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    • 3. 发明授权
    • Contact therapeutical apparatus
    • 接触治疗仪
    • US4983851A
    • 1991-01-08
    • US314354
    • 1988-11-17
    • Isamu MasudaMitsuharu Hayashi
    • Isamu MasudaMitsuharu Hayashi
    • A61F7/08A61N2/00A61N5/06
    • A61N2/00A61N5/06A61N2005/0645
    • A contact therapeutical apparatus for giving physical treatments such as magnetic and heat therapies by contacting the human body. The apparatus includes a heat generating portion inside a case body, and a far infrared radiating material is contained in the case body or a cover member covering the case body. The far infrared radiating material is exited by heat from the heat generating portion to radiate infrared rays and to heat inside the body sufficiently. There is provided a uniformalizing layer in the case body or cover member for distributing heat uniformly, and the far infrared radiating material is contained in the layer. Thereby, the uniform heating action by the infrared rays is obtained and the body can be warmed over in a wide area.
    • PCT No.PCT / JP88 / 00367 Sec。 371日期:1988年11月17日 102(e)日期1988年11月17日PCT提交1988年4月13日PCT公布。 第WO89 / 06991号公报 日期1989年8月10日。一种用于通过接触人体进行物理治疗如磁疗和热治疗的接触治疗仪。 该装置包括壳体内部的发热部分,并且远红外辐射材料容纳在壳体中或覆盖壳体的盖构件上。 远红外辐射材料通过来自发热部分的热量而被排出,以辐射红外线并充分地在体内加热。 在壳体或盖构件中设置有均匀分布的均匀层,用于均匀分布热量,并且远红外辐射材料被包含在该层中。 由此,能够获得红外线的均匀的加热动作,能够使身体在大范围内变暖。
    • 4. 发明授权
    • Reservoir tank for vehicle brake system
    • 车辆制动系统油箱
    • US07500723B2
    • 2009-03-10
    • US11725501
    • 2007-03-20
    • Mitsuharu Hayashi
    • Mitsuharu Hayashi
    • B60T17/00F17D1/00
    • B60T17/06B60T11/22
    • A reservoir tank has an inlet/outlet port communicating with a master cylinder, and a hydraulic fluid supply port provided directly opposite the inlet/outlet port. A tubular portion is provided on the inner surface of the tank. The tubular portion has an internal passage communicating with the inlet/outlet port and having a top opening. A box-shaped member has its bottom plate fitted on the tubular member. The bottom plate is formed of a filter material. A deflector plate is supported on legs extending upwardly form the bottom plate of the box member so as to be disposed right over the top opening of the tubular portion. The deflector plate deflects the flow of hydraulic fluid such that it will not be directed toward the hydraulic fluid supply port, thereby preventing hydraulic fluid from being blown out through the hydraulic fluid supply port even if this port is open.
    • 储罐具有与主缸连通的入口/出口端口,以及直接与入口/出口相对设置的液压流体供给口。 在罐的内表面上设置管状部分。 管状部分具有与入口/出口连通并具有顶部开口的内部通道。 盒状构件的底板装配在管状构件上。 底板由过滤材料形成。 偏转板被支撑在从盒构件的底板向上延伸的腿上,以便被布置在管状部分的顶部开口的正上方。 导流板使液压流体的流动偏转,使得其不会被引向液压流体供应口,从而防止液压流体通过液压流体供应口被吹出,即使该端口打开。
    • 5. 发明申请
    • Reservoir tank for vehicle brake system
    • 车辆制动系统油箱
    • US20060017320A1
    • 2006-01-26
    • US11167226
    • 2005-06-28
    • Mitsuharu Hayashi
    • Mitsuharu Hayashi
    • B60T11/34
    • B60T11/26
    • A reservoir tank for a vehicle brake system has a tank body including upper and lower shells joined together along mating surfaces. A float and a fluid level sensor are mounted in a fluid level detecting chamber defined in the tank body. The float is fitted on a shaft of the fluid level sensor. A partition plate is fitted in the lower shell to restrict a flow of hydraulic fluid into and out of the fluid level detecting chamber. The partition plate is disposed near the top end of the shaft of the fluid level sensor to restrict the distance by which the float can move vertically. A filter, the fluid level sensor and the partition plate are all set in the lower shell. The filter and the partition plate having their top ends pressed against the bottom ends of partitioning walls of the upper shell. Thus, the filter and the partition wall are held in position in the tank body between the upper and lower shells.
