IP Library Granted Patent US 9,786,886
Granted Patent B2
US 9,786,886 · App. 14/282,587 · Granted Oct 10, 2017

Nonaqueous battery

Inventors: Shinichiro Sakaguchi (Fujisawa, JP); Masatomo Mizuta (Kawasaki, JP)
Assignee: AUTOMOTIVE ENERGY SUPPLY CORPORATION
H01M2/1653H01M2/145Y10T29/49108
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Quick Facts
Patent No.
US 9,786,886
App. No.
14/282,587
Granted
Oct 10, 2017
Kind
B2
Abstract

A nonaqueous battery includes at least one positive electrode plate, at least one negative electrode plate and at least one separator formed of a microporous resin film and laminated between the positive electrode plate and the negative electrode plate. The separator has a square or rectangular shape with four sides, two of which are perpendicular to a machine direction of the microporous resin film and have been subjected to heat and the other two of which are parallel to the machine direction of the microporous resin film and have not been subjected to heat.

Claims (26)

1. A nonaqueous battery comprising:

at least one positive electrode plate;

at least one negative electrode plate; and

at least one separator laminated between the positive electrode plate and the negative electrode plate,

wherein the separator is formed of a microporous resin film that is cut into a square or rectangular shape having two cut sides perpendicular to a machine direction of the microporous resin film and two cut sides parallel to the machine direction of the microporous resin film,

wherein the two cut sides of the separator perpendicular to the machine direction are formed by thermal cutting and thereby subjected to heat during cutting,

wherein the two cut sides of the separator parallel to the machine direction are formed by mechanical cutting and thereby not subjected to heat during cutting, and

wherein a number of pores in the two cut sides of the separator perpendicular to the machine direction is less than a number of pores in the two cut sides of the separator parallel to the machine direction.

2. The nonaqueous battery according to claim 1 , wherein the two cut sides of the separator perpendicular to the machine direction are subjected to heat after cutting.

3. The nonaqueous battery according to claim 1 , wherein the two cut sides of the separator perpendicular to the machine direction are subjected to heat until becoming transparent.

4. A nonaqueous battery comprising:

an electrode laminate unit having a plurality of positive electrode plates, a plurality of negative electrode plates and a plurality of separators, the plurality of positive electrode plates and the plurality of negative electrode plates alternately laminated, with one of the plurality of separators therebetween, as a power generating element; and

a battery package formed of a laminate film and accommodating therein the electrode laminate unit,

wherein each of the separators is formed of a microporous resin film that is cut into a square or rectangular shape having two cut sides perpendicular to a machine direction of the microporous resin film and two cut sides parallel to the machine direction of the microporous resin film,

wherein the two cut sides of the separator perpendicular to the machine direction are formed by thermal cutting and thereby subjected to heat during cutting,

wherein the two cut sides of the separator parallel to the machine direction are formed by mechanical cutting and thereby not subjected to heat during cutting, and

wherein a number of pores in the two cut sides of the separator perpendicular to the machine direction is less than a number of pores in the two cut sides of the separator parallel to the machine direction.

5. The nonaqueous battery according to claim 4 , further comprising positive and negative electrode terminals connected to the positive electrode plates and the negative electrode plates, respectively, and drawn out from one side of the battery package extending in a direction parallel to the machine direction.

6. A production method of the nonaqueous battery according to claim 1 , comprising:

providing the at least one positive electrode plate;

providing the at least one negative electrode plate; and

cutting the at least one separator out from the microporous resin film such that the at least one separator has a square or rectangular shape having two cut sides perpendicular to the machine direction of the microporous resin film and two cut sides parallel to the machine direction of the microporous resin film,

wherein the two cut sides of the separator perpendicular to the machine direction are formed by thermal cutting and thereby subjected to heat during the cutting,

wherein the two cut sides of the separator parallel to the machine direction are formed by mechanical cutting and thereby not subjected to heat during the cutting,

wherein after or during the cutting, heat is not applied to the two cut sides of the at least one separator parallel to the machine direction, and

wherein a number of pores in the two cut sides of the separator perpendicular to the machine direction is less than a number of pores in the two cut sides of the separator parallel to the machine direction.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Apr 9, 2024
From: SUMITOMO MITSUI BANKING CORPORATION, AS SECURITY AGENT
To: ENVISION AESC JAPAN LTD.; ENVISION AESC ENERGY DEVICES LTD
Reel/Frame 067043/0578 →
SECURITY AGREEMENT SUPPLEMENT Recorded Jul 2, 2019
From: ENVISION AESC JAPAN, LTD.
To: SUMITOMO MITUSI BANKING CORPORATION, AS SECURITY AGENT
Reel/Frame 049649/0943 →
CHANGE OF NAME Recorded Jun 4, 2019
From: AUTOMOTIVE ENERGY SUPPLY CORPORATION
To: ENVISION AESC JAPAN LTD.
Reel/Frame 049362/0378 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2014
From: SAKAGUCHI, SHINICHIRO; MIZUTA, MASATOMO
To: AUTOMOTIVE ENERGY SUPPLY CORPORATION
Reel/Frame 032939/0196 →
Priority Claims (1)
JP 2013-120545 · Jun 7, 2013 · national
Continuity (1)
Related Publication 20140363732A1 · Dec 11, 2014