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    • 1. 发明授权
    • Vehicular automatic transmission control system with gear shift inhibitor
    • 车载自动变速器控制系统带齿轮减速器
    • US4846022A
    • 1989-07-11
    • US593826
    • 1984-03-27
    • Yasunobu ItoNobuaki Miki
    • Yasunobu ItoNobuaki Miki
    • F16H59/08F16H59/20F16H61/02
    • F16H61/0267F16H2059/083F16H2061/026F16H59/20Y10T477/6934Y10T477/693636
    • A vehicular automatic transmission control system comprising: a hydraulic control circuit including a hydraulic pressure source, a pressure regulator valve for producing a line pressure by regulating the oil pressure supplied from the pressure source, a number of shift valves for selectively engaging and releasing friction members of the automatic transmission according to operating conditions of a vehicle such as vehicle speed and throttle opening rate, and a solenoid valve blocking switching operation of a highest shift gear toward a highest gear position of the transmission; and an electronic control circuit for controlling on- and off-ranges of the solenoid valve, including a manual mode switch for setting the control either in a highest speed non-cancel mode permitting shifts to the highest gear position or a highest speed cancel mode inhibiting shifts to the highest gear position and forcibly effecting a downshift when selected during operation in the highest gear position, and a vehicle speed sensor; characterized in that: the electronic control circuit is arranged to establish the highest gear position at a vehicle speed higher than a pre-determined value regardless of a signal from the manual switch.
    • 一种车辆自动变速器控制系统,包括:液压控制回路,包括液压源,用于通过调节从压力源供应的油压产生管路压力的压力调节阀,用于选择性地接合和释放摩擦构件的多个换档阀 根据车辆的操作条件,如车速和节气门开度,以及电磁阀将最高变速齿轮切换到变速器的最高档位的切换操作; 以及用于控制电磁阀的上下范围的电子控制电路,包括手动模式开关,用于将控制设置为允许移动到最高档位的最高速度非取消模式或抑制最高速度取消模式 移动到最高档位,并且在最高档位操作期间选择时强制降档;以及车速传感器; 其特征在于,所述电子控制电路被布置成以比预定值高的车速建立最高档位,而不管来自手动开关的信号。
    • 2. 发明授权
    • Method and a device for connecting electric cables used in a hydraulic
system
    • 用于连接液压系统中使用的电缆的方法和装置
    • US4454381A
    • 1984-06-12
    • US411068
    • 1982-08-24
    • Yasunobu ItoNobuaki Miki
    • Yasunobu ItoNobuaki Miki
    • H02G1/14F16J15/06F16J15/10H01B17/30H02G3/08H02G15/08H02G15/10H02G3/22H01R43/00
    • H01B17/30H02G15/10H02G3/088Y10T29/49176
    • A connector for electric cables used in a hydraulic control system of an automatic transmission includes a sealing member comprising a cylindrical sealing outer cylinder adapted to be fixed in a hole formed in the housing of the hydraulic control system and a sealing partition member having a short cylinder of a small diameter and a plurality of partition walls extending radially from the short cylinder, and two rubber bushings. The free ends of Teflon coated cables, are pulled out through the hole in the housing and are passed through through holes, respectively, of a rubber bushing. The free ends of polyethylene coated cables, are passed through through holes, respectively, of the other rubber bushing, are pulled out through the cavity of the outer cylinder, and are electrically connected to the respective free ends of the corresponding Teflon coated cables by means of joint terminals. The cables thus connected are adjusted so that each joint terminal is disposed within a space defined by radially extending partition walls of the partition member and the inside surface of the outer cylinder. Then one rubber bushing is tightly inserted into one end of the outer cylinder. A synthetic resin filler is poured through the bore of the short cylinder of the sealing partition member to fill up the space around the junctions of the cables formed with the joint terminals. After an appropriate amount of filler has been filled in the space, the other rubber bushing is inserted tightly into the other end of the outer cylinder. Finally, the sealing member is pushed in and securely held in the hole of the housing.
