IP Library Granted Patent US 10,763,461
Granted Patent B2
US 10,763,461 · App. 13/885,572 · Granted Sep 1, 2020

Secondary battery

Inventor: Miyuki Terado (Yokohama, JP)
Assignee: ENVISION AESC JAPAN LTD.
H01M2/024H01M2/0245H01M2/1077H01M2/362H01M10/04
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Quick Facts
Patent No.
US 10,763,461
App. No.
13/885,572
Granted
Sep 1, 2020
Kind
B2
Abstract

The present invention relates to a secondary battery in which a stacked electrode assembly having a cathode, an anode and a separator is accommodated together with an electrolytic solution between exterior members. In the present invention, the secondary battery has a plurality of joint parts at which the outer peripheral portion of the separator is joined with the exterior members and a holding part formed at least between the joint parts so as to hold therein the electrolytic solution, wherein a sum of perimeters of the joint parts is longer than a perimeter of a rectangle of minimum area enclosing therein all of the joint parts. In this configuration, it is possible to refill the stacked electrode assembly with the electrolytic solution and protect the joint parts from breakage while preventing displacement of the stacked electrode assembly in the secondary battery.

Claims (35)

1. A secondary battery, comprising:

a stacked electrode assembly having a positive electrode, a negative electrode and a separator;

an electrolytic solution, the separator having permeability to the electrolytic solution;

exterior members accommodating therebetween the stacked electrode assembly together with the electrolytic solution; and

electrode terminals connected to the stacked electrode assembly and led to the outside from the exterior members so as to take an electric current out of the stacked electrode assembly,

wherein the exterior members have respective outer peripheral portions with peripheral edges thereof directly sealed to each other;

wherein the secondary battery comprises:

a plurality of separate joint parts formed between inner areas of the outer peripheral portions of the exterior members and aligned in a first direction parallel to the respective peripheral edges on one peripheral side of the exterior members, with first clearance regions respectively disposed between the joint parts and a second clearance region disposed between the respective joint parts and the respective peripheral edges of the exterior members, such that the inner areas of the outer peripheral portions of the exterior members are joined to each other by the joint parts and such that an outer peripheral portion of the separator is joined to the inner areas of the outer peripheral portions of the exterior members by the joint parts, the first clearance regions being aligned along the first direction, the second clearance region extending along the first direction in outer areas of the outer peripheral portions of the exterior members and being beyond the first clearance regions in a second direction perpendicular to the first direction; and

a holding part formed in the first and second clearance regions so as to hold therein the electrolytic solution; and

wherein a sum of perimeters of the joint parts is longer than a perimeter of a rectangle of minimum area enclosing therein all of the joint parts.

2. A secondary battery, comprising:

a stacked electrode assembly having a positive electrode, a negative electrode and a separator;

an electrolytic solution, the separator having permeability to the electrolytic solution;

exterior members accommodating therebetween the stacked electrode assembly together with the electrolytic solution; and

electrode terminals connected to the stacked electrode assembly and led to the outside from the exterior members so as to take an electric current out of the stacked electrode assembly,

wherein the exterior members have respective outer peripheral portions with peripheral edges thereof directly sealed to each other;

wherein the secondary battery comprises first and second joint regions;

wherein each of the first and second joint regions has:

a plurality of separate joint parts formed adjacent to and at a distance away from each other between inner areas of the outer peripheral portions of the exterior members and aligned in a first direction parallel to the respective peripheral edges on one peripheral side of the exterior members, with first clearance regions respectively disposed between the joint parts and a second clearance region disposed between the respective joint parts and the respective peripheral edges of the exterior members, such that the inner areas of the outer peripheral portions of the exterior members are joined to each other by the joint parts and such that an outer peripheral portion of the separator is joined to the inner areas of the outer peripheral portions of the exterior members by the joint parts, the first clearance regions being aligned along the first direction, the second clearance region extending along the first direction in outer areas of the outer peripheral portions of the exterior members and being beyond the first clearance regions in a second direction perpendicular to the first direction;

wherein the second joint region is located at a distance, that is longer than said distance away, from the first joint region;

wherein the secondary battery further comprises a holding part formed in the first and second clearance regions so as to hold therein the electrolytic solution; and

wherein, in each of the first and second joint regions, a sum of perimeters of the adjacent joint parts is longer than a perimeter of a rectangle of minimum area enclosing therein all of the adjacent joint parts.

3. A secondary battery, comprising:

a stacked electrode assembly having a positive electrode, a negative electrode and a separator;

an electrolytic solution; and

exterior members accommodating therebetween the stacked electrode assembly together with the electrolytic solution and having respective outer peripheral portions with peripheral edges thereof directly sealed to each other,

wherein the secondary battery comprises:

a plurality of joint parts formed between the outer peripheral portions of the exterior members and aligned in a first direction parallel to the respective peripheral edges on one peripheral side of the exterior members, with first clearance regions respectively disposed between the joint parts and a second clearance region disposed between the respective joint parts and the respective peripheral edges of the exterior members, such that an outer peripheral portion of the separator is joined to the outer peripheral portions of the exterior members by the joint parts, the first clearance regions being aligned along the first direction, the second clearance region extending along the first direction in outer areas of the outer peripheral portions of the exterior members and being beyond the first clearance regions in a second direction perpendicular to the first direction; and

a holding part formed in the first and second clearance regions so as to hold therein the electrolytic solution;

wherein a sum of perimeters of the joint parts is longer than a perimeter of a rectangle of minimum area enclosing therein all of the joint parts,

wherein each of the outer peripheral portions of the exterior members includes a plurality of supporting parts coupled to a supporting member of the battery and an extension part located between the supporting parts and extending outwardly of the battery; and

wherein the outer peripheral portion of the separator includes a tongue part extending to the extension parts of the exterior members and on which the joint parts are formed.

4. The secondary battery according to claim 2 ,

wherein each of the outer peripheral portions of the exterior members includes a plurality of supporting parts coupled to a supporting member of the battery and an extension part located between the supporting parts and extending outwardly of the battery; and

wherein the outer peripheral portion of the separator includes a tongue part extending to the extension parts of the exterior members and on which the joint parts are formed.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2019
From: NISSAN MOTOR CO., LTD.
To: ENVISION AESC JAPAN LTD.
Reel/Frame 049888/0933 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2013
From: TERADO, MIYUKI
To: NISSAN MOTOR CO., LTD.
Reel/Frame 030446/0263 →