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    • 1. 发明申请
    • VEHICLE STEERING DEVICE
    • 车辆转向装置
    • US20120248724A1
    • 2012-10-04
    • US13434943
    • 2012-03-30
    • Katsuji WatanabeKenji Hattori
    • Katsuji WatanabeKenji Hattori
    • B62D3/12
    • B62D3/12B62D3/123F16H55/283
    • A vehicle steering device in which steering torque is transmitted from a steering wheel to steered wheels via a rack-and-pinion mechanism. The steering device comprises a rack shaft in which a rack is formed, two rack support parts positioned to both sides of a longitudinal direction of the rack shaft relative to the position of a pinion, and an urging part positioned between the two rack support parts. The two rack support parts are positioned near each other so as to support only a back surface of the region where the rack is formed in the rack shaft which is positioned in a steering neutral position, the back surface being supported so as to be capable of sliding in the longitudinal direction. The urging part urges the rack shaft in at least a direction other than towards the rack.
    • 一种车辆转向装置,其中转向扭矩通过齿条 - 齿轮机构从方向盘传递到转向轮。 转向装置包括齿条轴,其中齿条形成,两个齿条支撑部分相对于小齿轮的位置定位在齿条轴的纵向方向的两侧,以及位于两个齿条支撑部分之间的推动部分。 两个齿条支撑部分彼此靠近地定位,以仅支撑在位于转向中立位置的齿条轴中形成齿条的区域的后表面,该后表面被支撑成能够 沿纵向滑动。 推动部件至少沿着朝向齿条的方向推动齿条轴。
    • 2. 发明申请
    • SHAFT SUPPORT STRUCTURE, CLIP, AND METAL MOLD FOR SHAFT SUPPORT STRUCTURE
    • 轴承支撑结构,夹子和金属模具用于轴支撑结构
    • US20120223207A1
    • 2012-09-06
    • US13504003
    • 2010-10-14
    • Kenji HattoriTaku Hirama
    • Kenji HattoriTaku Hirama
    • F16M13/00B22D19/12F16B17/00B29C33/42
    • F16B21/075B29C45/0017B29C45/006B29C45/33B29L2031/7282F16B2200/10F16L3/1075H02G3/32
    • A clip can fix a linear member, and is integrally molded by a base body, a bearing portion, and a locking lid. In the base body, the locking lid is integrally molded on one end to be freely rotatable. The bearing portion extends from one side of the base body, and includes an opening portion wherein a rotating shaft rotatably enters. In the locking lid, there are integrally molded a locking portion which can lock in the base body on the other side; the rotating shaft which can freely rotate in the bearing portion including the opening portion on one side; and a planar member covering the holding portion between the locking portion and the rotating shaft. Shapes and structures of the base body, the bearing portion, and the locking lid are made such that a molding metal mold is only pulled in one direction of a dividing line, and a slider is only pulled in one direction of a lower side, so that not only an entire size of the metal mold can be reduced, but also a plurality of pieces of molded articles can be simultaneously produced by one metal mold.
