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    • 12. 发明授权
    • Drive power transmission device
    • 驱动传动装置
    • US4756209A
    • 1988-07-12
    • US68568
    • 1987-06-30
    • Tetsurou HamadaKazunori ShibuyaKatsuhiko MasudaKazuhiko Shimada
    • Tetsurou HamadaKazunori ShibuyaKatsuhiko MasudaKazuhiko Shimada
    • B60K17/35B60K17/346F16H1/44F16H1/42
    • F16H48/22B60K17/3465F16H48/10F16H48/26
    • A drive power transmission device includes an input carrier having a front portion for receiving drive power from a drive source and a tubular rear portion, a planetary gear mechanism having a sun gear disposed coaxially in the tubular portion of the input carrier, a plurality of planet gears meshing with the sun gear and rotatably supported on a periphery of the tubular portion, and a ring gear mounted concentrically on the tubular portion and meshing with the planet gears, a first output shaft coupled to and supporting the sun gear, an intermediate tubular member connectable to the first output shaft and a rear end of the tubular rear portion of the input carrier and disposed concentrically with the first output shaft, an outer tubular member connectable to the ring gear and disposed concentrically with the intermediate tubular member, a viscous shear coupling mechanism interconnecting the outer tubular member and the intermediate tubular member, and a second output shaft coupled to and supporting the outer tubular member. The viscous shear coupling mechanism comprises two groups of mutually interleaves plates disposed in a fluid chamber defined between the intermediate tubular member and the outer tubular member and filled with a fluid and fixedly fitted over the intermediate tubular member and in the outer tubular member.
    • 一种驱动动力传递装置,包括:输入托架,具有用于从驱动源和管状后部接收驱动力的前部;行星齿轮机构,其具有同轴地布置在输入托架的管状部分中的太阳轮;多个行星 与太阳齿轮啮合的齿轮和可旋转地支撑在管状部分的周边上的齿轮,以及同心地安装在管状部分上并与行星齿轮啮合的环形齿轮,联接到太阳齿轮并支撑太阳齿轮的第一输出轴,中间管状部件 可连接到第一输出轴和输入托架的管状后部的后端并且与第一输出轴同心设置,外部管状构件,其可连接到环形齿轮并与中间管状构件同心设置,粘性剪切耦合 将外部管状构件和中间管状构件互连的机构,以及联接到该第二输出轴的第二输出轴 并支撑外管状构件。 粘性剪切耦合机构包括两组相互交错的板,它们设置在限定在中间管状构件和外部管状构件之间的流体室中,并填充有流体并固定地装配在中间管状构件和外部管状构件上。
    • 16. 发明授权
    • Drive wheel torque controlling system for vehicle
    • 车辆扭矩控制系统
    • US5287941A
    • 1994-02-22
    • US914106
    • 1992-07-16
    • Katsuhiko MasudaJun AokiYasuji Shibahata
    • Katsuhiko MasudaJun AokiYasuji Shibahata
    • B60K17/344B60K23/04F16D48/02F16D48/12
    • B60K23/04
    • A drive wheel torque control system for a vehicle includes control means for controlling a variable differential motion limiting device provided between drive wheels to distribute a predetermined LSD torque from a racing drive wheel to a nonracing drive wheel. The control means includes vehicle speed determining means for determining a vehicle speed from a follower wheel spaced, drive wheel speed determining means adapted to select a smaller one of the drive wheel speeds as a drive wheel speed, when the inner-side wheel in turning movement is racing, and to select a larger one of the drive wheel speeds, when the outer-side wheel in turning movement is racing, and torque determining means for determining the LSD torque from the vehicle speed and the drive wheel speed. This ensures that only when the inner wheel is racing, the smaller one of the drive wheel speeds can be selected, and an LSD torque can be distributed to the outer wheel, thereby easily effecting the adjustment of the locus of turning movement of the vehicle when the inner wheel is racing, while properly controlling the behavior of the vehicle.
    • 用于车辆的驱动轮扭矩控制系统包括控制装置,用于控制设置在驱动轮之间的可变差动运动限制装置,以将预定的LSD扭矩从赛车驱动轮分配到非驱动轮。 所述控制装置包括:车速决定装置,用于确定从所述随动轮​​间隔开的车速;驱动轮速度确定装置,当所述内侧车轮转动时,适于选择所述驱动轮速度中较小的一个作为驱动轮速度; 正在赛车,并且当转动中的外侧车轮正在赛车时选择较大的一个驱动轮速度,以及用于根据车速和驱动轮速度确定LSD扭矩的扭矩确定装置。 这样可以确保只有当内轮正在赛车时,可以选择较小的一个驱动轮速度,并且可以将LSD扭矩分配到外轮,从而容易地实现车辆的转动轨迹的调整 内轮正在赛车,同时适当地控制车辆的行为。
    • 17. 发明授权
    • Torque transmitting device
    • 扭矩传动装置
    • US5005685A
    • 1991-04-09
    • US212711
    • 1988-06-28
    • Masami TakanoTetsurou HamadaKatsuhiko Masuda
    • Masami TakanoTetsurou HamadaKatsuhiko Masuda
    • F16D35/00F16H48/26
    • F16D35/005
    • A torque transmitting device includes a rotatable case having defined therein a fluid chamber extending axially and filled with a fluid, a rotatable shaft disposed coaxially in the fluid chamber and rotatable with respect to the case, a plurality of outer plates and inner plates disposed coaxially in the fluid chamber for relative torque transmission between the rotatable case and the rotatable shaft through the fluid, the outer plates having outer peripheries engageable with an inner peripheral surface of the rotatable case for rotation with the rotatable case, the inner plates having inner peripheries engageable with an outer peripheral surface of the rotatable shaft for rotation with the rotatable shaft, and members disposed between the inner peripheral surface of the rotatable case and the outer peripheries of the outer plates or between the outer peripheral surface of the rotatable shaft and the inner peripheries of the inner plates for holding the rotatable case and the rotatable shaft in engagement with each other while allowing them to be angularly shifted through a predetermined angle.