    • 用于自动变速器的液压控制系统的电缆用连接器包括:密封构件,其包括圆柱形密封外筒,其适于固定在形成在液压控制系统的壳体中的孔中;以及密封分隔构件,具有短缸 小直径和从短圆筒径向延伸的多个分隔壁,以及两个橡胶衬套。 特氟龙涂层电缆的自由端通过外壳中的孔被拉出,分别穿过橡胶衬套的通孔。 聚乙烯涂覆的电缆的自由端分别穿过另一个橡胶衬套的通孔,通过外筒的空腔被拉出,并通过装置电连接到相应的特氟龙涂覆的电缆的相应的自由端 的联合终端。 调整这样连接的电缆,使每个接头端子设置在由分隔构件的径向延伸的分隔壁和外筒的内表面限定的空间内。 然后一个橡胶衬套紧紧插入外筒的一端。 合成树脂填料通过密封分隔构件的短圆筒的孔注入以填充形成有接合端子的电缆的接头周围的空间。 在空间中填充了适量的填料后,另一个橡胶衬套被紧紧地插入外筒的另一端。 最后,密封构件被推入并牢固地保持在壳体的孔中。
    • 5. 发明申请
    • Motor Vehicle
    • 摩托车
    • US20100017069A1
    • 2010-01-21
    • US12084388
    • 2006-11-24
    • Nobuaki MikiMunehisa HoriguchiKatsunori Doi
    • Nobuaki MikiMunehisa HoriguchiKatsunori Doi
    • G05D1/00B62D33/00
    • B62D61/00B60N2/0244B60N2/04B60N2/06B60N2/0745B60N2/10B62D37/00B62K1/00B62K11/007G05D1/0891Y02T10/7258
    • A motor vehicle (1) having a body (2), a wheel (5) rotatably supported and coaxially disposed on the body (2), and an occupant riding portion (3) supported by the body (2) and mounted with an occupant, the motor vehicle including: body attitude detection means (121, 122) for detecting an attitude of the body; and body attitude control means (120) for controlling the body attitude detected by the body attitude detection means (121, 120), wherein, in response to an inertial force or a centrifugal force generated by acceleration, deceleration or a turning motion of the motor vehicle (1), the occupant riding portion (3) is moved so as to balance the inertial force or the centrifugal force. The motor vehicle (1) further includes occupant attitude control means (130) for controlling an attitude of the occupant riding portion (3) in accordance with a detection value detected by the body attitude detection means (121, 122).
    • 具有主体(2)的车辆(1),可旋转地支撑并同轴地设置在主体(2)上的轮(5)和由主体(2)支撑并安装有乘员的乘员搭乘部 所述机动车辆包括:身体姿态检测单元,用于检测身体姿势; 以及用于控制由身体姿态检测装置(121,120)检测到的身体姿态的身体姿态控制装置(120),其中响应于马达的加速度,减速度或转动运动产生的惯性力或离心力 车辆(1),乘员搭乘部(3)移动,以平衡惯性力或离心力。 机动车辆(1)还包括乘员姿势控制装置(130),用于根据由身体姿态检测装置(121,122)检测到的检测值来控制乘员搭乘部(3)的姿势。
    • 8. 发明授权
    • Pressure regulating valve in a hydraulic control system for an automatic
transmission
    • 用于自动变速器的液压控制系统的调压阀
    • US5868167A
    • 1999-02-09
    • US774549
    • 1996-12-30
    • Nobuaki MikiTakenori KanoHaruki Yamamoto
    • Nobuaki MikiTakenori KanoHaruki Yamamoto
    • F15B13/043F16H61/02F16K11/07G05D16/10G05D16/20F15B13/044
    • F16H61/0251G05D16/2013F16H2061/0258Y10T137/86622
    • A pressure regulating valve in a hydraulic control system for an automatic transmission according including a pressure regulating unit having a spool made slidable in a valve sleeve 10. An electromagnetic unit for causing a hollow core (or stator) is provided to attract a plunger (or movable element) arranged on a push rod communicating with the spool. The spool is moved by a spool moving mechanism in a direction to increase the flow from an input port to an output port to thereby raise an output pressure from an output port when the output pressure is lowered by a leakage. The spool position is controlled to control the output pressure in accordance with a balance among a spring force of spring means fitted in the valve sleeve, a feedback force resulting from the output pressure, and an electromagnetic attraction to be established in response to an electric signal provided to the electromagnetic unit having the hollow core and the plunger. In another embodiment, an input pressure feedback port is provided in the valve sleeve, and spool position control is additionally dependent upon an input pressure feedback force provided to the input pressure feedback port.
