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    • 2. 发明授权
    • Distributor type fuel injection pump and power transmission device
    • 分配器型燃油喷射泵和动力传动装置
    • US6004106A
    • 1999-12-21
    • US19928
    • 1998-02-06
    • Hajime MachidaSatoshi KitamuraJun Matsubara
    • Hajime MachidaSatoshi KitamuraJun Matsubara
    • F02B67/06F02M39/02F02M41/14F02M59/44F04B49/00F02M41/00
    • F02M39/02F02M41/1405F02M59/44
    • In a distributor type fuel injection pump and a power transmission pump for transmitting power to the fuel injection pump, when a rotation system member of the injection pump is seized if anything should happen, only an injection pump is damaged to thereby greatly reduce damage to an engine. To this end, an annular groove is provided in a rotor to which power from the engine is transmitted, and the annular groove constitutes a frail portion of the rotor. The annular groove is positioned along the rotor so that all or most of the sliding portions of the rotor are located on a side of the groove opposite to a power supply side. When seizure occurs in the sliding portions of the rotor to prevent rotation, the rotor is twisted off at the annular groove by the power from the engine, so that rotation of a power supply side portion of the rotor is not prevented.
    • 在分配器型燃油喷射泵和用于向燃油喷射泵发送动力的动力传递泵的情况下,如果发生任何事情,则当注射泵的旋转系统构件被卡住时,只有注射泵被损坏,从而大大降低了对 发动机。 为此,在转子中设置有环形槽,来自发动机的动力被传递到该转子上,环形槽构成转子的较小部分。 环形槽沿着转子定位,使得转子的所有或大部分滑动部分位于与电源侧相对的槽的一侧。 当在转子的滑动部分发生卡塞以防止旋转时,转子通过来自发动机的动力在环形槽处扭转,从而不能防止转子的电源侧部分的旋转。
    • 4. 发明授权
    • Double-layer magneto-optical recording method without using an initial
magnetic field
    • 不使用初始磁场的双层磁光记录方法
    • US5461595A
    • 1995-10-24
    • US173913
    • 1993-12-27
    • Hajime Machida
    • Hajime Machida
    • C09D5/23G11B11/105G11B13/04
    • G11B11/10586G11B11/10519
    • A method of magneto-optical recording and overwriting information onto a double-layer magneto-optical recording medium which has laminated first and second magnetic layers having different coercive forces at a lower operation temperature and a higher operation temperature of which one is a recording operation temperature and the other is an erasing operation temperature, without using an initializing external magnetic field. The method includes the steps of recording by applying a laser beam to an area of the recording medium at a power level corresponding to one of these operating temperatures and erasing by applying a laser beam to an area of the recording medium at a different power level corresponding to the other of the operating temperatures, while applying a bias magnetic field to the magneto-optical recording medium with the same magnetization direction during both recording and erasing, the intensity of the bias magnetic field being greater than the coercive forces of the first and second magnetic layers at the lower operation temperature.
    • 一种在双层磁光记录介质上磁光记录和重写信息的方法,其具有在较低操作温度下具有不同矫顽力的层压的第一和第二磁性层,以及较高的操作温度,其中一个是记录操作温度 另一种是擦除操作温度,而不使用初始化外部磁场。 该方法包括以对应于这些操作温度之一的功率电平将激光束施加到记录介质的区域并通过以对应于不同功率电平施加激光束到记录介质的区域来擦除的步骤 在另一个操作温度下,同时在记录和擦除期间以相同的磁化方向对磁光记录介质施加偏置磁场,偏磁场的强度大于第一和第二磁场的矫顽力 磁性层在较低的工作温度。
    • 8. 发明授权
    • Method of magneto-optical recording and overwriting
    • 磁光记录和重写方法
    • US5420836A
    • 1995-05-30
    • US948452
    • 1992-09-21
    • Hajime Machida
    • Hajime Machida
    • C09D5/23G11B11/105G11B13/04G11B11/10G11B11/12
    • G11B11/10586G11B11/10519
    • A method of magneto-optical recording and overwriting information onto a double-layer magneto-optical recording medium which has laminated first and second magnetic layers having different coercive forces at a lower operation temperature and a higher operation temperature of which one is a recording operation temperature and the other is an erasing operation temperature, without using an initializing external magnetic field. The method includes the steps of recording by applying a laser beam to an area of the recording medium at a power level corresponding to one of these operating temperatures and erasing by applying a laser beam to an area of the recording medium at a different power level corresponding to the other of the operating temperatures, while applying a bias magnetic field to the magneto-optical recording medium with the same magnetization direction during both recording and erasing, the intensity of the bias magnetic field being greater than the coercive forces of the first and second magnetic layers at the lower operation temperature.
    • 一种在双层磁光记录介质上磁光记录和重写信息的方法,其具有在较低操作温度下具有不同矫顽力的层压的第一和第二磁性层,以及较高的操作温度,其中一个是记录操作温度 另一种是擦除操作温度,而不使用初始化外部磁场。 该方法包括以对应于这些操作温度之一的功率电平将激光束施加到记录介质的区域并通过以对应于不同功率电平施加激光束到记录介质的区域来擦除的步骤 在另一个操作温度下,同时在记录和擦除期间以相同的磁化方向对磁光记录介质施加偏置磁场,偏磁场的强度大于第一和第二磁场的矫顽力 磁性层在较低的工作温度。
    • 9. 发明授权
    • Magneto-optical recording medium
    • 磁光记录介质
    • US4883710A
    • 1989-11-28
    • US113489
    • 1987-10-28
    • Hajime Machida
    • Hajime Machida
    • G11B11/105
    • G11B11/10586Y10S428/90Y10T428/265
    • A magneto-optical recording medium is disclosed, which comprises a substrate, and a magnetic layer supported on the substrate, the magnetic layer comprising (1) a first magnetic layer comprising a magnetic oxide with perpendicular magnetic characteristics, having a saturation magnetization Ms of 100 Gauss or less and a coercive force Hc.sub.1 of 1 KOe or less, and (2) a second magnetic layer comprising a magnetic oxide having a thermal conductivity.times.of less than 0.3 cal/cm.sec..degree.C. and a light absorption coefficient .alpha. of 5.times.10.sup.3 cm.sup.-1 or more. This magneto-optical recording medium may further comprises an auxiliary production layer comprising a magnetic material, which is overlaid adjacent to the first magnetic layer.
    • 公开了一种磁光记录介质,其包括基板和支撑在基板上的磁性层,所述磁性层包括(1)包含具有垂直磁特性的磁性氧化物的第一磁性层,其饱和磁化强度Ms为100 高斯或更小,矫顽力Hc1为1KOe以下,(2)包含导热率小于0.3cal / cm·sec的磁性氧化物的第二磁性层。 ℃,光吸收系数α为5×10 3 cm -1以上。 该磁光记录介质还可以包括辅助生产层,其包括与第一磁性层相邻的磁性材料。