IP Library Granted Patent US 8,841,028
Granted Patent B2
US 8,841,028 · App. 14/060,699 · Granted Sep 23, 2014

Lead acid storage battery

Inventors: Yoshikazu Hirose (Tokyo, JP); Shinichi Sano (Tokyo, JP); Katsura Mitani (Tokyo, JP); Hiroyuki Wakatabe (Tokyo, JP)
Assignee: Shin-Kobe Electric Machinery Co., Ltd.
H01M4/73Y02E60/12
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Quick Facts
Patent No.
US 8,841,028
App. No.
14/060,699
Granted
Sep 23, 2014
Kind
B2
Abstract

A lead acid storage battery composed of plates, the lead acid storage battery being obtained by packing an active material into a grid plate provided with a frame section having a quadrangular profile shape, and lateral grid strands and longitudinal grid strands that form a grid inside the frame section. The lateral grid strands are composed of thick lateral strands having a thickness equal to the thickness of the frame section, and thin lateral strands of smaller width and thickness than the thick strands, the longitudinal grid strands being composed of thick longitudinal strands that have a thickness that is less than thickness of the frame section, one end in the thickness direction being arranged in the same plane as one end of the frame section in the thickness direction, and thin longitudinal strands of smaller width and thickness than the thick longitudinal strands.

Claims (30)

1. A lead acid storage battery comprising a positive plate in which a positive active material is packed into a grid plate for a positive plate, and a negative plate in which a negative active material is packed into a grid plate for a negative plate, wherein

at least the grid plate for the positive plate comprises: a frame section having a pair of lateral frame strands that extend in a lateral direction and are in an opposing arrangement in a longitudinal direction, and a pair of longitudinal frame strands that extend in the longitudinal direction and that are in an opposing arrangement in the lateral direction, and having a fixed thickness dimension in a thickness direction perpendicular to the lateral direction and the longitudinal direction; a plurality of lateral grid strands and a plurality of longitudinal grid strands that are provided so as to extend parallel to the lateral frame strands and the longitudinal frame strands, respectively, and form a grid inside the frame section; and a plate lug section integrally formed on one lateral frame strand of the frame section,

the plurality of longitudinal grid strands and the plurality of lateral grid strands respectively have a plurality of thin longitudinal strands and a plurality of thin lateral strands, and a plurality of thick longitudinal strands and a plurality of thick lateral strands that have a greater cross-sectional area than the plurality of thin longitudinal strands and the plurality of thin lateral strands, and the plurality of thick lateral strands and the plurality of thin lateral strands are arrayed so that at least one thin longitudinal strand of the plurality of thin longitudinal strands is aligned with a side of the plurality of thick longitudinal strands, and the plurality of thin lateral strands are aligned with a side of the plurality of thick lateral strands,

the plurality of thick longitudinal strands has a thickness that is less than the fixed thickness dimension of the frame section, the plurality of thick longitudinal strands being arranged so that an end face of one end side of the plurality of thick longitudinal strands in the thickness direction is positioned in the same plane as an end face of one end side of the frame section in the thickness direction, and an end face of another end side of the plurality of thick longitudinal strands in the thickness direction is positioned further inward of the frame section in the thickness direction than an end face in another end side of the frame section in the thickness direction,

the plurality of thin longitudinal strands have a thickness that is less than the thickness of the plurality of thick longitudinal strands, the plurality of thin longitudinal strands being arranged so that an end face of one end side of the plurality of thin longitudinal strands in the thickness direction and an end face of another end side of the plurality of thin longitudinal strands in the thickness direction are positioned further inward of the frame section in the thickness direction than the end face of the one end side and the end face of the another end side of the plurality of thick longitudinal strands in the thickness direction,

the plurality of thick lateral strands has a thickness equal to the fixed thickness dimension of the frame section, the plurality of thick lateral strands being arranged so that an end face of the plurality of the thick lateral strands on one end side in the thickness direction and an end face of the plurality of thick lateral strands on another end side in the thickness direction are positioned in the same plane as an end face of one end side and an end face of another end side of the frame section in the thickness direction, respectively,

a width dimension of the end face of the another end side of the plurality of thick lateral strands in the thickness direction is set to be less than a width dimension of the end face of the one end side in the thickness direction of the plurality of thick lateral strands, where a direction perpendicular to the thickness direction and the lengthwise direction of the plurality of the thick lateral strands is taken as the width direction,

the plurality of thin lateral strands has a thickness that is less than the thickness of the plurality of thick lateral strands, the plurality of thin lateral strands being arranged so that an end face of the plurality of thin lateral strands on one end side in the thickness direction and an end face of the plurality of thin lateral strands on another end side in the thickness direction are positioned further inward of the frame section in the thickness direction than the end face of the one end side and the end face of the another end side of the plurality of thick lateral strands in the thickness direction, and

the plurality of thin longitudinal strands include different types of thin longitudinal strands which are different in size (thickness and width).

