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    • 3. 发明申请
    • FLUID POURING TYPE ACTUATOR
    • 流体泵类型执行器
    • US20100269689A1
    • 2010-10-28
    • US12599595
    • 2008-05-09
    • Taro NakamuraKenji Yamamoto
    • Taro NakamuraKenji Yamamoto
    • F15B15/10A61F2/08
    • F15B15/103
    • An actuator is provided whose expansion in the radial direction can be efficiently translated into longitudinal movement when its length is contracted and extended by injecting a fluid into the tubular body. The fluid injection type actuator includes an actuator body, which is an expansion and contraction section of the actuator. The actuator body is constructed of a cylindrical rubber tube and annular fiber groups inserted and extending longitudinally therein. The annular fiber groups are each a group of fibers, such as glass roving fibers having a diameter of about 10 μm, arranged in an annular array along the circumference of the rubber tube. The arrangement allows the rubber tube to be restrained over the entirety of the actuator body longitudinally when it is expanded radially.
    • 提供了一种致动器,其沿着径向的膨胀可以通过将流体注入到管状体中而使其长度收缩和延伸而被有效地转换成纵向运动。 流体注射型致动器包括作为致动器的膨胀和收缩部分的致动器主体。 致动器主体由圆柱形橡胶管和在其中纵向延伸并延伸的环形纤维组构成。 环状纤维组各自是一组纤维,例如直径为约10μm的玻璃纤维纤维,沿着橡胶管的圆周布置成环形阵列。 该布置允许橡胶管在其径向膨胀时纵向地约束在致动器主体的整体上。
    • 4. 发明申请
    • PICKUP-STYLE WORK VEHICLE
    • 扒手车
    • US20090195049A1
    • 2009-08-06
    • US12208179
    • 2008-09-10
    • Teruo ShimamuraNorimi NakamuraYoshimi HirookaTaro Nakamura
    • Teruo ShimamuraNorimi NakamuraYoshimi HirookaTaro Nakamura
    • B65G67/00
    • B62D47/003B60P1/16B60P1/26B60P1/283B60P3/423B62D33/0273B62D33/037B62D33/08
    • A pickup-style work vehicle comprises a driver's section, a loading floor that is located rearwardly of the driver's section and that can be moved to a dumping position, a loading floor size changeover mechanism that changes a size of the loading floor between a first state in which a front wall portion and a front bottom portion of the loading floor are moved forwardly in a fore-and-aft direction of a vehicle and a second state in which the front wall portion and the front bottom portion of the loading floor are moved rearwardly in the fore-and-aft direction, a fixing member connected to the vehicle, and partition member position change mechanism for changing the position of the partition member in the fore-and-aft direction of the vehicle between a forward position and a rearward position. The partition member when placed at the forward position is located immediately forwardly of the loading floor in the first state while the partition member when placed at the rearward position is located immediately forwardly of the loading floor in the second state.
    • 拾取式作业车辆包括驾驶员部分,位于驾驶员部分后方并可移动到倾卸位置的装载地板,装载地板尺寸转换机构,其将装载地板的尺寸在第一状态 其中装载地板的前壁部分和前底部部分在车辆的前后方向上向前移动,并且第二状态,其中装载地板的前壁部分和前底部部分移动 在前后方向上向后方配置有与车辆连接的固定构件,以及分隔构件位置变更机构,其用于在前后位置改变分隔构件在车辆前后方向上的位置 位置。 当位于前方位置时,分隔构件处于第一状态时位于装载地板的正前方,而位于后方位置的分隔构件位于处于第二状态的装载地板的正前方。
    • 7. 发明授权
    • Pickup-style work vehicle
    • 皮卡式工作车
    • US07578544B1
    • 2009-08-25
    • US12203351
    • 2008-09-03
    • Teruo ShimamuraNorimi NakamuraYoshimi HirookaTaro Nakamura
    • Teruo ShimamuraNorimi NakamuraYoshimi HirookaTaro Nakamura
    • B62D25/00
    • B62D33/0273B60N2/305B60P1/16B60P1/26B60P1/283B60P3/423B62D33/037B62D47/003
    • A pickup-style work vehicle comprises a front driver's seat, a backseat, a loading floor that is located rearwardly of the backseat and that can be moved to a dumping position, a loading floor size changeover mechanism, and a backseat posture change mechanism. The loading floor size changeover mechanism changes the size of the loading floor between a first state in which a front wall portion and a front bottom portion of the loading floor are moved forwardly in a fore-and-aft direction and a second state in which the front wall portion and the front bottom portion of the loading floor are moved rearwardly in a fore-and-aft direction. The backseat posture change mechanism changes a posture of the backseat between a first posture which is a non-use state and a second posture which is a use state. The fore-and-aft dimension of the backseat in the first posture is less than a fore-and-aft dimension of the backseat in the second posture. the backseat in the first posture is located immediately forwardly of the loading floor in the first state and the backseat in the second posture is located immediately forwardly of the loading floor in the second state.
    • 拾取式作业车辆包括前驾驶座,后座,位于后座后方并可移动到倾卸位置的装载地板,装载地板尺寸转换机构和后座姿势改变机构。 装载地板尺寸切换机构改变装载地板的尺寸,其中前第一状态和装载地板的前底部在前后方向上向前移动的第一状态和第二状态,其中, 装载地板的前壁部分和前底部部分在前后方向上向后移动。 后座椅姿势改变机构改变作为使用状态的第一姿势和作为使用状态的第二姿势之间的后座的姿势。 第一姿势中的后座的前后尺寸小于第二姿势中后座的前后尺寸。 处于第一状态的后座位于第一状态的装载地面的正前方,第二姿态的后座位于第二状态的装载地面的正前方。
    • 8. 发明申请
    • REFLECTION TYPE VARIABLE OPTICAL ATTENUATOR
    • 反射型可变光学衰减器
    • US20130120824A1
    • 2013-05-16
    • US13811043
    • 2011-06-27
    • Hiroaki OnoHidenori NakadaHirotaka KawaiYuko OtaTaro Nakamura
    • Hiroaki OnoHidenori NakadaHirotaka KawaiYuko OtaTaro Nakamura
    • G02F1/09
    • G02F1/09G02B27/28G02F2203/02G02F2203/48
    • An input/output port, a birefringent element, variable polarization rotator, and a reflector are arranged along an optical axis in the order named. The variable polarization rotator includes permanent magnets for applying a fixed magnetic field to a Faraday rotator in an in-plane direction to magnetically saturate the Faraday rotator and a solenoid coil for applying a variable magnetic field to the Faraday rotator in a direction of the optical axis. A fixed magnetic field is applied in the direction, in which the Faraday rotator is likely to be magnetically saturated. The Faraday rotator can be saturated with a low magnetic field of about 100 Oe. The permanent magnets may employ ferrite permanent magnets, which have weak magnetic forces. A variable magnetic field may also be reduced. Therefore, an air-core coil can be used.
    • 输入/输出端口,双折射元件,可变偏振旋转器和反射器按照所述顺序沿光轴布置。 可变偏振旋转器包括用于在面内方向上向法拉第旋转器施加固定磁场的永磁体,以使法拉第旋转器磁饱和;以及螺线管线圈,用于向法拉第旋转器沿光轴方向施加可变磁场 。 在<211>方向施加固定磁场,其中法拉第转子可能是磁饱和的。 法拉第转子可以用约100 Oe的低磁场饱和。 永磁体可以使用具有弱磁力的铁氧体永磁体。 也可以减小可变磁场。 因此,可以使用空心线圈。