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    • 2. 发明授权
    • Vehicle braking system with a stroke simulator and a servo device
    • 具有行程模拟器和伺服装置的车辆制动系统
    • US06247762B1
    • 2001-06-19
    • US09452721
    • 1999-12-03
    • Akihito KusanoMasahiro IndenToshiaki HamadaHiroshi Toda
    • Akihito KusanoMasahiro IndenToshiaki HamadaHiroshi Toda
    • B60T1374
    • B60T8/4081B60T7/042B60T8/96B60T13/686
    • The present invention is directed to a vehicle braking system having a stroke simulator and a servo device, which includes a pressure generator for generating a hydraulic braking pressure, a wheel brake cylinder operatively mounted on each wheel of the vehicle, a pressure control valve device which is disposed in a passage for communicating the pressure generator with the wheel brake cylinder, to control the hydraulic braking pressure supplied to the wheel brake cylinder, and an electronic controller for controlling at least in response to an amount of operation of the brake pedal. A master cylinder is provided for communicating with the wheel brake cylinder and supplying the hydraulic braking pressure into it in response to operation of the brake pedal, when at least one of the pressure generator, the pressure control valve device and the electronic controller is abnormal. A stroke simulator is connected to the master cylinder, and arranged to allow the brake pedal to advance in response to the amount of operation of the brake pedal. And, a servo device is provided for assisting the master cylinder to operate when at least one of the pressure generator, the pressure control valve device and the electronic controller is abnormal.
    • 本发明涉及具有行程模拟器和伺服装置的车辆制动系统,其包括用于产生液压制动压力的压力发生器,可操作地安装在车辆的每个车轮上的车轮制动缸,压力控制阀装置, 设置在用于使压力发生器与车轮制动缸连通的通道中,以控制供应到车轮制动缸的液压制动压力,以及用于至少响应于制动踏板的操作量来控制的电子控制器。 当压力发生器,压力控制阀装置和电子控制器中的至少一个异常时,主缸被设置用于响应于制动踏板的操作而与车轮制动缸连通并提供液压制动压力。 行程模拟器连接到主缸,并且布置成允许制动踏板响应于制动踏板的操作量而前进。 并且,当压力发生器,压力控制阀装置和电子控制器中的至少一个异常时,提供一个辅助主缸操作的伺服装置。
    • 4. 发明授权
    • Fluid pressure controlling solenoid valve
    • 流体压力控制电磁阀
    • US4679589A
    • 1987-07-14
    • US909389
    • 1986-09-19
    • Masahiro IndenKazutaka KuwanaNobuyasu NakanishiNoboru Noguchi
    • Masahiro IndenKazutaka KuwanaNobuyasu NakanishiNoboru Noguchi
    • F16K31/06B60T8/36B60T8/50F15B13/044
    • B60T8/5043B60T8/3615B60T8/3635B60T8/3645B60T8/5093Y10T137/87217
    • A fluid pressure controlling solenoid valve is disclosed for producing an oil pressure which drives a brake pressure controlling piston in a manner such that an brake oil pressure applied to the brakes associated with wheels in response to the depression of a brake pedal is adjusted to a low value in order to prevent a high slip ratio of wheels with respect to a road surface and to a high value when the slip ratio is reduced. A switching solenoid valve is assembled on the upper end face of an intermediate member formed of a magnetic material and having a first fluid path extending therethrough from its upper to its lower end face for selectively connecting the first fluid path with a reduced pressure input port and a high pressure input port. A switching solenoid valve which opens or closes the connection between the first fluid path and the output port is assembled on the lower end face of the intermediate member. The solenoid valve has an orifice of a reduced diameter which maintains a communication between the first fluid path and the output port.
    • 公开了一种用于产生油压的流体压力控制电磁阀,其以使得响应于制动踏板的下压而被施加到与车轮相关联的制动器的制动油压力调节到低的方式驱动制动压力控制活塞 以防止车轮相对于路面的高滑移率,并且当滑移率减小时为高值。 开关电磁阀组装在由磁性材料形成的中间构件的上端面上,并且具有从其上部延伸穿过其下端面的第一流体路径,用于选择性地将第一流体路径与减压输入端口连接,以及 高压输入口。 打开或关闭第一流体路径和输出端口之间的连接的开关电磁阀组装在中间件的下端面上。 电磁阀具有直径减小的孔,其保持第一流体路径和输出端口之间的连通。
    • 5. 发明授权
    • Control device for electric vehicle stopping at slope road
    • 电动车在斜坡路停车的控制装置
    • US06755489B2
    • 2004-06-29
    • US10319548
    • 2002-12-16
    • Tetsuya KunoMasahiro Inden
    • Tetsuya KunoMasahiro Inden
    • B60T712
    • B60W30/18118B60T7/122B60T2201/06B60W10/04B60W10/08B60W10/18B60W30/18027B60W30/1819B60W2510/0604B60W2520/10B60W2550/142Y02T10/7258Y10S477/901
    • A control device for an electric vehicle stopping at a slope road which reduces a power consumption of the electric motor when the vehicle is stopping at the slope road with the generation of a drive torque. The device judges the stopping state of the vehicle at the slope road when a condition that a throttle opening degree is not zero, that the drive torque is not zero, and that a vehicle speed is zero continues for a predetermined time, applies a hydraulic pressure P relative to wheel cylinder, and decreases the drive torque outputting to the motor to be zero. The device judges a release of the stopping state at the slope road when a condition that a throttle opening degree becomes greater than a throttle opening degree under the vehicle stopping state at the slope road, recovers the drive torque, and gradually releases an application of the hydraulic pressure to the wheel cylinder.