2. A lead acid storage battery comprising a positive plate in which a positive active material is packed into a grid plate for a positive plate, and a negative plate in which a negative active material is packed into a grid plate for a negative plate, wherein

at least the grid plate for the positive plate comprises: a frame section having a pair of lateral frame strands that extend in a lateral direction and are in an opposing arrangement in a longitudinal direction, and a pair of longitudinal frame strands that extend in the longitudinal direction and that are in an opposing arrangement in the lateral direction, and having a fixed thickness dimension in a thickness direction perpendicular to the lateral direction and the longitudinal direction; a plurality of lateral grid strands and a plurality of longitudinal grid strands that are provided so as to extend parallel to the lateral frame strands and the longitudinal frame strands, respectively, and form a grid inside the frame section; and a plate lug section integrally formed on one lateral frame strand of the frame section,

the plurality of longitudinal grid strands and the plurality of lateral grid strands respectively have a plurality of thin longitudinal strands and a plurality of thin lateral strands, and a plurality of thick longitudinal strands and a plurality of thick lateral strands that have a greater cross-sectional area than the plurality of thin longitudinal strands and the plurality of thin lateral strands, and the plurality of thick lateral strands and the plurality of thin lateral strands are arrayed so that at least one thin longitudinal strand of the plurality of thin longitudinal strands is aligned with a side of the plurality of thick longitudinal strands, and the plurality of thin lateral strands are aligned with a side of the plurality of thick lateral strands,

the plurality of thick longitudinal strands has a thickness that is less than the fixed thickness dimension of the frame section, the plurality of thick longitudinal strands being arranged so that an end face of one end side of the plurality of thick longitudinal strands in the thickness direction is positioned in the same plane as an end face of one end side of the frame section in the thickness direction, and an end face of another end side of the plurality of thick longitudinal strands in the thickness direction is positioned further inward of the frame section in the thickness direction than an end face in another end side of the frame section in the thickness direction,

the plurality of thin longitudinal strands has a thickness that is less than the thickness of the plurality of thick longitudinal strands, the plurality of thin longitudinal strands being arranged so that an end face of one end side of the plurality of thin longitudinal strands in the thickness direction and an end face of another end side of the plurality of thin longitudinal strands in the thickness direction are positioned further inward of the frame section in the thickness direction than the end face of the one end side and the end face of the another end side of the plurality of thick longitudinal strands in the thickness direction,

the plurality of thick lateral strands have a thickness equal to the fixed thickness dimension of the frame section, the plurality of thick lateral strands being arranged so that an end face of the plurality of the thick lateral strands on one end side in the thickness direction and an end face of the plurality of thick lateral strands on another end side in the thickness direction are positioned in the same plane as an end face of one end side and an end face of another end side of the frame section in the thickness direction, respectively,

a width dimension of the end face of the another end side of the plurality of thick lateral strands in the thickness direction is set to be less than a width dimension of the end face of the one end side in the thickness direction of the plurality of thick lateral strands, where a direction perpendicular to the thickness direction and the lengthwise direction of the plurality of the thick lateral strands is taken as the width direction,

the plurality of thin lateral strands has a thickness that is less than the thickness of the plurality of thick lateral strands, the plurality of thin lateral strands being arranged so that an end face of the plurality of thin lateral strands on one end side in the thickness direction and an end face of the plurality of thin lateral strands on another end side in the thickness direction are positioned further inward of the frame section in the thickness direction than the end face of the one end side and the end face of the another end side of the plurality of thick lateral strands in the thickness direction, and

the plurality of thin lateral strands include different types of thin lateral strands which are different in size (thickness and width).

3. The lead acid storage battery of claim 1 , wherein each of the plurality of thin longitudinal strands and each of the plurality of thin lateral strands has a cross-sectional area set so that the lead acid storage battery can withstand corrosion for a predetermined service life period.

4. The lead acid storage battery of claim 2 , wherein each of the plurality of thin longitudinal strands and each of the plurality of thin lateral strands has a cross-sectional area set so that the lead acid storage battery can withstand corrosion for a predetermined service life period.

5. The lead acid storage battery of claim 1 , wherein the plurality of thin lateral strands include different types of thin lateral strands which are different in size (thickness and width).