    • 夹子可以固定线性构件,并且由基体,轴承部分和锁定盖整体模制。 在基体中,锁定盖在一端整体模制成可自由转动。 轴承部分从基体的一侧延伸,并且包括旋转轴可旋转地进入的开口部。 在锁定盖中,一体地模制有可锁定在另一侧的基体中的锁定部分; 所述旋转轴能够在包括一侧的所述开口部的轴承部中自由旋转; 以及覆盖所述锁定部和所述旋转轴之间的保持部的平面构件。 基体,轴承部分和锁定盖的形状和结构被制成使得模制金属模具仅沿分割线的一个方向被拉动,并且滑块仅被拉向下侧的一个方向,因此 不仅可以减少金属模具的整体尺寸,而且可以通过一个金属模具同时制造多个模制品片。
    • 4. 发明授权
    • Fault diagnostic apparatus for a hydraulic pressure source
    • 液压源故障诊断装置
    • US5074145A
    • 1991-12-24
    • US623137
    • 1990-12-06
    • Kenji HattoriJiro SuzukiKazutoshi Tashima
    • Kenji HattoriJiro SuzukiKazutoshi Tashima
    • B60R16/08B60T8/88B60T8/90B60T13/14B60T17/22G01M3/26
    • B60T8/90B60T13/148B60T17/221
    • An apparatus for diagnosing a fault of a hydraulic pressure source, including a fluid tank, a pump for pumping up fluid from the fluid tank, an accumulator for accumulating the fluid pumped up by the pump, a pressure detector for detecting a pressure of the fluid in the accumulator and generating an output signal, a pump drive or motor responsive to the output signal for driving the pump, and an electromagnetic valve of normally closed type interposed either in a flow path between the accumulator and a hydraulic pressure instrument or in a flow path between the tank and the hydraulic pressure instrument. This apparatus comprises an excitation signal generator for generating an excitation signal which excites the electromagnetic valve for a predetermined period of time, and a control unit for determing an anomaly on the basis of the output signal from the pressure detector. If any fault exists in the hydraulic pressure source, fall and rise of the hydraulic pressure is not effected normally. The control unit determines whether the variation of the hydraulic pressure is normal or abnormal on the basis of the output signal from the pressure detector.
    • 一种用于诊断液压源的故障的装置,包括流体箱,用于从流体箱泵送流体的泵,用于积聚由泵抽出的流体的蓄能器,用于检测流体的压力的压力检测器 在累加器中产生输出信号,响应于用于驱动泵的输出信号的泵驱动器或电动机,以及插在蓄能器和液压仪器之间的流动路径中的常闭型电磁阀或流动 油箱与液压仪表之间的路径。 该装置包括用于产生激励电磁阀预定时间段的激励信号的激励信号发生器,以及用于基于来自压力检测器的输出信号来确定异常的控制单元。 如果液压源存在任何故障,液压的下降和上升不能正常进行。 控制单元基于来自压力检测器的输出信号来判定液压的变化是正常还是异常。
    • 9. 发明申请
    • Method for forming thin film on synthetic resin and multilayer film
    • 在合成树脂和多层膜上形成薄膜的方法
    • US20050158575A1
    • 2005-07-21
    • US10495077
    • 2002-11-06
    • Kenji HattoriEtsuo Ogino
    • Kenji HattoriEtsuo Ogino
    • G02B5/02B32B15/08C23C14/06C23C14/20G02B5/08G02B5/20G02F1/1333G02F1/1335G02F1/13357C23C14/32
    • G02B1/14C23C14/20G02B1/10G02B5/0833G02B5/0858G02F1/133553Y10T428/12569
    • An object of the invention, in the formation of a thin film on a synthetic resin, is to improve adhesiveness between the synthetic resin and the thin film by a relatively simple method. In the invention, a protective metallic layer is formed on a synthetic resin, and one thin film of (1) a semi-transmitting metallic mirror, (2) a total reflection metallic mirror, or (3) a transparent conductive film is formed. The material of the protective metallic layer is preferably selected from the group of Ti, Zr, Nb, Si, In, and Sn, and for sake of ensuring adhesiveness between the synthetic resin and the thin film, the film thickness of the protective metal layer is preferably 1 nm or more. Also, when the film thickness of the protective metallic layer is large, transmittance of the whole of the laminated film is lowered due to light absorption by the protective metallic layer, and hence, the film thickness of the protective metallic layer is preferably not more than 5 nm.
    • 本发明的目的在于在合成树脂上形成薄膜的方法是通过相对简单的方法改善合成树脂和薄膜之间的粘附性。 在本发明中,在合成树脂上形成保护金属层,形成(1)半透射金属镜,(2)全反射金属镜,或(3)透明导电膜的一个薄膜。 保护金属层的材料优选选自Ti,Zr,Nb,Si,In和Sn中的一种,为了确保合成树脂和薄膜之间的粘附性,保护金属层的膜厚度 优选为1nm以上。 此外,当保护金属层的膜厚大时,由于保护金属层的光吸收,整个层压膜的透光率降低,因此保护金属层的膜厚优选不大于 5nm。