Composite carbon sheet, and electrochemical cells made therewith
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H01M-004/02
H01M-004/90
H01M-002/02
출원번호
US-0262976
(1999-03-05)
발명자
/ 주소
Moy Gregory Scott
Ward Michael Andrew
Dopp Robert Brian
Loch Robert Brian
Oltman John Edward
Passaniti Joseph Lynn
출원인 / 주소
Rayovac Corporation
대리인 / 주소
Quarles & Brady LLP
인용정보
피인용 횟수 :
10인용 특허 :
60
초록▼
Cathode assembly precursor cathode assembly (26) and elongate air depolarized electrochemical cells (10) made therewith. Cathode assembly precursor comprises a closed-loop elongate cathode current collector (32), and perforations (56) from outer to inner surfaces, and catalystically active carbon ex
Cathode assembly precursor cathode assembly (26) and elongate air depolarized electrochemical cells (10) made therewith. Cathode assembly precursor comprises a closed-loop elongate cathode current collector (32), and perforations (56) from outer to inner surfaces, and catalystically active carbon extending into the perforations (56). The current collector (32) can be cylindrical and can be free from longitudinal jointing, or can have a longitudinal joint (54), preferably free from overlap of the side wall. The current collector (32) can comprise an imperforate edge region at the top (42) and/or bottom (44), left (48) and/or right (46) edge. The perforations (56) define an open traction of the wall, of about 45 to about 70 percent. Typical cathode assemblies (26) have air diffusion member (36) on the outer surface of the cathode assembly (26). Such air diffusion member (36) typically has thickness of about 0.0025 to 0.005 inch (about 0.06 to about 0.13 mm.), and comprises a reduced thickness endless wrap extending at least 1.5 times, preferably 2 times, or 3 times, about the current collector (32), discouraging transfer of moisture vapor into or out of a cell, discouraging leakage, and controlling air diffusion rate. The diffusion member (36) extends beyond the top edge (42) of the current collector, and is folded in and down about the top edge (42) and inner surface (60) of the cathode assembly (26). The cathode current collector (32) can be mounted on a mandrel (93), the carbon sheet (80) passing through a nip defined between (i) support structure (192) having greater arc radius than the mandrel (93) and (ii) the mandrel (93), and applying force at the nip to consolidate the carbon (80) onto the side wall (58), passing air diffusion material (36) through the nip, and applying force to consolidate the air diffusion material (36) onto the carbon (80). The invention contemplates fabricating an air cathode assembly (26) comprising mounting the current collector (32) on a mandrel (93), defining an arc having a radius smaller than the arc of the cathode current collector (32), mounting the combination mandrel (93) and cathode current collector (32) in a stack (90) of assembly rolls (90A, 90B, 90C, 90D), making a sheet stack of carbon sheets (80s, 80B, 80C, 80D), passing the sheet stack through a nip, and applying force to the stack, reducing thickness of the stack, and passing air diffusion material (36) through the nips and applying force to consolidate the diffusion material (36) onto the carbon (80).
대표청구항▼
[ Having thus described the invention, what is claimed is:] [1.]1. A cathode assembly precursor for use in an elongate air depolarized electrochemical cell, said cathode assembly precursor comprising:(a) a closed-loop elongate cathode current collector having a side wall extending along a length the
[ Having thus described the invention, what is claimed is:] [1.]1. A cathode assembly precursor for use in an elongate air depolarized electrochemical cell, said cathode assembly precursor comprising:(a) a closed-loop elongate cathode current collector having a side wall extending along a length thereof, and having a thickness, a top and a top edge, a bottom, a first outer surface and a first inner surface, and an array of perforations extending through the thickness of the side wall, from the outer surface of the side wall to the inner surface of the side wall; and(b) a carbon catalyst on at least one of the first inner and first outer surfaces of the side wall of said cathode current collector and extending into and through the perforations in said cathode current collector such that distal surface portions of the carbon catalyst are interlocked with said cathode current collector about perimeter edges of the respective perforations at the other of the at least first inner surface and first outer surface of said cathode current collector, resulting cathode assembly precursor thus having a second outer surface and a second inner surface, one of the second outer surface and the second inner surface of said cathode assembly precursor being defined in first part by the distal surface portions of the carbon catalyst and in second part by the respective surface of the cathode current collector.
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