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    • 2. 发明专利
    • Storage battery device
    • 存储电池设备
    • JP2009218067A
    • 2009-09-24
    • JP2008059913
    • 2008-03-10
    • Toyota Motor Corpトヨタ自動車株式会社
    • YODA TAKEHITONAKAGAWA MASAHIRO
    • B60L11/18B60K1/04B60K11/06H01M2/10H01M10/60H01M10/613H01M10/625H01M10/6557H01M10/6563
    • Y02T10/7005
    • PROBLEM TO BE SOLVED: To provide a storage battery device which can make more compact a length of a vehicle and can reduce noises and can improve a cooling efficiency.
      SOLUTION: The storage battery device includes a storage battery, a housing case 170 for housing the storage battery, and a cooling air exhausting mechanism 130 which is connected with the housing case 170 and exhausts air in the housing case 170. The storage battery is mounted in a luggage room 110 of a vehicle. In a rear wall portion of the housing case 170 positioned in a rear side of the vehicle, there is formed an exhausting mouth. The cooling air exhausting mechanism 130 includes a fan unit 135 having a suction mouth that opens upward and an exhausted air passage 133 hanging downward toward the air sucking mouth.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够使车辆的长度更加紧凑并且可以降低噪声并且可以提高冷却效率的蓄电池装置。 解决方案:蓄电池装置包括蓄电池,用于容纳蓄电池的容纳壳体170,以及与容纳壳体170连接并排出壳体170中的空气的冷却空气排出机构130。 电池被安装在车辆的行李室110中。 在位于车辆后方的壳体壳体170的后壁部分中形成排气口。 冷却空气排出机构130包括:风扇单元135,其具有向上开口的吸入口和向空气吸入口向下悬挂的排出空气通道133。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Bonding structure of non-metal member and vulcanized rubber
    • 非金属会员和VULCENIZED RUBBER的结合结构
    • JPS59158240A
    • 1984-09-07
    • JP3313783
    • 1983-02-28
    • Toyota Motor Corp
    • NAKAGAWA MASAHIRO
    • B29C55/00B29C65/00B29C65/70
    • PURPOSE: A bonding structure of a non-metal member and vulcanized rubber excellent in bonding strength, obtained by bonding the non-metal member and the vulcanized rubber by interposing copper between the bonding surfaces thereof.
      CONSTITUTION: A non-metal member 1 such as an epoxy resin or a polyester resin and vulcanized rubber 3 such as isoprene rubber or butyl rubber are bonded by interposing copper 11 between the bonding surfaces thereof. As copper allowed to exist between the bonding surfaces, a copper alloy such as brass may be used and copper or the copper alloy may be used in a powdery or fibrous form or may be a fiber which is dispersed in the non-metal member 1 but exposed by polishing the bonding surface of said member 1 and, in carbon fiber reinforced plastic, copper may be vapor deposited on the surface of the carbon fiber. By this method, copper 11 present between the bonding surfaces 12 is reacted with sulfur contained in the vulcanizing agent of the vulcanized rubber to form copper sulfide and chemical bonding force is generated between the non- metal member 1 and the vulcanized rubber 3 to strongly bond both of them.
      COPYRIGHT: (C)1984,JPO&Japio
    • 目的:通过在其接合面之间插入铜将非金属构件和硫化橡胶接合而获得的非金属构件和硫化橡胶的接合强度接合结构。 构成:在环氧树脂或聚酯树脂等非金属构件1和异戊二烯橡胶或丁基橡胶等硫化橡胶3之间插入铜11而粘合。 由于铜可以存在于接合面之间,所以可以使用黄铜等铜合金,铜或铜合金可以以粉末或纤维状形式使用,也可以是分散在非金属部件1中的纤维, 通过抛光所述构件1的接合表面而暴露,并且在碳纤维增强塑料中,铜可以气相沉积在碳纤维的表面上。 通过这种方法,存在于接合表面12之间的铜11与硫化橡胶的硫化剂中所含的硫反应形成硫化铜,并且在非金属构件1与硫化橡胶3之间产生化学粘合力以牢固地结合 两个都。