    • 用于车辆制动系统的储存罐具有罐体,其包括沿配合表面连接在一起的上壳体和下壳体。 浮子和液位传感器安装在限定在罐体中的液位检测室中。 浮子安装在液位传感器的轴上。 分隔板装配在下壳体中以限制液压流体流入和流出液位检测室。 分隔板设置在液位传感器的轴的顶端附近,以限制浮子能够垂直移动的距离。 过滤器,液位传感器和分隔板均设置在下壳体中。 过滤器和分隔板的顶端压靠在上壳体的分隔壁的底端。 因此,过滤器和分隔壁在上壳体和下壳体之间保持在罐体中的适当位置。
    • 6. 发明申请
    • Reservoir tank for vehicle brake system
    • 车辆制动系统油箱
    • US20050062343A1
    • 2005-03-24
    • US10940970
    • 2004-09-15
    • Mitsuharu Hayashi
    • Mitsuharu Hayashi
    • B60T11/26B60T11/22B60T17/06B60T11/20
    • B60T17/06B60T11/22
    • A reservoir tank has an inlet/outlet port communicating with a master cylinder, and a hydraulic fluid supply port provided directly opposite the inlet/outlet port. A tubular portion is provided on the inner surface of the tank. The tubular portion has an internal passage communicating with the inlet/outlet port and having a top opening. A box-shaped member has its bottom plate fitted on the tubular member. The bottom plate is formed of a filter material. A deflector plate is supported on legs extending upwardly form the bottom plate of the box member so as to be disposed right over the top opening of the tubular portion. The deflector plate deflects the flow of hydraulic fluid such that it will not be directed toward the hydraulic fluid supply port, thereby preventing hydraulic fluid from being blown out through the hydraulic fluid supply port even if this port is open.
    • 储罐具有与主缸连通的入口/出口端口,以及直接与入口/出口相对设置的液压流体供给口。 在罐的内表面上设置管状部分。 管状部分具有与入口/出口连通并具有顶部开口的内部通道。 盒状构件的底板装配在管状构件上。 底板由过滤材料形成。 偏转板被支撑在从盒构件的底板向上延伸的腿上,以便被布置在管状部分的顶部开口的正上方。 导流板使液压流体的流动偏转,使得其不会被引向液压流体供应口,从而防止液压流体通过液压流体供应口被吹出,即使该端口打开。
    • 7. 发明授权
    • Reservoir tank for vehicle brake system
    • 车辆制动系统油箱
    • US07448211B2
    • 2008-11-11
    • US11167226
    • 2005-06-28
    • Mitsuharu Hayashi
    • Mitsuharu Hayashi
    • B60T11/26B60T17/22
    • B60T11/26
    • A reservoir tank for a vehicle brake system has a tank body including upper and lower shells joined together along mating surfaces. A float and a fluid level sensor are mounted in a fluid level detecting chamber defined in the tank body. The float is fitted on a shaft of the fluid level sensor. A partition plate is fitted in the lower shell to restrict a flow of hydraulic fluid into and out of the fluid level detecting chamber. The partition plate is disposed near the top end of the shaft of the fluid level sensor to restrict the distance by which the float can move vertically. A filter, the fluid level sensor and the partition plate are all set in the lower shell. The filter and the partition plate having their top ends pressed against the bottom ends of partitioning walls of the upper shell. Thus, the filter and the partition wall are held in position in the tank body between the upper and lower shells.
    • 用于车辆制动系统的储存罐具有罐体,其包括沿配合表面连接在一起的上壳体和下壳体。 浮子和液位传感器安装在限定在罐体中的液位检测室中。 浮子安装在液位传感器的轴上。 分隔板装配在下壳体中以限制液压流体流入和流出液位检测室。 分隔板设置在液位传感器的轴的顶端附近,以限制浮子能够垂直移动的距离。 过滤器,液位传感器和分隔板均设置在下壳体中。 过滤器和分隔板的顶端压靠在上壳体的分隔壁的底端。 因此,过滤器和分隔壁在上壳体和下壳体之间保持在罐体中的适当位置。
    • 8. 发明授权
    • Reservoir tank for vehicle brake system
    • 车辆制动系统油箱
    • US07261382B2
    • 2007-08-28
    • US10940970
    • 2004-09-15
    • Mitsuharu Hayashi
    • Mitsuharu Hayashi
    • B60T17/00
    • B60T17/06B60T11/22
    • A reservoir tank has an inlet/outlet port communicating with a master cylinder, and a hydraulic fluid supply port provided directly opposite the inlet/outlet port. A tubular portion is provided on the inner surface of the tank. The tubular portion has an internal passage communicating with the inlet/outlet port and having a top opening. A box-shaped member has its bottom plate fitted on the tubular member. The bottom plate is formed of a filter material. A deflector plate is supported on legs extending upwardly form the bottom plate of the box member so as to be disposed right over the top opening of the tubular portion. The deflector plate deflects the flow of hydraulic fluid such that it will not be directed toward the hydraulic fluid supply port, thereby preventing hydraulic fluid from being blown out through the hydraulic fluid supply port even if this port is open.
