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    • 2. 发明授权
    • Aluminum alloy sheet with improved formability and method of production
    • 具有改善成型性和生产方法的铝合金板
    • US5322741A
    • 1994-06-21
    • US30412
    • 1993-04-16
    • Yasuji UesugiKoichi HashiguchiYoshihiro MatsumotoMakoto ImanakaTakaaki HiraNobuyuki MoritoYoichi TobiyamaNobuo TotsukaMotohiro Nabae
    • Yasuji UesugiKoichi HashiguchiYoshihiro MatsumotoMakoto ImanakaTakaaki HiraNobuyuki MoritoYoichi TobiyamaNobuo TotsukaMotohiro Nabae
    • C23C2/02C23C2/28C23C28/00C23C30/00C25D5/44B32B15/20C22F1/04
    • C23C30/00C23C2/02C23C2/28C23C28/00C25D5/44Y10T428/12736Y10T428/12757
    • The invention provides an aluminum alloy sheet having improved formability, an elongation of at least 30%, a sliding frictional resistance of up to 0.13 and minimized surface pressure dependency of sliding frictional resistance, comprising an aluminum alloy substrate containing at least 4 wt % of Mg and a Fe rich plating layer on a surface thereof in a coating weight of 1 to 50 g/m.sup.2. Also provided is a bake hardenable, surface treated aluminum alloy sheet having improved formability, an elongation of at least 25%, a sliding frictional resistance of up to 0.13 and minimized surface pressure dependency of sliding frictional resistance, comprising a bake hardenable aluminum alloy substrate containing Mg and Si in an amount of at least 0.4 wt % calculated as Mg.sub.2 Si and a Fe rich plating layer on a surface thereof in coating weight of 1 to 50 g/m.sup.2. By forming a zincate layer as an undercoat below the Fe rich plating layer, the plating adhesion is further improved. The preferred Fe rich plating layer is a Fe-Zn alloy plating layer containing 20 to 80 wt % of Zn for corrosion resistance improvement. A Fe-Zn alloy plating layer containing 30 to 40 wt % of Zn meets both formability and corrosion resistance.
    • PCT No.PCT / JP92 / 00931 Sec。 371日期:1993年04月16日 102(e)日期1993年4月16日PCT提交1992年7月22日PCT公布。 第WO93 / 02225号公报 日本公开1993年2月4日。本发明提供一种铝合金板,其具有改进的成形性,伸长率至少为30%,滑动摩擦阻力高达0.13,并且滑动摩擦阻力的表面压力依赖性最小化,包括含有 表面上含有至少4重量%的Mg和富Fe镀层,涂层重量为1〜50g / m 2。 还提供了具有改进的成型性,至少25%的伸长率,至多0.13的滑动摩擦阻力和最小化的滑动摩擦阻力的表面压力依赖性的烘烤可硬化的表面处理的铝合金板,其包括含有 Mg和Si的量为至少0.4重量%,其表面上的Mg 2 Si和Fe富镀层的涂层重量为1至50g / m 2。 通过在富Fe镀层下形成作为底涂层的锌酸盐层,进一步提高镀层附着力。 优选的富Fe镀层是含有20〜80重量%的Zn以提高耐腐蚀性的Fe-Zn合金镀层。 含有30〜40重量%Zn的Fe-Zn合金镀层满足成型性和耐腐蚀性。
    • 8. 发明授权
    • Fuel feed apparatus having inner connecting structure
    • 具有内部连接结构的燃料供给装置
    • US07249594B2
    • 2007-07-31
    • US11047728
    • 2005-02-02
    • Koichi Hashiguchi
    • Koichi Hashiguchi
    • F02M37/04
    • F02M37/025F02M37/106Y10T137/86187
    • A fuel feed apparatus feeds fuel in a fuel tank to the outside of the fuel tank. The fuel feed apparatus includes a flange that covers an accommodation hole of the fuel tank, a fuel pump that pumps fuel, and a sub-tank accommodating the fuel pump. The sub-tank is capable of reciprocating relative to the flange in the axial direction of struts, which support the flange. The struts are positioned circumferentially outwardly to the sub-tank. The sub-tank has a lid 70. Holding portions are provided on the lid to axially movably hold the struts. Thus, an assembling work of the fuel feed apparatus can be eased without damaging internal components, when the struts are assembled.
    • 燃料供给装置将燃料箱中的燃料供给到燃料箱的外部。 燃料供给装置包括覆盖燃料箱的容纳孔的凸缘,泵送燃料的燃料泵和容纳燃料泵的副容器。 副罐能够在支撑法兰的支柱的轴向方向上相对于凸缘往复运动。 支柱沿圆周方向定位到副油箱。 副坦克具有盖70。 保持部设置在盖子上以轴向移动地保持支柱。 因此,当组装支柱时,可以缓和燃料供给装置的组装作业而不损坏内部部件。