6. A lead acid storage battery comprising a positive plate in which a positive active material is packed into a grid plate for a positive plate, and a negative plate in which a negative active material is packed into a grid plate for a negative plate, wherein

at least the grid plate for the positive plate comprises: a frame section having a pair of lateral frame strands that extend in a lateral direction and are in an opposing arrangement in a longitudinal direction, and a pair of longitudinal frame strands that extend in the longitudinal direction and that are in an opposing arrangement in the lateral direction, and having a fixed thickness dimension in a thickness direction perpendicular to the lateral direction and the longitudinal direction; a plurality of lateral grid strands and a plurality of longitudinal grid strands that are provided so as to extend parallel to the lateral frame strands and the longitudinal frame strands, respectively, and form a grid inside the frame section; and a plate lug section integrally formed on one lateral frame strand of the frame section,

the plurality of longitudinal grid strands and the plurality of lateral grid strands respectively have a plurality of thin longitudinal strands and a plurality of thin lateral strands, and a plurality of thick longitudinal strands and a plurality of thick lateral strands that have a greater cross-sectional area than the plurality of thin longitudinal strands and the plurality of thin lateral strands, and the plurality of thick lateral strands and the plurality of thin lateral strands are arrayed so that at least one thin longitudinal strand of the plurality of thin longitudinal strands is aligned with a side of the plurality of thick longitudinal strands, and the plurality of thin lateral strands are aligned with a side of the plurality of thick lateral strands,

the plurality of thick longitudinal strands has a thickness that is less than the fixed thickness dimension of the frame section, the plurality of thick longitudinal strands being arranged so that an end face of one end side of the plurality of thick longitudinal strands in the thickness direction is positioned in the same plane as an end face of one end side of the frame section in the thickness direction, and an end face of another end side of the plurality of thick longitudinal strands in the thickness direction is positioned further inward of the frame section in the thickness direction than an end face in another end side of the frame section in the thickness direction,

the plurality of thin longitudinal strands have a thickness that is less than the thickness of the plurality of thick longitudinal strands, the plurality of thin longitudinal strands being arranged so that an end face of one end side of the plurality of thin longitudinal strands in the thickness direction and an end face of another end side of the plurality of thin longitudinal strands in the thickness direction are positioned further inward of the frame section in the thickness direction than the end face of the one end side and the end face of the another end side of the plurality of thick longitudinal strands in the thickness direction,

the plurality of thick lateral strands has a thickness equal to the fixed thickness dimension of the frame section, the plurality of thick lateral strands being arranged so that an end face of the plurality of the thick lateral strands on one end side in the thickness direction and an end face of the plurality of thick lateral strands on another end side in the thickness direction are positioned in the same plane as an end face of one end side and an end face of another end side of the frame section in the thickness direction, respectively,

a width dimension of the end face of the another end side of the plurality of thick lateral strands in the thickness direction is set to be less than a width dimension of the end face of the one end side in the thickness direction of the plurality of thick lateral strands, where a direction perpendicular to the thickness direction and the lengthwise direction of the plurality of the thick lateral strands is taken as the width direction,

the plurality of thin lateral strands has a thickness that is less than the thickness of the plurality of thick lateral strands, the plurality of thin lateral strands being arranged so that an end face of the plurality of thin lateral strands on one end side in the thickness direction and an end face of the plurality of thin lateral strands on another end side in the thickness direction are positioned further inward of the frame section in the thickness direction than the end face of the one end side and the end face of the another end side of the plurality of thick lateral strands in the thickness direction, and

at least one of (A) the plurality of thin longitudinal strands include different types of thin longitudinal strands which are different in size (thickness and width), and (B) the plurality of thin lateral strands include different types of thin lateral strands which are different in size (thickness and width).

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 24, 2024
From: RESONAC CORPORATION
To: ENERGYWITH CO., LTD.
Reel/Frame 069676/0687 →
CHANGE OF NAME Recorded Dec 24, 2024
From: HITACHI CHEMICAL COMPANY, LTD.
To: SHOWA DENKO MATERIALS CO., LTD.
Reel/Frame 069775/0236 →
CHANGE OF NAME Recorded Dec 24, 2024
From: SHOWA DENKO MATERIALS CO., LTD.
To: RESONAC CORPORATION
Reel/Frame 069775/0284 →
ADDRESS CHANGE Recorded Dec 24, 2024
From: RESONAC CORPORATION
To: RESONAC CORPORATION
Reel/Frame 069775/0492 →
MERGER Recorded Dec 20, 2024
From: SHIN-KOBE ELECTRIC MACHINERY CO., LTD.
To: HITACHI CHEMICAL COMPANY, LTD.
Reel/Frame 069751/0265 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2024
From: HIROSE, YOSHIKAZU; SANO, SHINICHI; MITANI, KATSURA; WAKATABE, HIROYUKI
To: SHIN-KOBE ELECTRIC MACHINERY CO., LTD.
Reel/Frame 069486/0835 →
Continuity (2)
Continuation 13144764
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