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    • 3. 发明授权
    • Wheel support device
    • 车轮支撑装置
    • US07789178B2
    • 2010-09-07
    • US11596724
    • 2005-05-24
    • Ryoji MizutaniFumito KurataShuuetsu SuzukiJunichiro Sakurai
    • Ryoji MizutaniFumito KurataShuuetsu SuzukiJunichiro Sakurai
    • B60K1/00
    • B60K7/0007B60G3/20B60G13/16B60G2202/12B60G2204/30B60G2300/50B60K17/046B60K2007/0038B60K2007/0092
    • A wheel support device (200) includes a spring (302, 304) fitted to an in-wheel motor (70) and damping the vibration of a motor-driven wheel (100) and the in-wheel motor (70) by extending and retracting, a knuckle (180) attached to the spring (302, 304) and rotatably supporting the motor-driven wheel (100), a center part (306) of a dynamic mass damper mechanism (300) vibrating together with the in-wheel motor (70) by a force given from a road surface when a vehicle runs, an upper part (310) thereof restricting the vibration of the in-wheel motor (70) by coming into contact with the center part (306) at a prescribed region, and a cushioning member (322, 324) fitted to a portion of the center part (306) or the upper part (310) corresponding to the prescribed region brought into contact with the other.
    • 车轮支撑装置(200)包括安装在轮内电动机(70)上的弹簧(302,304),并且通过延长和/或减速电机驱动轮(100)和轮内电动机(70)的振动 回缩,附接到弹簧(302,304)并可旋转地支撑电动轮(100)的转向节(180);与轮内振动的动力质量阻尼机构(300)的中心部分(306) 电动机(70)通过在车辆行驶时从路面施加的力,其上部(310)通过与规定的中心部(306)接触而限制轮内电动机(70)的振动 以及装配到与另一个接触的规定区域对应的中心部分(306)或上部(310)的一部分的缓冲构件(322,324)。
    • 4. 发明授权
    • Wheel condition determination apparatus
    • 车轮条件确定装置
    • US07394357B2
    • 2008-07-01
    • US11376312
    • 2006-03-16
    • Fumito Kurata
    • Fumito Kurata
    • B60C23/00G01R13/30
    • B60C23/0493
    • A wheel condition determination apparatus includes a primary sensor unit and a secondary sensor unit that are provided in the wheels of a vehicle. The primary sensor unit detects a predetermined parameter indicating the condition of the wheel and controls the operation mode of the secondary sensor unit in accordance with the detected predetermined parameter. The secondary sensor unit detects a predetermined parameter indicating the condition of the wheel that is different from the predetermined parameter detected by the primary sensor unit. The operation mode of the secondary sensor unit may be changed between an active mode and a sleep mode. In the sleep mode, detection of the wheel condition may be suspended or performed less frequently than as the active mode.
    • 车轮条件确定装置包括设置在车辆的车轮中的主传感器单元和次传感器单元。 主传感器单元检测指示车轮的状态的预定参数,并且根据检测到的预定参数控制次传感器单元的操作模式。 辅助传感器单元检测指示与由主传感器单元检测到的预定参数不同的车轮状态的预定参数。 二次传感器单元的操作模式可以在活动模式和休眠模式之间改变。 在睡眠模式中,可以比作为活动模式暂停或执行车轮状态的检测更少的频率。
    • 5. 发明授权
    • Tire wheel structure
    • 轮胎轮结构
    • US07347295B2
    • 2008-03-25
    • US10932115
    • 2004-09-02
    • Fumito Kurata
    • Fumito Kurata
    • B60K7/00
    • B60G3/01B60G3/18B60G2200/144B60G2204/30B60K7/0007B60K2007/0053B60K2007/0061B60L2220/46
    • A tire wheel structure that avoids the adverse effect of the increase in the unsprung mass associated with the presence of a driving motor at the time of a road surface input to a tire wheel is provided. In the tire wheel structure, the driving motor is disposed near the tire wheel that is supported on a vehicle body. The driving motor drives the tire wheel by transferring driving force to the tire wheel. The output shaft of the driving motor is connected to a wheel of the tire wheel via a flexible coupling. The driving motor is supported by a knuckle member of a suspension via coil springs and absorbers so that the driving motor is relatively displaceable with respect to the tire wheel.
