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    • 86. 发明专利
    • HEAT-SENSITIVE DEPOSITING APPARATUS
    • JPH09226009A
    • 1997-09-02
    • JP3795496
    • 1996-02-26
    • MITSUBISHI PENCIL CO
    • TAMANO SUMI
    • B29C65/24B29C65/02B29C65/14
    • PROBLEM TO BE SOLVED: To provide a heat-sensitive depositing apparatus with wide selecting width of a material to be deposited which can deposit partly widely a depositing material without insufficiency of heat receiving amount even if a flashing light source is used and without damaging the material to be deposited with the low-cost apparatus. SOLUTION: This heat-sensitive depositing apparatus comprises a recess 1a directed from the upper surface of the apparatus body toward the interior, an infrared transmittable transparent plate 3 disposed at the upper opening of the recess 1a, a reflecting plate 1a1 mounted on the inner surface of the recess, a flash bulb 1b disposed at the lower part in the recess to generate a flash light including the infrared rays, and a heating plate 14 disposed above the bulb 1b via the plate 3 and heating by the infrared rays, wherein a material 4 to be deposited is deposited by the heat of the plate 14 generated by the light of the bulb 1b.
    • 88. 发明专利
    • JPH09502830A
    • 1997-03-18
    • JP50885195
    • 1994-09-14
    • B29C63/00B29C65/14H01M2/02H01M8/247H01M12/08
    • PCT No. PCT/AT94/00128 Sec. 371 Date Mar. 15, 1996 Sec. 102(e) Date Mar. 15, 1996 PCT Filed Sep. 14, 1994 PCT Pub. No. WO95/08198 PCT Pub. Date Mar. 23, 1995The invention concerns a method for producing a nondetachable, fluid-tight, and gastight connection between a plate stack (1) and a plate-shaped lateral component (3) of an electrochemical battery, and for spacing this plate stack (1), which is comprised of successive, thin-walled electrode plates with separator plates (4) disposed between each of them; the lateral component (3) is comprised of electrically non-conducting material. According to the invention, the lateral component (3) is guided spaced apart from and parallel to the respective face ends (5) of the electrode plates and separator plates (4) of the plate stack (1). Then the region of the face ends (5) and the side of the lateral component (3) oriented toward the plate stack (1) are simultaneously exposed to a temporary surface heating until they reach melting temperature and are then pressed against each other until the material cools.