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    • 91. 发明授权
    • Hydraulic circuit system
    • 液压回路系统
    • US06378302B1
    • 2002-04-30
    • US09674366
    • 2000-10-31
    • Yusaku NozawaMitsuhisa TougasakiYoshizumi NishimuraKinya Takahashi
    • Yusaku NozawaMitsuhisa TougasakiYoshizumi NishimuraKinya Takahashi
    • F16D3102
    • F15B11/167E02F9/128E02F9/2225E02F9/226E02F9/2296F15B11/163F15B11/168F15B13/0417F15B2211/40515F15B2211/40569F15B2211/428F15B2211/455F15B2211/46F15B2211/50518F15B2211/50536F15B2211/5157F15B2211/55F15B2211/6355F15B2211/651F15B2211/71F15B2211/78
    • A hydraulic line slit 20 formed in a valve body 50 of a flow distribution valve 5-1, a control chamber 70, and a hydraulic line 31-1 are connected to a signal transmitting hydraulic line 9. A lap portion 32 is formed in the hydraulic line slit 20, the lap portion 32 having a check valve function with a lap amount X when the valve body 50 is in a cutoff position. A 2-position, 3-way valve 11 is disposed in the hydraulic line 31-1. The valve 11 connects the control chamber 70 of the flow distribution valve 5-1 to only the signal transmitting hydraulic line 9 when an external signal F is not applied, and to both the signal transmitting hydraulic line 9 and a lower-pressure detecting hydraulic line 35, which is connected an outlet passage 5b of a flow distribution valve 5-2 on the side of a hydraulic actuator 3-2, when the external signal F is applied. With such an arrangement, during a combined operation including driving of an inertial body, a pressure on the lower load pressure side can be detected as a signal pressure without cutting off a load-pressure detecting hydraulic line on the higher load pressure side. Further, a portion for detecting a load pressure is simplified and the flow distributing function is not impaired.
    • 形成在分流阀5-1的阀体50上的液压线狭缝20,控制室70以及液压管线31-1连接到信号传输液压管路9上。搭接部分32形成在 液压线狭缝20,当阀体50处于切断位置时,具有止回阀的搭接部32具有搭接量X。 2位三通阀11设置在液压管线31-1中。 当未施加外部信号F时,阀11将分流阀5-1的控制室70仅连接到信号传输液压管路9,并且在信号传输液压管线9和低压检测液压管线 当外部信号F被施加时,其连接有液压致动器3-2一侧的分流阀5-2的出口通道5b。 通过这样的布置,在包括惯性体的驱动的组合操作中,可以将下负载压力侧的压力检测为信号压力,而不会在较高负载压力侧切断负载压力检测液压管路。 此外,用于检测负载压力的部分被简化,并且流量分配功能不受损害。
    • 93. 发明授权
    • Air engine
    • 空气发动机
    • US06367247B1
    • 2002-04-09
    • US09579326
    • 2000-05-25
    • Don M. Yancey
    • Don M. Yancey
    • F16D3102
    • F01B17/02
    • Apparatus for supplying high pressure gas to an engine, to operate the engine, including in combination a gas pressurizer having a low gas pressure inlet to receive inlet gas, as for example discharge gas from the engine, and a high gas pressure outlet to deliver supply gas at high pressure to the engine, the pressurizer including a rotary body defining a gas flow channel that extends about an axis in a spiral of decreasing radius, and a drive operatively connected with the body to rotate the body about an axis, at high velocity, to effect gas flow and pressure increase, along the channel, for supply to the engine via an outlet from the pressurizer.
    • 用于向发动机提供高压气体以操作发动机的装置,包括组合具有低气体压力入口的气体加压器以接收入口气体,例如来自发动机的排出气体,以及高气体压力出口,以输送供给 加压器包括限定以半径减小的螺旋绕轴线延伸的气体流动通道的旋转体,以及与主体可操作地连接的驱动器,以使身体围绕轴线高速旋转 ,以沿着通道实现气体流动和压力增加,以经由加压器的出口供应到发动机。
    • 94. 发明授权
    • Method for accumulating energy from natural power
    • 从自然能量积累能量的方法
    • US06363718B1
    • 2002-04-02
    • US09417212
    • 1999-10-13
    • Chau-Fu Shu
    • Chau-Fu Shu
    • F16D3102
    • F04B17/02F04F1/06Y02E10/38Y02E10/46Y02P80/158
    • The natural power of the present invention includes a wind energy, sea wave energy, and solar energy. These energies are used in high energy for achieving an economic value. The current conversion devices, for example, water power generation, wind power generation, and solar power generation, coverts power in high energy. If the energy is low, they can not work well. In fact, in natural power, low power or middle power energies are occupied a large part. The present invention serves to disclose a system for solving such a problem. In the present invention, low power energy is firstly accumulated to a high power energy for being used (such as hydraulic power). The system in the present invention can be wholly used in natural power in the low cost without any pollution. Thus, the present invention is suitable for the requirement of environment protection and economics. The area arranged according to the feature of the present invention can be programmed as an appreciating area.
    • 本发明的自然能量包括风能,海浪能和太阳能。 这些能量用于高能量以达到经济价值。 目前的转换装置,例如水发电,风力发电和太阳能发电,都能以高能量覆盖电力。 如果能量很低,就不能很好的工作。 事实上,在自然电力方面,低功耗或中功率能源占据很大的一部分。 本发明用于公开一种解决这个问题的系统。 在本发明中,首先将低功率能量累积到高功率能量(例如液压动力)。 本发明的系统可以以低成本完全用于天然动力,无任何污染。 因此,本发明适用于环境保护和经济性要求。 根据本发明的特征布置的区域可以被编程为欣赏区域。
    • 96. 发明授权
    • Differential pedal interface system for a cycling type work machine
    • 用于循环型作业机的差速踏板接口系统
    • US06357232B1
    • 2002-03-19
    • US09464467
    • 1999-12-15
    • Igor Strashny
    • Igor Strashny
    • F16D3102
    • G05G1/30B66F9/06E02F9/2004Y10T74/20528
    • A differential pedal interface system for controlling the forward and reverse speed, acceleration, deceleration, and jerk of a work machine including foot pedals coupled to each other for differential movement, displacement of one pedal controlling movement in the forward direction and displacement of the other pedal controlling movement in the reverse direction. The present system further includes at least one sensor coupled to one of the pedals for determining their displacement and rate of movement and an electronic controller coupled to the at least one sensor for receiving signals therefrom, the controller being operable to control the speed, acceleration, deceleration, and jerk of the work machine based upon the signal inputs.
    • 一种差速踏板接口系统,用于控制作业机器的前进和后退速度,加速度,减速度和加加速度,包括彼此耦合的脚踏板用于差速运动,一个踏板控制向前移动的位移和另一个踏板的位移 控制相反方向的运动。 本系统还包括耦合到踏板之一以确定其位移和运动速率的至少一个传感器,以及耦合到至少一个传感器的电子控制器,用于从其接收信号,该控制器可操作以控制速度,加速度, 基于信号输入的作业机的减速和加加速度。