    • 扭矩传递装置包括:旋转壳体,其中限定有轴向延伸并且填充有流体的流体室;同轴地设置在流体室中并可相对于壳体旋转的可旋转轴;多个外板和内板,其同轴地设置 所述流体室用于通过所述流体在所述可旋转壳体和所述可旋转轴之间进行相对扭矩传递,所述外板具有可与所述可旋转壳体的内周表面接合的外周边,用于与所述可旋转壳体一起旋转,所述内板具有内周边, 可旋转轴的外周面与旋转轴一起旋转,以及设置在可旋转壳体的内周面与外板的外周面之间或者设置在可旋转轴的外周面之间或者外周面之间的部件 用于保持旋转壳体和可旋转的内板 轴彼此接合,同时允许它们成角度地移动预定角度。
    • 18. 发明授权
    • Viscous coupling
    • 粘性耦合
    • US4972931A
    • 1990-11-27
    • US356724
    • 1989-05-25
    • Katsuhiko MasudaMasami TakanoHiroyuki Makino
    • Katsuhiko MasudaMasami TakanoHiroyuki Makino
    • F16D35/00F16H48/12F16H48/38F16H48/40
    • F16D35/005
    • A viscous coupling has a casing having a fluid chamber defined therein, and a plurality of first plates and a plurality of second plates, the first and second plates being rotatable about a common axis and disposed in the fluid chamber. The first and second plates drivingly interconnect the casing and at leest one rotatable member. A viscous fluid introduced into the fluid chamber through an inlet port defined in one end wall of the casing flows circumferentially in and along an annular groove defined in an inner surface of the end wall. Each of the first and second plates has a plurality of holes defined therein and spaced circumferentially thereof. The viscous fluid flows through these holes into spaces between adjacent ones of the first and second plates. The other end wall of the casing has an air vent hole defined therein which allows air to escape from the fluid chamber when the viscous fluid is charged into the fluid chamber.
    • 粘性联轴器具有限定在其中的流体室的壳体,以及多个第一板和多个第二板,所述第一板和第二板可围绕公共轴线旋转并设置在流体室中。 第一和第二板驱动地互连壳体和最少一个可旋转构件。 通过限定在壳体的一个端壁中的入口引入到流体室中的粘性流体沿着限定在端壁的内表面中的环形槽沿周向流动。 第一和第二板中的每一个具有限定在其中的多个孔,并且在其周向间隔开。 粘性流体通过这些孔流入相邻的第一和第二板之间的空间。 壳体的另一个端壁具有限定在其中的通气孔,当粘性流体装入流体室时,允许空气从流体室逸出。
    • 20. 发明授权
    • Differential device using a viscous fluid coupling mechanisms
    • 差压装置采用粘性流体耦合机构
    • US4784016A
    • 1988-11-15
    • US4723
    • 1987-01-20
    • Katsuhiko MasudaSeiichi HiraiTetsuro Hamada
    • Katsuhiko MasudaSeiichi HiraiTetsuro Hamada
    • F16D35/00F16H48/18F16H35/04
    • F16D35/005F16H48/12Y10T74/19005
    • A differential device using a fluid includes a differential case and a pair of sleeves which are rotatably supported by the differential case. Each of the outer end portions of the sleeves is connectable to one of a pair of rotary output shafts, while the inner end portions of the same are protruded into the case to face each other with a small clearance left therebetween. A chamber to be filled with a viscous liquid is defined between the case and the sleeves. A plurality of drive plates which are rotatable integrally with the case and a plurality of driven plates which are rotatable integrally with the sleeves are disposed in the chamber alternately with each other and in an overlapping manner. Guide rings are interposed between the nearby driven plates to position them at equally spaced locations. One of the guide rings is constantly located in a position where the inner end faces of the sleeves face each other, whereby the driven plates are prevented from falling into the clearance between the inner end faces of the sleeves.
    • 使用流体的差速装置包括差速器壳体和由差速器壳体可旋转地支撑的一对套筒。 套筒的每个外端部可连接到一对旋转输出轴中的一个,同时其内端部突出到壳体中,彼此面对,间隙较小。 在壳体和套筒之间限定要填充粘性液体的腔室。 与壳体一体地旋转的多个驱动板和与套筒一体地旋转的多个从动板在彼此交替地以重叠的方式设置在该室中。 引导环介于附近的驱动板之间,以将它们定位在相等间隔的位置。 导向环中的一个恒定地位于套筒的内端面彼此面对的位置,从而防止从动板落入套筒的内端面之间的间隙中。