than or equal to N.

9 . The detection method according to claim 1 , wherein step S2000 comprises:

step S2200: determining that the uncoated portion is folded in response to a quantity being greater than a preset threshold, wherein the quantity is a quantity of dimensional parameters which are less than the dimensional detection standard S in the dimensional parameters D 1 . . . D N , or

determining that the uncoated portion is unfolded in response to a quantity being not greater than a preset threshold, wherein the quantity is a quantity of dimensional parameters which are less than the dimensional detection standard S in the dimensional parameters D 1 . . . D N .

10 . The detection method according to claim 9 , wherein the dimensional detection standard S is M1/M2 of a nominal dimension of the uncoated portion in the longitudinal direction, M1 and M2 are positive integers, and M2 is not less than M1; and the preset threshold is NM1/M2.

11 . A detection apparatus for electrode plate, wherein the electrode plate comprises a coated portion and an uncoated portion located on at least one side of the coated portion in a longitudinal direction; and the detection apparatus comprises:

a parameter obtaining unit configured to obtain dimensional parameters D 1 . . . D N at different detection positions P 1 . . . P N of the uncoated portion in a transverse direction perpendicular to the longitudinal direction; and

an electrode plate detection unit configured to compare the dimensional parameters D 1 . . . D N with a dimensional detection standard S to determine whether the uncoated portion is folded,

wherein N is a positive integer, and N is greater than or equal to 2.

12 . The detection apparatus according to claim 11 , wherein the parameter obtaining unit is configured to obtain dimensional parameters of the uncoated portion in the longitudinal direction.

13 . The detection apparatus according to claim 12 , further comprising: an electrode plate driving unit configured to drive the electrode plate to move along the transverse direction, wherein the parameter obtaining unit is configured to obtain, during movement of the electrode plate along the transverse direction, the dimensional parameters D 1 . . . D N at the different detection positions P 1 . . . P N of the uncoated portion of the electrode plate.

14 . The detection apparatus according to claim 11 , further comprising: a standard obtaining unit configured to obtain a dimensional detection standard S of the uncoated portion of the electrode plate.

15 . The detection apparatus according to claim 14 , wherein the standard obtaining unit is configured to obtain dimensional detection standards S 1 . . . S N at the different detection positions P 1 . . . P N of the uncoated portion of the electrode plate.

16 . The detection apparatus according to claim 15 , wherein the standard obtaining unit further comprises a positioning module configured to determine absolute positions P A1 . . . P AN of each of the different detection positions P 1 . . . P N ; and

the standard obtaining unit is configured to obtain, based on the determined absolute positions P A1 . . . P AN , the dimensional detection standards S 1 . . . S N at the different detection positions P 1 . . . P N of the uncoated portion of the electrode plate.

17 . The detection apparatus according to claim 16 , wherein the electrode plate comprises at least one electrode plate having a preset mark; and the positioning module further comprises:

a mark detection part configured to detect the at least one electrode plate having the preset mark; and

a position determining part configured to determine, based on positions of the different detection positions P 1 . . . P N relative to the preset mark, the absolute positions P A1 . . . P AN of each of the different detection positions P 1 . . . P N .

18 . The detection apparatus according to claim 11 , wherein the electrode plate detection unit is configured to determine that the uncoated portion is folded in response to M consecutive dimensional parameters in the dimensional parameters D 1 . . . D N being less than the dimensional detection standard S,

wherein M is a positive integer, and M is greater than or equal to 1 and less than or equal to N.

19 . The detection apparatus according to claim 11 , wherein the electrode plate detection unit is configured to: determine that the uncoated portion is folded in response to a quantity being greater than a preset threshold, wherein the quantity is a quantity of dimensional parameters which are less than the dimensional detection standard S in the dimensional parameters D 1 . . . D N ; or

determine that the uncoated portion is unfolded in response to a quantity being not greater than a preset threshold, wherein the quantity is a quantity of dimensional parameters which are less than the dimensional detection standard S in the dimensional parameters D 1 . . . D N .

20 . The detection apparatus according to claim 19 , wherein the dimensional detection standard S is M1/M2 of a nominal dimension of the uncoated portion in the longitudinal direction, M1 and M2 are positive integers, and M2 is not less than M1; and the preset threshold is NM1/M2.

21 . The detection apparatus according to claim 11 , wherein the parameter obtaining unit comprises at least one of a laser detector, an ultrasonic detector, and an image obtaining and processing apparatus.

22 . A stacking system, comprising:

the detection apparatus according to claim 11 ; and

a stacking apparatus configured to stack electrode plates.

23 . A detection device for electrode plate, wherein the detection device comprises a memory and a processor in communication connection with the memory, wherein the memory stores machine-readable instructions, and when the machine-readable instructions are executed by the processor, the detection method according to claim 1 are implemented.

24 . A computer-readable storage medium, wherein the computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the detection method according to claim 1 is implemented.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2024
From: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
To: CONTEMPORARY AMPEREX TECHNOLOGY (HONG KONG) LIMITED
Reel/Frame 068338/0402 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2024
From: HU, JUN; FENG, SHIPING; NI, DAJUN; CHEN, CANBIN; ZHENG, QIUHUI; CHANG, WEN; DUAN, PENGFEI; WU, QING; LU, HAORAN; LEI, YANG; ZHAO, BAIQUAN
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 066599/0918 →