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    • 2. 发明授权
    • Method for producing aluminum alloy castings and the resulting product
    • 生产铝合金铸件的方法和所得产品
    • US4808374A
    • 1989-02-28
    • US945241
    • 1986-12-22
    • Yoji AwanoYoshihiro ShimizuJunichi Takabatake
    • Yoji AwanoYoshihiro ShimizuJunichi Takabatake
    • C22C21/02C22F1/043C22C1/02
    • C22F1/043C22C21/02
    • A method for producing aluminum alloy castings and the resulting product having improved toughness. An Al-Si or Al-Si-Cu alloy containing 4 to 24 wt % of silicon, iron and other incidental impurities, the balance being aluminum is melted, and the melt is heated to a temperature between 780.degree. C. and 950.degree. C. The melt is poured into a mold and there solidified. A solution heat treatment and aging are then conducted. The process is suitable for an alloy containing 0.25 to 1.4 wt % of iron. In a preferred embodiment, the alloy consists essentially of 6 to 12 wt % Si, 2 wt % Cu, 0.2 to 0.4 wt % Mg and other incidental impurities, the balance being aluminum. The solution heat treatment is preferably carried out by heating between 525.degree. 545.degree. C. for a period of 1 to 5 hours.
    • 一种生产铝合金铸件的方法,所得产品具有改进的韧性。 含有4〜24重量%的硅,铁和其他附带杂质的Al-Si或Al-Si-Cu合金,余量由铝熔化,将熔体加热至780℃至950℃ 将熔体倒入模具中固化。 然后进行固溶热处理和老化。 该方法适用于含0.25-1.4%(重量)铁的合金。 在优选的实施方案中,合金基本上由6-12重量%的Si,2重量%的Cu,0.2-0.4重量%的Mg和其它附带的杂质组成,余量为铝。 固溶热处理优选通过在525°545℃之间加热1〜5小时的时间。
    • 9. 发明申请
    • Apparatus for moving window glass of vehicle
    • 用于移动车窗玻璃的装置
    • US20070130835A1
    • 2007-06-14
    • US11636457
    • 2006-12-11
    • Yukio IsomuraShigeyuki SuzukiYoshihiro Shimizu
    • Yukio IsomuraShigeyuki SuzukiYoshihiro Shimizu
    • E05F11/48
    • E05F11/481E05F15/689E05Y2201/652E05Y2900/55
    • An apparatus for moving a window glass of a vehicle includes a carrier fixed to a window glass, a guiding rail for slidably supporting the carrier, a driven member fixed to the carrier and an actuator for driving the driven member. The actuator includes a cylinder-shaped rotational driving member for driving the driven member, a holder provided at an outside of the rotational driving member and having an arc-shaped inner surface facing an outer circumferential surface of the rotational driving member and coaxial with the rotational driving member and an arc-shaped moving member having a circumferential length longer than that of the inner surface of the holder, the moving member being provided between the rotational driving member and the inner surface of the holder for circumferential movement by the driven member.
    • 用于移动车辆的窗玻璃的装置包括固定到窗玻璃的托架,用于可滑动地支撑托架的导轨,固定到托架的从动构件和用于驱动从动构件的致动器。 致动器包括用于驱动从动构件的圆柱形旋转驱动构件,设置在旋转驱动构件的外侧的保持器,具有面向旋转驱动构件的外周面的弧形内表面,与旋转驱动构件同轴 所述移动构件设置在所述旋转驱动构件和所述保持器的所述内表面之间,以通过所述被驱动构件周向运动,所述驱动构件和弧形移动构件具有比所述保持器的内表面长的圆周长度。
    • 10. 发明授权
    • HITLESS PATH SWITCHING RING NETWORK, HITLESS PATH SWITCHING TRANSMISSION SYSTEM, NODE DEVICE FOR A HITLESS PATH SWITCHING RING NETWORK, AND FAILURE OCCURRENCE-TIME HITLESS PATH SWITCHING TRANSMISSION METHOD IN A RING NETWORK
    • 无缝路切换环网络,无缝路切换传输系统,无缝路径切换环网络节点设备,无故障无线路由切换传输方式在网络中
    • US06633537B1
    • 2003-10-14
    • US09439305
    • 1999-11-12
    • Yoshihiro Shimizu
    • Yoshihiro Shimizu
    • G01R3108
    • H04J3/085H04J2203/0042H04J2203/006H04L12/437
    • A hitless path switching ring network capable of switching from a work transmission line to a protection transmission line without instantaneous hitting of a signal when a failure occurs in the work transmission line. In the hitless path switching ring network, a node device includes a first memory section storing a signal being transmitted onto the work transmission line during normal operation, and a first read control section, at the time of failure occurrence, reading out the transmitted signal, held before failure occurrence, from the first memory section and sending out the transmitted signal through the protection transmission line in the opposite direction from the transmission direction employed before failure occurrence. Another node device includes a second memory section for storing the signal received through the work transmission line during normal operation, a third memory section for storing the signal received through the protection transmission line during failure occurrence, and a phase adjusting section for matching the time phase of the received signal in the second memory section with the time phase of the received signal in the third memory section and outputting the received signal held before failure occurrence.
    • 能够在工作传输线路中发生故障时能够从工作传输线路切换到保护传输线路而不瞬间击中信号的无中断路径切换环网络。 在无中断路径切换环网中,节点装置包括存储在正常操作期间正在发送到工作传输线路上的信号的第一存储器部分和第一读取控制部分,在发生故障时读出发送的信号, 在第一存储部分之前保持发送信号,并且通过保护传输线沿与发生故障之前使用的传输方向相反的方向发送发送信号。 另一节点装置包括:第二存储器部分,用于存储正常操作期间通过工作传输线路接收到的信号;第三存储器部分,用于存储在发生故障期间通过保护传输线路接收到的信号;以及相位调整部分,用于使时间相位匹配 在第三存储器部分中接收信号的时间相位在第二存储器部分中的接收信号,并输出在发生故障之前保持的接收信号。