Battery electrode inspection system
The present invention relates to a method for inspection of a multilayer electrode sheet for a battery cell, comprising at least the following steps: joining together at least two functional layers; connecting the functional layers to form an electrode-separator assembly; detecting at least part of a surface of the electrode-separator assembly by means of a detection device for generating a measurement result; evaluating the generated measurement result and generating an evaluation result; and outputting the evaluation result.
1. A method for inspection of a multilayer electrode-separator assembly for a battery cell, comprising at least the following steps:
a) joining together at least two functional layers;
b) connecting the functional layers to form a multilayer electrode-separator assembly;
c) detecting at least part of a surface of the electrode-separator assembly by means of a detection device for generating a measurement result;
d) evaluating the generated measurement result by:
determining an associated ACTUAL characteristic value, wherein the associated ACTUAL characteristic value is a gray scale value,
comparing the determined ACTUAL characteristic value with a predetermined TARGET characteristic value, and
determining the evaluation result by comparing the ACTUAL characteristic value and the TARGET characteristic value,
e) generating an evaluation result; and
f) outputting the evaluation result.
2. The method for inspection of an electrode-separator assembly for a battery cell according to claim 1 , wherein the step of joining together comprises joining together at least one electrode with an active material layer and at least one separator layer.
3. The method for inspection of an electrode-separator assembly for a battery cell according to claim 1 , wherein the functional layers are connected to one another by means of a lamination process, adhesive process or welding process.
4. The method for inspection of an electrode-separator assembly for a battery cell according to claim 1 , wherein steps a) to f) are carried out one after the other in a continuous process (in-line).
5. The method for inspection of an electrode-separator assembly for a battery cell according to claim 1 , wherein the step of detecting at least part of a surface of the electrode-separator assembly surface is carried out using an optical camera system.
6. The method for inspection of an electrode-separator assembly for a battery cell according to claim 1 , wherein the step of evaluating the generated measurement result is carried out using an electronic data processing system configured for image processing.
7. The method for inspection of an electrode-separator assembly for a battery cell according to claim 1 , wherein step c) is carried out under constant and defined lighting conditions.
8. A device with at least one detection device and means which are suitable for carrying out steps a) to e) according to claim 1 .
9. A battery cell, comprising:
at least two electrodes which are separated by at least one electrode-separator assembly,
wherein a first electrode-separator assembly of a first pair of electrodes is separated from a second electrode-separator assembly of a second pair of electrodes by at least one separator layer,
wherein said at least one separator layer has an at least two-layer structure and is manufactured using the method according to claim 1 .
10. The battery cell according to claim 9 , wherein the battery cell is a lithium-ion cell.