    • 一种用于自动变速器的液压控制系统中的压力调节阀,包括具有可在阀套10中滑动的阀芯的压力调节单元。提供用于引起中空芯(或定子)的电磁单元以吸引柱塞(或 可动元件),其布置在与所述线轴连通的推杆上。 阀芯通过阀芯移动机构沿着增加从输入端口到输出端口的流动的方向移动,从而当输出压力由于泄漏而降低时从输出端口提高输出压力。 控制阀芯位置以根据装配在阀套中的弹簧装置的弹簧力,由输出压力产生的反馈力与响应于电信号而建立的电磁吸力之间的平衡来控制输出压力 提供给具有中空芯和柱塞的电磁单元。 在另一个实施例中,输入压力反馈端口设置在阀套管中,并且阀芯位置控制另外取决于提供给输入压力反馈端口的输入压力反馈力。
    • 10. 发明授权
    • Automatic transmission
    • 自动变速器
    • US4776240A
    • 1988-10-11
    • US345950
    • 1982-02-04
    • Nobuaki Miki
    • Nobuaki Miki
    • F16H61/02F16H63/44B60K41/10
    • F16H61/0206F16H63/44Y10T477/693638
    • An automatic transmission comprising a fluid torque converter; a transmission gear comprising a first gear unit having three forward-speed gears and one reverse gear and a second gear unit having a high-speed gear and a low-speed gear; and a hydraulic control system comprising first and second shift valves for controlling the shifting between the speed gears of the first gear unit, a third shift valve for controlling the shifting between the high-speed gear and the low-speed gear of the second gear unit, a manual selector valve having five shift positions, i.e. D, I. L, R and P-position, and first, second and third solenoid valves related with the first, second and third shift valves respectively.The automatic transmission is capable of providing six forward-speed automatic transmission when the manual selector valve is shifted to the D-position, three forward-speed automatic transmission including the first, third and fifth speeds when the manual selector valve is shifted to the I-position, three forward-speed automatic transmission including the first, third and fifth speeds and allowing effective engine braking when the manual selector valve is shifted to the L-position, and two-speed reverse automatic transmission when the manual selector valve is shifted to the R-position.
    • 一种包括流体扭矩转换器的自动变速器; 传动齿轮包括具有三个前进档和一倒档的第一减速器和具有高速齿轮和低速齿轮的第二齿轮单元; 以及液压控制系统,包括用于控制第一齿轮单元的变速齿轮之间的换档的第一和第二换档阀,用于控制高速齿轮与第二齿轮单元的低速齿轮之间的换档的第三换档阀 具有分别与第一,第二和第三换档阀相关的第一,第二和第三电磁阀的具有五个换档位置的手动换向阀,即D,I.L,R和P位置。 自动变速器能够在手动换向阀移动到D档时提供六个前进速度自动变速器,当手动换向阀移动到I档时,三档前进速度自动变速器包括第一档,第三档和第五档 位置,包括第一速度,第三速度和第五速度的三个前进速度自动变速器,并且当手动换向阀转换到L档时允许有效的发动机制动,以及当手动换向阀转换到两档时,双速反向自动变速器 R位置。