    • 储罐具有与主缸连通的入口/出口端口,以及直接与入口/出口相对设置的液压流体供给口。 在罐的内表面上设置管状部分。 管状部分具有与入口/出口连通并具有顶部开口的内部通道。 盒状构件的底板装配在管状构件上。 底板由过滤材料形成。 偏转板被支撑在从盒构件的底板向上延伸的腿上,以便被布置在管状部分的顶部开口的正上方。 导流板使液压流体的流动偏转,使得其不会被引向液压流体供应口,从而防止液压流体通过液压流体供应口被吹出,即使该端口打开。
    • 9. 发明授权
    • Hydraulic joint structure
    • 液压接头结构
    • US06851720B2
    • 2005-02-08
    • US10395273
    • 2003-03-25
    • Mitsuharu HayashiKenichi SuzukiYuichiro Sakakibara
    • Mitsuharu HayashiKenichi SuzukiYuichiro Sakakibara
    • F16L15/04F15B1/02F15B1/04F16L15/00F16L55/00
    • F16L15/008
    • In a hydraulic joint structure for joining respective tubular joint portions of two members, opposed pressure-contact surfaces of the two members for preventing loosening form a downstream space on the downstream side of a seal member. A passage is formed on the pressure-contact surfaces in such a manner that when working fluid leaks from the upstream side of the seal member to the downstream space via a clearance between the seal member and the tubular joint portions, the passage permits the working fluid to flow from the downstream space to an external space in the state in which the pressure-contact surfaces are in pressure contact. The passage is formed in such a manner that the passage extends in a circumferential direction of the thread portions, and communicates at one end with the downstream space and at the other end with the external space.
    • 在用于连接两个构件的各个管接头部分的液压接头结构中,用于防止松动的两个构件的相对的压力接触表面在密封构件的下游侧形成下游空间。 在压力接触表面上形成通道,使得当工作液体通过密封构件和管状接头部分之间的间隙从密封构件的上游侧泄漏到下游空间时,通道允许工作流体 在压力接触表面处于压力接触的状态下从下游空间流到外部空间。 通道形成为使得通道在螺纹部分的圆周方向上延伸,并且在一端与下游空间并且在另一端与外部空间连通。
    • 10. 发明授权
    • Reservoir tank for vehicle brake system
    • 车辆制动系统油箱
    • US08037898B2
    • 2011-10-18
    • US11177287
    • 2005-07-11
    • Mitsuharu Hayashi
    • Mitsuharu Hayashi
    • F16K37/00F16D1/00
    • F16K27/02B60T11/26B60T17/225F16K33/00Y10T137/8342Y10T137/86187
    • A reservoir tank for a vehicle brake system has a tank body including upper and lower shells joined together along mating surfaces. A float and a fluid level sensor are mounted in a fluid level detecting chamber defined in the tank body. The float is fitted on a shaft of the fluid level sensor. A partition plate is fitted in the lower shell to restrict a flow of hydraulic fluid into and out of the fluid level detecting chamber. The partition plate is disposed near the top end of the shaft of the fluid level sensor to restrict the distance by which the float can move vertically. A filter, the fluid level sensor and the partition plate are all set in the lower shell. The filter and the partition plate having their top ends pressed against the bottom ends of partitioning walls of the upper shell. Thus, the filter and the partition wall are held in position in the tank body between the upper and lower shells. No separate retainer for the float is necessary because the partition plate serves also as a float retainer.
    • 用于车辆制动系统的储存罐具有罐体,其包括沿配合表面连接在一起的上壳体和下壳体。 浮子和液位传感器安装在限定在罐体中的液位检测室中。 浮子安装在液位传感器的轴上。 分隔板装配在下壳体中以限制液压流体流入和流出液位检测室。 分隔板设置在液位传感器的轴的顶端附近,以限制浮子能够垂直移动的距离。 过滤器,液位传感器和分隔板均设置在下壳体中。 过滤器和分隔板的顶端压靠在上壳体的分隔壁的底端。 因此,过滤器和分隔壁在上壳体和下壳体之间保持在罐体中的适当位置。 不需要用于浮子的单独的保持器,因为隔板也用作浮子保持器。