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    • 72. 发明授权
    • Rotating fluid machine
    • 旋转流体机
    • US07083402B2
    • 2006-08-01
    • US10739149
    • 2003-12-19
    • Hiroshi IchikawaTsutomu TakahashiYasunari KimuraTsuneo Endoh
    • Hiroshi IchikawaTsutomu TakahashiYasunari KimuraTsuneo Endoh
    • F03C2/00F04C2/00
    • F01C1/3446F01C19/10F01C21/04F01C21/0809
    • A rotating fluid machine is provided with a rotor chamber, a rotor accommodated in the rotor chamber, and vanes guided by vane grooves formed in the rotor. A U-shaped vane seal is held by a seal holding groove formed in the end face of each of the vanes. The opposite ends of the vane seal are fitted into slits in seal ancillary members which are fitted into engaging holes formed in the end faces of each of the vanes. The seal ancillary members are pressed by springs toward the inner circumferential face of the rotor chamber. The pressure of a gaseous phase working medium introduced into the bottom parts of the seal holding grooves is restrained from leaking out of the ends of the vane seal by the seal ancillary members. Thus, sealing performance can be secured by pressing the vane seal against the inner circumferential face of the rotor chamber.
    • 旋转流体机器设置有转子室,容纳在转子室中的转子和由形成在转子中的叶片槽引导的叶片。 U形叶片密封件由形成在每个叶片的端面中的密封件保持槽保持。 叶片密封件的相对端装配在密封辅助构件中的狭缝中,该辅助构件装配到形成在每个叶片的端面中的接合孔中。 密封辅助构件被弹簧压向转子室的内周面。 引入到密封保持槽的底部的气相工作介质的压力被密封辅助构件限制在叶片密封件的端部之外。 因此,可以通过将叶片密封件压靠在转子室的内周面来确保密封性能。
    • 74. 发明授权
    • Rotary fluid machinery
    • 旋转流体机械
    • US06945050B2
    • 2005-09-20
    • US10489911
    • 2002-09-20
    • Yasunari KimuraTsuneo EndohHiroyuki NiikuraTsutomu Takahashi
    • Yasunari KimuraTsuneo EndohHiroyuki NiikuraTsutomu Takahashi
    • F01K7/00F01B13/06F01C1/344F02B53/00F01K1/00
    • F01B13/06F01B13/068F02B53/00
    • A rotary fluid machine is provided that includes a rotor chamber (14), a rotor (41), vanes (48) guided by vane channels formed in the rotor (41), and pistons (47) slidably fitted in cylinders (44) provided in the rotor (41). Rollers (71), which have a greaseless bearing structure and are provided on support shafts (48d) of the vane (48), are rollably engaged with annular channels (74) of a casing (11) so as to interconvert reciprocation of the pistons (47) and rotational movement of the rotor (41). By guiding water for a hydrostatic bearing that supports the vane (48) in the vane channel in a floating state from a recess (48e) of the vane (48) to a hydrostatic bearing (71) of the roller (71) via water passages (W19 to W22), an outer member (71b) of the roller (71) is supported in a floating manner relative to an inner member (71a).