    • 提供了轮胎车轮结构,其避免了在向轮胎轮胎输入道路表面时与驱动马达的存在相关联的簧下质量的增加的不利影响。 在轮胎车轮结构中,驱动马达设置在被支撑在车体上的轮胎车轮附近。 驱动马达通过将驱动力传递到轮胎轮来驱动轮胎车轮。 驱动电动机的输出轴通过柔性联轴器连接到轮胎车轮上。 驱动电动机通过螺旋弹簧和吸收器由悬架的转向节构件支撑,使得驱动电动机相对于轮胎轮相对移位。
    • 6. 发明申请
    • Wheel Action Force Detection System and Wheel Action Force Detection Method
    • 车轮动作力检测系统和车轮动作力检测方法
    • US20070029872A1
    • 2007-02-08
    • US11461833
    • 2006-08-02
    • Fumito KurataToshimichi TakahashiMitsuru AsaiHiroaki MakinoNobutsuna Motohashi
    • Fumito KurataToshimichi TakahashiMitsuru AsaiHiroaki MakinoNobutsuna Motohashi
    • F16D66/00
    • B60T8/172B60G2400/64B60G2800/21B60W10/184B60W30/18172B60W2520/28B60W2530/20B60W2720/28B60W2720/30
    • An object is to provide a wheel action force detection system and a wheel action force detection method for finding braking force of a vehicle having a disc brake at the time of braking with high accuracy. A wheel action force detection system 1 comprises deformation amount sensors 2a and 2b detecting elastic deformation amount of a suspension unit 13 which pivotally supports a traveling wheel 11 rotatably; a braking force sensor 3 detecting braking force in the case that a disc brake 14 fixed to the suspension unit 13 brakes the traveling wheel 11; and a control part 4a calculating longitudinal force, axial force and vertical force acting on the suspension unit 13 based on the elastic deformation amount of the suspension unit 13, regarding the result of subtracting longitudinal component of reaction force of braking force of the disc brake 14 from longitudinal force acting on the suspension unit 13 as longitudinal force acting on the traveling wheel 11, and regarding the result of subtracting vertical component of reaction force of braking force of the disc brake 14 from vertical force acting on the suspension unit 13 as vertical force acting on the traveling wheel 11 so as to calculate wheel action force acting on the traveling wheel 11 at the touching part between the traveling wheel 11 and a road surface.
    • 本发明提供一种用于在制动时以高精度找到具有盘式制动器的车辆的制动力的车轮作动力检测系统和车轮作动力检测方法。 车轮动作力检测系统1包括检测可转动地支撑行进轮11的悬架单元13的弹性变形量的变形量传感器2a和2b; 在固定在悬架单元13的盘式制动器14制动行进轮11的情况下,检测制动力的制动力传感器3; 以及控制部分4a,关于减去盘式制动器的制动力的反作用力的纵向分量的结果,计算基于悬架单元13的弹性变形量作用在悬架单元13上的纵向力,轴向力和垂直力 14作为作用在行进轮11上的纵向力的作用在悬架单元13上的纵向力,并且关于从盘式制动器14的制动力的反作用力的垂直分量减去垂直作用在悬架单元13上的垂直力的结果为垂直 作用在行进轮11上的力,以计算在行进轮11与路面之间的接触部分作用在行进轮11上的车轮作用力。
    • 7. 发明申请
    • Wheel condition determination apparatus
    • 车轮条件确定装置
    • US20060249323A1
    • 2006-11-09
    • US11376312
    • 2006-03-16
    • Fumito Kurata
    • Fumito Kurata
    • B60K17/34
    • B60C23/0493
    • A wheel condition determination apparatus includes a primary sensor unit and a secondary sensor unit that are provided in the wheels of a vehicle. The primary sensor unit detects a predetermined parameter indicating the condition of the wheel and controls the operation mode of the secondary sensor unit in accordance with the detected predetermined parameter. The secondary sensor unit detects a predetermined parameter indicating the condition of the wheel that is different from the predetermined parameter detected by the primary sensor unit. The operation mode of the secondary sensor unit may be changed between an active mode and a sleep mode. In the sleep mode, detection of the wheel condition may be suspended or performed less frequently than as the active mode.
    • 车轮条件确定装置包括设置在车辆的车轮中的主传感器单元和次传感器单元。 主传感器单元检测指示车轮的状态的预定参数,并且根据检测到的预定参数控制次传感器单元的操作模式。 辅助传感器单元检测指示与由主传感器单元检测到的预定参数不同的车轮状态的预定参数。 二次传感器单元的操作模式可以在活动模式和休眠模式之间改变。 在睡眠模式中,可以比作为活动模式暂停或执行车轮状态的检测更少的频率。