Patent classifications
H01M50/1535
TOP COVER ASSEMBLY FOR POWER BATTERY AND POWER BATTERY HAVING THE SAME
Provided is a top cover structure for power battery, including a first electrode assembly, a second electrode assembly, a top cover plate electrically connected with the first electrode assembly, and a deformable plate attached to the top cover plate; the second electrode assembly includes a second electrode terminal, a second connecting block, a second insulating piece in which a via-hole and an gas-guide hole are defined, an upper sealing piece arranged between the second insulating piece and the second connecting block and including a sealing area for deforming space and a sealing area for electrode terminal, and a lower sealing piece arranged between the second insulating piece and the top cover plate and enclosing the via-hole for deformable plate. The sealing area for deforming space encloses the via-hole and the gas-guide hole, the sealing area for electrode terminal enclose the second electrode terminal.
STAINLESS STEEL FOIL FOR BATTERY OUTER PACKAGING
Provided is a battery armoring stainless steel foil which has excellent adhesiveness to resin after being thermally shocked and after being immersed in an electrolyte solution. A battery armoring stainless steel foil (1) includes an oxide film (1a), having a thickness of not less than 2 nm, which contains (i) Fe in an amount of not less than 40 mol percent, (ii) Cr in a lesser amount than Fe, and (iii) Si in an amount of not more than 40 mol percent, the battery armoring stainless steel foil (1) having an arithmetic mean roughness Ra of less than 0.1 m but not less than 0.02 m in a direction orthogonal to a direction in which the battery armoring stainless steel foil (1) has been rolled.
CAP ASSEMBLY HAVING IMPROVED STABILITY AND CYLINDRICAL SECONDARY BATTERY INCLUDING THE SAME
The present invention relates to a cap assembly formed of a composite of cap assembly ceramic for the cylindrical battery and mounted on a top end portion of the cylindrical secondary battery in which an electrode assembly is placed in a cylindrical can, which includes a safety vent having a predetermined notch configured to be ruptured by high pressure gas generated in the battery, a current interrupt device coupled to a lower end of the safety vent and blocking a current when an internal pressure of the battery rises, and a gasket for the current interrupt device surrounding an outer circumferential surface of the current interrupt device, wherein the gasket for the current interrupt device comprises a polymer resin having a melting point of 250 C. or more and a heat deflection temperature (HDT) of 200 C. or more, and a cylindrical secondary battery including the same.
CONNECTOR FOR LIQUID COOLING BATTERY PACK OF ELECTRIC VEHICLE
A connector for liquid cooling battery pack of electric vehicle is provided. The connector comprises mounting plates and electrical terminals and cooling device interfaces disposed on the mounting plates. The connector further includes sealing shells disposed on the mounting plates, the electrical terminals are separated from the cooling device interfaces by the sealing shells. The connector of the application has the advantages of higher integration level, reduced weight, water and electricity separation, etc., so that it can be installed quickly and much cost effectively.
WATER-ACTIVATED POWER BANK STRUCTURE
A water-activated power bank structure, comprising: a bottle body with a top opening and a bottom opening, wherein the bottle body is configured to accommodate a first electrode structure and a second electrode structure. The water-activated power bank structure further comprises: a top cap configured to mate with the top opening of the bottle body; a first bottom cap configured to mate with the bottom opening of the bottle body; a second bottom cap configured to mate with the first bottom cap; and a power output module disposed in the second bottom cap; wherein the first electrode structure has a cylindrical shape and the second electrode structure has a mesh shape, and wherein the power output module is electrically connected to the first electrode structure and the second electrode structure.