Battery case lid and manufacturing method for battery case lid

US2016149179A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016149179-A1
Application numberUS-201615011204-A
CountryUS
Kind codeA1
Filing dateJan 29, 2016
Priority dateOct 13, 2010
Publication dateMay 26, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

It is an objective of the present invention to provide a battery case lid and a manufacturing method for the battery case lid which inhibit work hardening of a metal plate workpiece and which facilitate manufacture of a battery case lid. Provided is a battery case lid ( 1 ) formed by working a metal plate, including: a substrate section ( 2 ) and an explosion-proof valve ( 4 ) formed in the substrate section ( 2 ), wherein the explosion-proof valve ( 4 ) has a reduced thickness section ( 41 ) thinner than the substrate section ( 2 ), and the reduced thickness section ( 41 ) is formed by extending the metal plate by applying pressure while the metal plate is kept unrestrained.

First claim

Opening claim text (preview).

1 - 16 . (canceled) 17 . A battery case lid formed by working a metal plate, the battery case lid comprising: a substrate section; and an explosion-proof valve formed in the substrate section, wherein the explosion-proof valve has a reduced thickness section thinner than the substrate section, the reduced thickness section being formed by extending the metal plate by applying pressure with the metal plate kept unrestrained, and the explosion-proof valve is surrounded by a folded part thicker than the reduced thickness section, the folded part being formed by folding the metal plate, and wherein the reduced thickness section is thinner than a thickness of a metal plate layer forming the folded part. 18 . A battery case lid formed by working a metal plate, the battery case lid comprising: a substrate section; and an explosion-proof valve formed in the substrate section, wherein the explosion-proof valve has a reduced thickness section thinner than the substrate section, the reduced thickness section being formed by extending the metal plate by applying pressure with the metal plate kept unrestrained, and the explosion-proof valve is surrounded by a folded part thicker than the reduced thickness section, the folded part being formed by folding the metal plate, and wherein the folded part horizontally extends around an entire outer periphery of the explosion-proof valve. 19 . The battery case lid formed by working a metal plate according to claim 18 , wherein the folded part is a part folded in three ring-shaped metal-plate layers formed in the substrate section. 20 . The battery case lid formed by working a metal plate according to claim 18 , wherein the metal-plate layers forming the folded part are gradually decreased in thickness from the bottom to the top layer. 21 . A manufacturing method for a battery case lid including an explosion-proof valve, the manufacturing method comprising: an extending step of pushing an extending punch from a first side of a metal plate disposed over an extending die having a recess, to form a reduced thickness section constituting the explosion-proof valve, wherein the recess has an inner diameter greater than an outer diameter of the extending punch, wherein a clearance between a side face of the recess of the extending die and an outer periphery at a top section on a side face of the extending punch is set to be smaller than a thickness of the metal plate, the top section being formed by an end of the extending punch facing the recess, and wherein in the extending step, the extending punch is pushed while the metal plate is kept unrestrained, and the metal plate is pressed to be extended between a bottom face of the recess and a pressing face of the extending punch, to form the reduced thickness section and a cylindrical wall portion at least until a gap is formed between the metal plate and the outer periphery at the top section on the side face of the extending punch. 22 . The manufacturing method for the battery case lid of claim 21 , further comprising a groove forming step of forming a groove in the reduced thickness section. 23 . The manufacturing method for the battery case lid of claim 21 , wherein in the extending step, the cylindrical wall portion is formed around the reduced thickness section, the cylindrical wall portion having a height greater than a depth of the recess of the extending die. 24 . The manufacturing method for the battery case lid of claim 21 , wherein the extending step is followed by a bending step in which the reduced thickness section is pressed by a bending punch smaller in outer diameter than the reduced thickness section from a second side of the metal plate, to bend the cylindrical wall portion formed around the reduced thickness section. 25 . The manufacturing method for the battery case lid of claim 24 , wherein the bending step is followed by a folding step in which a bent portion formed by bending the cylindrical wall portion in the bending step is pushed by a folding punch from the second side of the metal plate, to fold the bent portion. 26 . The manufacturing method for the battery case lid of claim 21 , wherein a lateral protrusion is formed around the outer periphery at the top section on the side face of the extending punch. 27 . The manufacturing method for the battery case lid of claim 21 , wherein the pressing face of the extending punch has a spherical face which is convex in a pressing direction of the extending punch. 28 . The manufacturing method for the battery case lid of claim 26 , wherein the lateral protrusion has a semi-circular shape protruding outwardly in cross section. 29 . The manufacturing method for the battery case lid of claim 21 , wherein the extending step is followed by a correcting step in which the reduced thickness section is corrected to be flat. 30 . A battery case lid manufactured by the manufacturing method according to claim 21 , the battery case lid comprising: a substrate section; and the explosion-proof valve formed in the substrate section, wherein the explosion-proof valve has the reduced thickness section thinner than the substrate section, and the explosion-proof valve is surrounded by the cylindrical wall portion thicker than the reduced thickness section, and wherein the cylindrical wall portion has a thick base portion and a tapered portion, and the tapered portion gradually decreases in thickness from an end portion of the base portion to the reduced thickness section. 31 . A battery case lid manufactured by the manufacturing method according to claim 25 , the battery case lid comprising: a substrate section; and the explosion-proof valve formed in the substrate section, wherein the explosion-proof valve has the reduced thickness section thinner than the substrate section, and the explosion-proof valve is surrounded by a folded part thicker than the reduced thickness section, the folded part being formed by folding the metal plate, and wherein the metal plate is not annealed. 32 . The battery case lid of claim 30 , wherein a groove is formed in an upper face of the reduced thickness section. 33 . The battery case lid of claim 31 , wherein a groove is formed in an upper face of the reduced thickness section. 34 . The manufacturing method for the battery case lid of claim 24 , further comprising a groove forming step of forming a groove in the reduced thickness section, wherein in the groove forming step, the reduced thickness section is pressed by a groove forming punch from the second side of the metal plate to form the reduced thickness section with a groove. 35 . The manufacturing method for the battery case lid of claim 25 , further comprising a groove forming step of forming a groove in the reduced thickness section, wherein in the groove forming step, the reduced thickness section is pressed by a groove forming punch from the second side of the metal plate to form the reduced thickness section with a groove. 36 . The manufacturing method for the battery case lid of claim 27 , wherein the bottom face of the recess has a spherical surface which is downwardly convex, and a curvature radius of the spherical face of the pressing face is equal to or smaller than a curvature radius of the spherical face of the bottom face of the recess. 37 . A manufacturing method for a battery case lid including an explosion-proof valve, the manufacturing method comprising: an extending step

Assignees

Inventors

Classifications

  • in the form of rupturable membranes or weakened parts, e.g. pierced with the aid of a sharp member · CPC title

  • by welding, brazing or soldering · CPC title

  • Making other articles · CPC title

  • Making closures, e.g. caps (folded of thin metal foils in the way of making paper caps B31D5/00; making closures in conjunction with applying same B67B) · CPC title

  • scoring lines, tear strips or pulling tabs · CPC title

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What does patent US2016149179A1 cover?
It is an objective of the present invention to provide a battery case lid and a manufacturing method for the battery case lid which inhibit work hardening of a metal plate workpiece and which facilitate manufacture of a battery case lid. Provided is a battery case lid ( 1 ) formed by working a metal plate, including: a substrate section ( 2 ) and an explosion-proof valve ( 4 ) formed in the sub…
Who is the assignee on this patent?
Soode Nagano Co Ltd, Nippon Light Metal Co
What technology area does this patent fall under?
Primary CPC classification H01M50/3425. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu May 26 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).