A method and system for real-time detection and processing of lithium battery pole piece defects

A technology of real-time detection and processing methods, applied in optical testing flaws/defects, measuring devices, instruments, etc., can solve problems such as poor consistency, poor detection accuracy, slow response, etc., to improve accuracy, eliminate response time, and improve accuracy. Effect

Active Publication Date: 2022-03-18
GUANGDONG AOPUTE TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Taking the defect detection of lithium battery pole pieces as an example, in the process of defect detection and marking, the factors affecting marking mainly include the resolution of the camera (basically negligible), external factors (machine shake / encoder slipping, etc.) ), the fluctuation of the response time during the interaction process of the hardware, in the real-time online monitoring process, the position of the camera and the marking machine is relatively fixed and the distance is marked as L, assuming that the position of the defect coincides with the position of the origin of the camera, the encoder (number of pulses ) walk a fixed distance to execute the marking mark. The process of image acquisition is to obtain the photoelectric signal through the photosensitive chip, convert the photoelectric signal on each pixel into a digital signal through the A / D converter, and then process it into a digital image cache and transmit it through the transmission line. On the PC, the process will be obtained in high and low speed states and the hardware configuration will be different within 50ms (mainly refers to the collection of a picture, the response time of the defect processing device (such as a marking machine), the communication time of the conventional network port or serial port, and IO Response time) fluctuations, while the battery pole piece defect detection in the prior art has the technical problems of slow response, poor detection accuracy and poor consistency of the battery pole piece under high and low speed states

Method used

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  • A method and system for real-time detection and processing of lithium battery pole piece defects
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  • A method and system for real-time detection and processing of lithium battery pole piece defects

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Embodiment 1

[0039] The invention provides a method for real-time detection and processing of lithium battery pole piece defects, such as figure 1 As shown, including the following steps S1-S6:

[0040] S1. Collect the movement information of the pole piece: the battery pole piece is bypassed by several rollers to drive the pole piece to carry out the tension transportation operation. At the same time, the encoder is connected with the roller transmission. V are converted into electronic signals.

[0041] Specifically, in step S1, the continuous defect detection operation is performed on the battery pole piece at the position of the roller, which can prevent the machine shake from affecting the image acquisition of the pole piece by the camera, ensure that the defect position information of the pole piece can be accurately collected, and ensure Reliability of the defect detection process.

[0042] S1.1. Switch detection scheme: select a suitable pole piece detection scheme from multiple po...

Embodiment 2

[0060] Such as Figure 6 As shown, the present invention provides a real-time detection and processing system for lithium battery pole piece defects, including:

[0061] Pole piece motion information collection module: the pole piece motion information collection module converts the pole piece motion information into electronic signals, and records the encoder value C1 of the image line signal at the same time;

[0062] Vision system: the vision system is triggered by the pole piece motion information acquisition module, and the vision system collects the position information of the image defect and calculates it with the encoder value C1 to convert it into the encoder value C2;

[0063]Controller: the controller receives the pole piece movement information of the pole piece movement information acquisition module and the coded value C2 of the vision system, and sends a flaw processing time signal to the flaw processing device; preferably, the controller is PLC controller;

...

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Abstract

The invention discloses a method for real-time detection and processing of a lithium battery pole piece defect, comprising the following steps: S1, using an encoder to acquire motion information of a pole piece transmitted at high speed; S2, using the encoder to trigger a linear array camera to collect pole piece images; S3 1. Identify the defects of the pole piece according to the image features; S4. Perform NG level judgment on the defects and record the position information of the defects; S5. The defect processing device performs defect processing operations on serious defects; also discloses the lithium battery pole piece using this method Defect real-time detection and processing system; the invention can automatically classify and process defects, eliminate image and processing device response delay, has high detection accuracy and high efficiency, and can meet the requirements of real-time detection for high-speed production of battery pole pieces.

Description

technical field [0001] The invention relates to a method for detecting and processing a pole piece of a lithium battery, in particular to a method and a system for detecting and processing a pole piece of a lithium battery in real time. Background technique [0002] At present, the domestic CCD visual inspection technology is still in the stage of rapid development, and many workloads that require high detection accuracy, poor detection environment, and cannot be completed manually must be replaced by visual inspection technology. When applying visual inspection, it is necessary to consider its real-time detection. Taking the defect detection of lithium battery pole pieces as an example, in the process of defect detection and marking, the factors affecting marking mainly include the resolution of the camera (basically negligible), external factors (machine shake / encoder slipping, etc.) ), the fluctuation of the response time during the interaction process of the hardware, i...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N21/89
CPCG01N21/8914G01N2021/8909
Inventor 汤初杰蒋晨辉王璐袁志肖徐文明贺珍真
Owner GUANGDONG AOPUTE TECH CO LTD
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