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    • 5. 发明申请
    • VEHICLE BRAKE APPARATUS
    • 车辆刹车装置
    • US20150203083A1
    • 2015-07-23
    • US14416343
    • 2012-08-31
    • Tetsuya Miyazaki
    • Tetsuya Miyazaki
    • B60T8/1761B60T13/14B60T17/18
    • B60T8/1761B60T8/36B60T8/4081B60T8/441B60T13/142B60T13/145B60T13/662B60T13/686B60T17/18
    • A holding valve (61) is provided on an individual flow passage (51) connecting a main flow passage (52) and a wheel cylinder (42) to each other. The holding valve (61) permits communication between an upstream side and a downstream side in an open state to transmit the hydraulic pressure from an accumulator (32) to the wheel cylinder (42), and shuts off the communication between the upstream side and the downstream side in a closed state. Moreover, a pressure reducing valve (62) for realizing communication or shutoff between a reservoir (22) and a main flow passage (52) and between the reservoir (22) and the wheel cylinder (42) is provided on a pressure reducing individual flow passage (56) for connecting a reservoir flow passage (57) and the individual flow passage (51) to each other. Then, when a driver carries out a return operation on a brake pedal (10) during antiskid control, a brake ECU (100) inhibits the holding valve (61) in the closed state from shifting to the open state, maintains the holding valve (61) in the open state, and controls the pressure reducing valve (62) corresponding to this holding valve (61) to shift to the open state. As a result, a hydraulic pressure in the main flow passage (52) is decreased via the holding valve (61) and the pressure reducing valve (62) in the open state.
    • 在主流路(52)和轮缸(42)之间连接的单个流路(51)上设置有保持阀(61)。 保持阀(61)允许打开状态下的上游侧和下游侧之间的连通将液压从蓄能器(32)传递到轮缸(42),并且切断上游侧和 下游侧处于关闭状态。 此外,用于实现储存器(22)和主流路(52)之间以及储存器(22)和轮缸(42)之间的连通或关闭的减压阀(62)设置在减压单体流 用于将储存器流动通道(57)和各个流动通道(51)彼此连接的通道(56)。 然后,当驾驶员在防滑控制期间在制动踏板(10)上执行返回操作时,制动ECU(100)将关闭状态下的保持阀(61)禁止转换到打开状态,保持保持阀( 61)处于打开状态,并且控制与该保持阀(61)相对应的减压阀(62)转换到打开状态。 结果,主流路52中的液压通过保持阀61和减压阀62处于打开状态而减小。
    • 6. 发明申请
    • VEHICLE BRAKE APPARATUS
    • 车辆刹车装置
    • US20150158476A1
    • 2015-06-11
    • US14417921
    • 2012-08-31
    • Tetsuya Miyazaki
    • Tetsuya Miyazaki
    • B60T13/68B60T13/66B60T13/14
    • B60T13/686B60T7/042B60T8/4081B60T13/142B60T13/146B60T13/662B60T2270/604
    • A brake device for a vehicle comprises a master cylinder; a power hydraulic pressure source; a valve mechanism comprising a plurality of electromagnetic valves; a wheel cylinder for applying a braking force to a wheel; control means for controlling an operation of the valve mechanism; and upstream side hydraulic pressure adjustment means comprising an electromagnetic valve to be controlled by an electric signal in order to decrease a hydraulic pressure on an upstream side. The control means is configured to control the plurality of electromagnetic valves during an abnormal state in which there is a possibility of a leak of a working fluid in a brake system and to maintain the upstream side hydraulic pressure adjustment means in an operation preparation state so as to suppress a change in hydraulic pressure on the upstream side.
    • 一种用于车辆的制动装置包括主缸; 电力液压源; 阀机构,包括多个电磁阀; 用于向车轮施加制动力的轮缸; 用于控制阀机构的操作的控制装置; 以及上游侧液压调节装置,其包括由电信号控制的电磁阀,以便降低上游侧的液压。 控制装置被配置为在异常状态下控制多个电磁阀,在异常状态下,存在可能在制动系统中工作流体泄漏的可能性,并且将上游侧液压调节装置保持在操作准备状态,以便 以抑制上游侧的液压变化。
    • 7. 发明授权
    • Brake control system, and brake control method
    • 制动控制系统和制动控制方法
    • US08738260B2
    • 2014-05-27
    • US13389405
    • 2009-08-07
    • Tetsuya MiyazakiKazunori Nimura
    • Tetsuya MiyazakiKazunori Nimura
    • G06F7/70G06F19/00G06G7/00G06G7/76
    • B60T1/10B60L3/108B60L7/18B60L7/26B60L15/2009B60L2240/12B60L2240/14B60L2250/26B60T8/4081B60T2270/604Y02T10/645Y02T10/72Y02T10/7275
    • A brake control system includes: a friction brake unit for generating a friction braking force; a regenerative brake unit for generating a regenerative braking force; and a control unit for controlling the regenerative and friction brake units based on a regenerative target value and a friction target value defined based on a target deceleration, and for controlling a braking force by selecting one of a plurality of control modes including both a regeneration permission mode in which a total braking force is generated by the regenerative and friction braking forces, and a regeneration prohibition mode in which the target deceleration is generated by the friction braking force. In the permission mode, the control unit generates the total force by providing a delay, while in the prohibition mode, the control unit provides a delay smaller than the above delay to the friction braking force or does not provide a delay.