    • 提供了一种旋转流体机械,其包括转子室(14),转子(41),由形成在转子(41)中的叶片通道引导的叶片(48)和可滑动地装配在气缸(44)中的活塞(47) 在转子(41)中。 具有无油轴承结构并设置在叶片(48)的支撑轴(48d)上的辊(71)与壳体(11)的环形通道(74)滚动接合,以便互相转换 活塞(47)和转子(41)的旋转运动。 通过引导水进行静压轴承,该静压轴承以悬浮状态将叶片通道中的叶片(48)从叶片(48)的凹部(48e)通过水从滚子(71)的静压轴承(71)支撑 通道(W 19至W 22),辊(71)的外部构件(71b)相对于内部构件(71a)以浮动方式被支撑。
    • 75. 发明授权
    • Heat exchanger
    • 热交换器
    • US06907734B2
    • 2005-06-21
    • US10496073
    • 2002-11-01
    • Masashi ShinoharaTsuneo EndohAtsushi Baba
    • Masashi ShinoharaTsuneo EndohAtsushi Baba
    • F01N3/04F01N3/24F01N5/02F01P3/22F02G5/02F22B1/18F01K23/06
    • F02G5/02F01N3/043F01N5/02F01N2240/02F01P3/22F01P2060/16F22B1/1807Y02E20/363Y02T10/16Y02T10/166Y02T10/20
    • An evaporator (11) is provided that carries out heat exchange between exhaust gas discharged from an exhaust port (16B) of an internal combustion engine and water, the evaporator (11) including a large number of heat transfer plates (83) stacked at predetermined intervals from each other in a direction perpendicular to the plane of the paper and a large number of pipe members (90) running through the heat transfer plates (83) and being connected in a zigzag shape at opposite ends, and exhaust gas passages (87, 88, 89) being defined between the heat transfer plates (83) by a partition wall (86) formed by making projections formed on the heat transfer plates (83) abut against each other. While passing through the exhaust gas passages (87, 88, 89), the exhaust gas discharged from the exhaust port (16B) carries out heat exchange with water flowing through the pipe members (90), and the water that has received the thermal energy of the exhaust gas turns into high temperature, high pressure steam. It is thus possible to maximize the heat transfer area of the evaporator (11) and thereby improve the heat exchange efficiency.
    • 提供一种蒸发器(11),其将从内燃机的排气口(16B)排出的排气与水进行热交换,所述蒸发器(11)包括大量传热板(83),所述传热板(83)堆叠在 在垂直于纸面的方向上彼此间隔规定的间隔,以及大量穿过传热板(83)的管构件(90),并且在相对端部以锯齿形连接,排气通道 87,88,89)通过形成在传热板(83)上形成的凸起彼此抵靠而形成的分隔壁(86)在传热板(83)之间限定。 在通过废气通道(87,88,89)的同时,从排气口(16B)排出的废气与流经管件(90)的水进行热交换,并且接收热量的水 排气的能量变成高温高压蒸汽。 因此,可以使蒸发器(11)的传热面积最大化,从而提高热交换效率。
    • 79. 发明申请
    • Rotary fluid machine
    • 旋转流体机
    • US20050025653A1
    • 2005-02-03
    • US10489177
    • 2002-09-20
    • Yasunari KimuraTsuneo EndohTsutomu Takahashi
    • Yasunari KimuraTsuneo EndohTsutomu Takahashi
    • F01K7/00F01B1/06F01B13/06F01C1/344F01C11/00F01C21/04F01C21/08F01K23/06F03C2/00
    • F01C1/3446F01B13/061F01B13/068F01C11/006F01C21/04F01C21/0836
    • A rotary fluid machine is provided in which a rotating shaft (113) fixed to a rotor (41) is rotatably supported on a fixed shaft (102) fixed to a casing (11), sliding surfaces of the fixed shaft (102) and the rotating shaft (113) are lubricated by a first pressurized liquid-phase working medium, and sliding surfaces of the rotor (41) and a vane (48) are lubricated by a second pressurized liquid-phase working medium. By setting the pressure of the first pressurized liquid-phase working medium, which is supplied from an eleventh water passage (W11), comparatively low and setting the pressure of the second pressurized liquid-phase working medium, which is supplied from a first water passage (W11), comparatively high, wasteful leakage of the liquid-phase working medium past the sliding surfaces of the fixed shaft (102) and the rotating shaft (113), where a comparatively small load is applied, can be prevented while enabling the sliding surfaces of the rotor (41) and the vane (48), where a large load is applied, to be reliably lubricated with a high pressure liquid-phase working medium.
    • 一种旋转流体机械,其中固定在转子(41)上的旋转轴(113)可旋转地支撑在固定在壳体(11)上的固定轴(102)上,固定轴(102)和 旋转轴(113)由第一加压液相工作介质润滑,并且转子(41)和叶片(48)的滑动表面由第二加压液相工作介质润滑。 通过设定从第十一水通道(W11)供给的第一加压液相工作介质的压力相对较低并设定从第一水通道(W11)供给的第二加压液相工作介质的压力 (W11),能够防止液相工作介质通过施加较小负载的固定轴(102)和旋转轴(113)的滑动面的相对高的泄漏,同时能够滑动 用高压液相工作介质可靠地润滑承受较大负荷的转子(41)和叶片(48)的表面。