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    • 1. 发明专利
    • Water drain structure of dew condensation water on glass wall
    • 玻璃墙上的DEW冷凝水的水排水结构
    • JP2005113378A
    • 2005-04-28
    • JP2003344790
    • 2003-10-02
    • Takechi Kogyo Gomu Co LtdYamaki Kogyo Kkタケチ工業ゴム株式会社ヤマキ工業株式会社
    • OKUBO KOICHITAKECHI YOSHIKA
    • E04B1/64E04B2/88E06B3/62E06B7/14
    • PROBLEM TO BE SOLVED: To satisfactorily drain dew condensation water on a glass wall which becomes an exterior wall of a building by effectively utilizing a gasket sealing between glass plates to be connected in a watertight manner and simplifying a configuration.
      SOLUTION: An abutting seal face 3 is formed on an outer face of the gasket 2 for watertight sealing provided along an end fringe of the glass 1, and a channel 4 is formed over the whole length of the gasket 2 on the abutting seal face 3. The abutting seal faces 3, 3 of the gaskets 2, 2 between the glasses 1 and 1 to be connected are brought into pressure-contact, and a water drain channel 5 is formed in the opposing channels 4, 4. An introduction passage 6 passing through from an indoor face of the gasket 2 on one side to the water drain channel 5 to introduce dew condensation water on an indoor face side of the glass 1 is formed. A water drain means 7 for draining dew condensation water introduced into the water drain channel 5 to the outside is communicated with the water drain channel 5.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:通过有效利用要以水密方式连接的玻璃板之间的密封垫密封并简化构造,将结露水排出成为建筑物外壁的玻璃壁上。 解决方案:在沿着玻璃1的端缘设置的水密密封垫圈2的外表面上形成邻接的密封面3,并且在邻接的垫圈2的整个长度上形成有通道4 将要连接的眼镜1和1之间的垫圈2,2的邻接密封面3,3进行压力接触,并且在相对的通道4,4中形成排水通道5。 导入通道6从一侧的垫圈2的室内面通过排水通道5,以在玻璃1的室内面侧引入结露水。 将排水通道5内的结露水排出到外部的排水装置7与排水通道5连通。(C)2005,JPO&NCIPI
    • 5. 发明专利
    • FORMING METHOD OF CONDUCTION PART ON CONTACT RUBBER
    • JP2000311540A
    • 2000-11-07
    • JP11809199
    • 1999-04-26
    • TAKECHI KOGYO GOMU CO LTD
    • TANAKA HITOSHI
    • B05D1/26B05C5/02B05D5/12H01H1/06H01H11/04H01H11/06
    • PROBLEM TO BE SOLVED: To form a conduction part having a sufficient film thickness at a high speed without scattering conductive ink. SOLUTION: When a hollow needle 5 approaches a rubber surface F, coating liquid L in a tube 3 is forced out to form a liquid drop L1, which gradually grows on an end 5a of the hollow needle 5, The hollow needle 5 descends at a speed higher than the speed at which the liquid drop L1 will descend, thereby moving the liquid drop L1 downward, and thus the liquid drop L1 is applied to the rubber surface F. By then, the liquid drop L1 has grown larger, meanwhile the hollow needle 5 continues to discharge the coating liquid L while descending downward, and when the hollow needle 5 descends as far as the lowest end, the liquid drop L1 grows to be about 2 mm large. After having descended to the lowest end, the hollow needle 5 continues to discharge the coating liquid L. While the hollow needle 5 ascends from the lowest end, the liquid drop L1 grows larger and at last the hollow needle 5 parts from the liquid drop L1. Thereafter, a solvent in the liquid drop L1 is vaporized at ordinary temperatures to form a conduction part.