    • 一种用于在斜坡道路停车的电动车辆的控制装置,其在车辆在产生驱动转矩时在斜坡道路停车时降低电动机的功率消耗。 当节气门开度不为零,驱动转矩不为零,车速为零的状态持续预定时间时,装置判断车辆在斜坡路上的停止状态,施加液压 P相对于轮缸,并将输出到电动机的驱动转矩减小到零。 当在斜坡道路处的停车状态下节气门开度大于节气门开度的条件时,装置判断在斜坡路上的停止状态的释放,恢复驱动转矩,并逐渐释放 液压至轮缸。
    • 7. 发明授权
    • Anti-lock brake circuit with a piezo hydraulic pump and changeover valve
    • 带有PIEZO液压泵和换向阀的防抱死制动电路
    • US5141297A
    • 1992-08-25
    • US687005
    • 1991-04-18
    • Kazutaka KuwanaTakashi NagashimaMasahiro IndenYasuo KuwabaraJun FunakawaAkemi TakadaTetsuya Morita
    • Kazutaka KuwanaTakashi NagashimaMasahiro IndenYasuo KuwabaraJun FunakawaAkemi TakadaTetsuya Morita
    • B60T8/48B60T8/40B60T8/44
    • B60T8/445B60T8/4018B60T8/4031
    • A brake control device for vehicles includes a master cylinder, a plurality of wheel cylinders, and an anti-lock control apparatus disposed between the master cylinder and the wheel cylinders of at least one hydraulic circuit. The anti-lock control apparatus includes a hydraulic pump, a reservoir and a changeover device which is selectively changed over at least between a first condition which permits an increase in the hydraulic pressure of the wheel cylinders of at least one hydraulic circuit and a second condition which permits an decrease in the hydraulic pressure of the wheel cylinders of at least one hydraulic circuit in response to the locking condition of the road wheels. The hydraulic pump includes a housing, a slidable piston device for defining a pump chamber which is communicated with the reservoir and the changeover device at a side of one end thereof in the housing, an inlet check valve disposed between the pump chamber and the reservoir for permitting fluid communication from the reservoir to the pump chamber and for interrupting fluid communication from the pump chamber to the reservoir, an outlet check valve disposed between the pump chamber and the changeover device for permitting fluid communication from the pump chamber to the changeover device and for interrupting fluid communication from the changeover device to the pump chamber, and a piezo element for reciprocating the piston device disposed at the other end of the piston device.
    • 用于车辆的制动控制装置包括主缸,多个轮缸和设置在至少一个液压回路的主缸和轮缸之间的防抱死控制装置。 防抱死控制装置包括液压泵,储存器和切换装置,该切换装置至少在允许至少一个液压回路的轮缸的液压增加的第一状态和第二状态 这允许响应于车轮的锁定状态而降低至少一个液压回路的轮缸的液压压力。 液压泵包括壳体,滑动活塞装置,用于限定泵室,该泵室在其一端的壳体中与贮存器和转换装置连通;入口止回阀,设置在泵室和储存器之间, 允许从储存器到泵室的流体连通并且用于中断从泵室到储存器的流体连通,设置在泵室和切换装置之间的出口止回阀,用于允许从泵室到切换装置的流体连通, 中断从切换装置到泵室的流体连通,以及用于使设置在活塞装置的另一端的活塞装置往复运动的压电元件。
    • 8. 发明授权
    • Pressure control apparatus
    • 压力控制装置
    • US5823507A
    • 1998-10-20
    • US741364
    • 1996-10-30
    • Masahiro IndenYoshiyuki KatohAkihiko Sugiura
    • Masahiro IndenYoshiyuki KatohAkihiko Sugiura
    • F15B13/044B60T8/36B60T15/02F16K27/00G05D16/20H05K5/06F16K31/02
    • B60T8/3675B60T15/028F16K27/003G05D16/2013
    • A bobbin 7 around which a solenoid 6 is wound is connected to an electronic control unit 1 fixed to a base plate portion 3c through a connection terminal 11 penetrating a connection hole 2 and a guide hole 4 whose one end portion is fixed to a bobbin 7 and is connected to an end portion of a solenoid 6 and other end portion is connected to the connection hole 2, a hook portion 3d is engaged into a hole 10b so that a yoke 8 is supported, an electromagnetic-force generating portion 5 is assembled to a casing 3, gaps 18 and 21 are formed between the yoke 8 and the bobbin 7 so that the yoke 8 is made to be movable with respect to the bobbin 7 in the axial direction of the sleeve 13 and also in a direction perpendicular to the axial direction of the sleeve 13. When the casing 3 and the valve housing 14 are assembled, the sleeve 13 is smoothly inserted into the electromagnetic-force generating portion 5, and the yoke 8 is pressed and urged to the valve housing 14 by a ring spring 12.
    • 卷绕有螺线管6的绕线管7通过贯通连接孔2的连接端子11和一端固定在绕线管7上的导向孔4而与固定于基板部3c的电子控制单元1连接 并连接到螺线管6的端部,另一端部连接到连接孔2,钩部分3d接合到孔10b中,使得轭架8被支撑,电磁力产生部分5被组装 对于壳体3,在轭架8和线轴架7之间形成间隙18和21,使得轭架8能够在套筒13的轴向方向上相对于线轴7移动,并且在垂直于 套筒13的轴向。当组装壳体3和阀壳体14时,套筒13被平滑地插入到电磁力产生部分5中,并且轭8被按压并通过一个 环弹簧12。