Separator for secondary battery, manufacturing method thereof, method for manufacturing secondary battery comprising the separator and secondary battery manufactured by the method
US-12183949-B2 · Dec 31, 2024 · US
US11063301B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11063301-B2 |
| Application number | US-201916395744-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 26, 2019 |
| Priority date | Dec 21, 2016 |
| Publication date | Jul 13, 2021 |
| Grant date | Jul 13, 2021 |
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A manufacturing apparatus creates an electrode laminate in which an electrode is sandwiched between first and second separators. A first sensor detects a first lateral positional displacement amount in a width direction of the first separator with respect to a predetermined reference position. An electrode supply unit supplies the electrode to a predetermined electrode supply position. A second sensor detects a second lateral positional displacement amount in a width direction of the second separator with respect to a predetermined reference position. A control unit corrects a position of the first separator based on the first lateral positional displacement amount and corrects a position of the second separator based on the second lateral positional displacement amount. A camera detects an actual lateral positional displacement amount in the width direction of the first separator from a relationship with the position of the electrode by imaging, and the control unit corrects the predetermined reference position based on the actual lateral positional displacement amount.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for manufacturing an electrode laminate in which an electrode is sandwiched between first and second separators, the manufacturing apparatus comprising: an elongated conveyor belt configured to move in a traveling direction and having a lateral dimension measured perpendicular to the traveling direction, the conveyer belt being configured to convey elongated first and second separator materials in the traveling direction; a first separator material supply source configured to supply the first separator material onto the conveyor belt at a first location; a first sensor configured to detect, as a first lateral positional displacement amount, the lateral displacement of the first separator material relative to a predetermined lateral reference position at a position upstream of the first location; a first lateral positional displacement correction unit configured to correct the lateral position of the first separator material as it is supplied onto the conveyor belt based on the first lateral positional displacement amount; an electrode supplier configured to supply the electrode onto the first separator material at a predetermined electrode supply position located downstream of the positon where the first separator is applied to the conveyor belt; a second separator material supply unit configured to supply the second separator material onto the first separator material so as to sandwich the electrode between the first and second separator materials; a second sensor configured to detect, as a second lateral positional displacement amount, a lateral positional displacement amount of the second separator material with respect to the predetermined reference position at a position upstream of a position where the second separator material is supplied onto the first separator material; a second lateral positional displacement correction unit configured to correct a lateral position of the second separator material supplied onto the first separator material based on the second lateral positional displacement amount; an image detector configured to detect an actual lateral positional displacement amount of the first separator material from a lateral relationship with the position of between the electrode and the first separator material by imaging the electrode supplied onto the first separator material and the first separator material; a reference position correction unit configured to correct the predetermined reference position used as a reference by the first and second sensors based on the actual lateral positional displacement amount; and a cutter configured to cut the first and second separator materials after they have been laminated to around the electrode to obtain the electrode laminate. 2. The apparatus according to claim 1 , wherein: when the first lateral positional displacement amount is smaller than a predetermined threshold value, the first lateral positional displacement correction unit corrects a position of the first separator material on a single occasion so that the first lateral positional displacement amount becomes zero, and when the first lateral positional displacement amount is equal to or larger than the predetermined threshold value, the first lateral positional displacement correction unit corrects a position of the first separator material over a plurality of times so that the first lateral positional displacement amount becomes zero, and when the second lateral positional displacement amount is smaller than the predetermined threshold value, the second lateral positional displacement correction unit corrects a position of the second separator material on a single occasion so that the second lateral positional displacement amount becomes zero, and when the second lateral positional displacement amount is equal to or larger than the predetermined threshold value, the second lateral positional displacement correction unit corrects a position of the second separator material over a plurality of times so that the second lateral positional displacement amount becomes zero. 3. The manufacturing apparatus for an electrode laminate according to claim 2 , wherein: in the first separator material supply unit, the first separator material is elongated and is wound in a roll; when the first lateral positional displacement amount is equal to or larger than the predetermined threshold value, the first lateral positional displacement correction unit corrects a position of the first separator material over the number of times that is a value obtained by dividing circumference of an outermost circumference of the first separator material wound in a roll by an electrode pitch which is an interval at which the electrode is supplied onto the first separator material; in the second separator material supply unit, the second separator material is elongated and is wound in a roll; and when the second lateral positional displacement amount is equal to or larger than the predetermined threshold value, the second lateral positional displacement correction unit corrects a position of the second separator material over the number of times that is a value obtained by dividing circumference of an outermost circumference of the second separator material wound in a roll by the electrode pitch. 4. The manufacturing apparatus for an electrode laminate according to claim 1 , further comprising a calculation unit configured to calculate an average value of actual lateral positional displacement amounts obtained a predetermined number of times by the image pickup unit, wherein the reference position correction unit corrects the predetermined reference position based on the average value of the actual lateral positional displacement amounts.
of accumulators having only flat construction elements, i.e. flat positive electrodes, flat negative electrodes and flat separators · CPC title
Rolling or calendering · CPC title
the tool being a roller · CPC title
Construction or manufacture in general (H01M10/058, H01M10/12, H01M10/28, H01M10/38 take precedence) · CPC title
Energy storage using batteries · CPC title
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