    • 制动控制系统包括:用于产生摩擦制动力的摩擦制动单元; 用于产生再生制动力的再生制动单元; 以及控制单元,其基于再生目标值和基于目标减速度限定的摩擦目标值来控制再生和摩擦制动单元,并且通过选择多个控制模式中的一个来控制制动力,所述多个控制模式包括再生允许 通过再生和摩擦制动力产生总制动力的模式,以及通过摩擦制动力产生目标减速度的再生禁止模式。 在允许模式中,控制单元通过提供延迟来产生总的力,而在禁止模式中,控制单元提供比上述延迟小于摩擦制动力的延迟,或者不提供延迟。
    • 8. 发明申请
    • BRAKE SYSTEM
    • 刹车系统
    • US20110316326A1
    • 2011-12-29
    • US13254262
    • 2010-02-02
    • Tetsuya MiyazakiTakayuki Yamamoto
    • Tetsuya MiyazakiTakayuki Yamamoto
    • B60T13/68B60T11/20B60T13/138
    • B60T8/885B60T8/344B60T8/4081B60T8/88B60T2270/402
    • A brake system including: (i) hydraulic brakes provided for respective wheels of a vehicle, and configured to be activated by hydraulic pressures of respective brake cylinders so as to restrain rotations of the respective wheels; (ii) a power hydraulic pressure source including a drive source that is activatable by supply of electric energy, and configured to generate hydraulic pressure by activation of the drive source; and (iii) a common passage to which the power hydraulic pressure source and the brake cylinders of the hydraulic brakes are connected. The brake cylinders include a first brake cylinder connected to the common passage via a first individual passage that is provided with a normally-close electromagnetic valve as a first individual control valve. The brake cylinders include a second brake cylinder connected to the common passage via a second individual passage that is provided with a normally-open electromagnetic valve as a second individual control valve.
    • 一种制动系统,包括:(i)为车辆的各个车轮提供的液压制动器,并且构造成由相应的制动缸的液压启动,以便抑制各个车轮的转动; (ii)动力液压源,其包括可通过供应电能激活的驱动源,并且构造成通过所述驱动源的激活产生液压; 和(iii)连接液压制动器的动力液压源和制动缸的共同通道。 制动液缸包括经由第一单独通道连接到公共通道的第一制动缸,第一单独通道设置有作为第一单独控制阀的常闭电磁阀。 制动缸包括通过第二单独通道连接到公共通道的第二制动缸,该第二单独通道设置有作为第二单独控制阀的常开电磁阀。
    • 9. 发明授权
    • Brake control system and brake control method
    • 制动控制系统及制动控制方式
    • US08029072B2
    • 2011-10-04
    • US11565196
    • 2006-11-30
    • Tetsuya MiyazakiYoshiaki IrieRio Suda
    • Tetsuya MiyazakiYoshiaki IrieRio Suda
    • B60T8/34
    • B60T8/4081B60T8/3275
    • In order to achieve a good brake feeling, a brake control system includes a master cylinder which discharges pressurized operating fluid according to an operating amount of a brake operating member by a driver, a stroke simulator which is connected to the master cylinder and creates a reaction force with respect to that operation according to the operating amount of the brake operating member, and a control portion which calculates a target deceleration using hydraulic pressure in the stroke simulator. The brake control system is also provided with a master cylinder pressure sensor that measures the hydraulic pressure in the master cylinder. The control portion may also calculate the target deceleration using an estimated value of the hydraulic pressure in the stroke simulator calculated based on the measured value from the master cylinder pressure sensor.
    • 为了实现良好的制动感,制动控制系统包括:主缸,其根据驾驶员的制动操作构件的操作量排出加压的工作流体,行程模拟器,连接到主缸并产生反作用力 根据制动操作构件的操作量相对于该操作的力;以及控制部,其使用行程模拟器中的液压来计算目标减速度。 制动控制系统还设有主缸压力传感器,用于测量主缸中的液压。 控制部分还可以使用基于来自主缸压力传感器的测量值计算的行程模拟器中的液压的估计值来计算目标减速度。