FIELD: chemical current sources. SUBSTANCE: plastic spacer 4, bipolar electrodes 2 on common metal jumper 3, separators 5, extreme monopolar electrodes 7 and cover 8 are put into disc metal case 1 over generating line. Electrolyte 6 is contained in pores of electrodes 2 and 7 and separators 5. Edges of metal jumper 3 are reinforced with material of plastic spacer 4. Assembled storage battery is installed in matrix and edges of metal case 1 are expanded over end sections of plastic spacer 4 and cover 8. Metal jumper 3 is positioned under expanded section which outer diameter is bigger than that of cylindrical part of metal case 1. EFFECT: increased reliability of sealing due to formation of clearance between this part and matrix. 1 dwg
Title | Year | Author | Number |
---|---|---|---|
PROCESS OF ASSEMBLY OF BIPOLAR STORAGE BATTERY | 1992 |
|
RU2024999C1 |
STAND-BY CHEMICAL CURRENT SOURCE | 1992 |
|
RU2025834C1 |
KNOCK TRANSMITTER AND PROCESS OF ITS MANUFACTURE | 1997 |
|
RU2125719C1 |
ELECTROLYSIS INSTALLATION | 1995 |
|
RU2095475C1 |
CELL AND METHOD OF ITS SEALING | 1992 |
|
RU2024115C1 |
SMALL-SIZED LEAK-TIGHT CYLINDRICAL ALKALINE CELL | 1993 |
|
RU2041534C1 |
CAP OF STORAGE BATTERY | 1996 |
|
RU2098890C1 |
METHOD OF ASSEMBLING FLAT CELL | 1994 |
|
RU2066902C1 |
SEALED LEAD-ACID STORAGE BATTERY | 1999 |
|
RU2180976C2 |
STORAGE BATTERY (OPTIONS) | 1996 |
|
RU2086052C1 |
Authors
Dates
1994-12-15—Published
1992-07-29—Filed