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    • 11. 发明授权
    • Fluid-actuated rotary drive device
    • 流体驱动旋转驱动装置
    • US09399916B2
    • 2016-07-26
    • US13983368
    • 2011-09-28
    • Gerhard ThorwartUlrich HohlFrank Menikheim
    • Gerhard ThorwartUlrich HohlFrank Menikheim
    • F01C1/324F15B15/12
    • F01C1/324F15B15/12
    • A fluid-actuated rotary drive device is provided, with a housing (2) in which is formed a working chamber (3), in which is a swivel piston (18) able to swivel around a central axis (5). Also fitted or able to be fitted in the working chamber (3) is a space divider and stop unit (38), comprised of a space divider element (24) and at least one stop element (42) fixed to the former. The components of the space divider and stop unit (38) are fitted to one another by snap-in connection, so that the space divider and stop unit (38) is easy to handle during its installation in the working chamber (3).
    • 提供一种流体驱动的旋转驱动装置,其中壳体(2)形成有工作室(3),其中是能够围绕中心轴线(5)旋转的旋转活塞(18)。 还安装或能够安装在工作室(3)中的是具有分隔件和停止单元(38)的空间分隔件和止挡单元(38),其包括固定在前者上的空间分隔件(24)和至少一个止挡元件(42)。 空间分隔器和止动单元(38)的部件通过卡入式连接而彼此嵌合,使得分隔件和停止单元(38)在安装在工作室(3)中时易于处理。
    • 12. 发明申请
    • ROTARY MACHINE OF THE DEFORMABLE RHOMBUS TYPE COMPRISING AN IMPROVED TRANSMISSION MECHANISM
    • 包含改进变速机构的可变式滚筒式旋转机的旋转机
    • US20110280757A1
    • 2011-11-17
    • US13128692
    • 2009-11-10
    • Vincent GenissieuxJean-Pierre AmbertJean-Thomas Collomb
    • Vincent GenissieuxJean-Pierre AmbertJean-Thomas Collomb
    • F01C20/20F01C1/324
    • F01C1/324F01C1/332F01C1/40F01C17/00F01C21/0836F02B53/02F03C2/30
    • A rotary machine with a deformable rhomb includes a rotor formed by a deformable rhomb in contact, with or without clearance, with an internal surface of a housing forming a stator and/or with an external surface of a central crown, the deformable rhomb including four pistons connected one following the other by a pivotal hinge with an axis parallel to a longitudinal axis of the housing and thus forming a closed chain; a transmission mechanism to transmit movement between the pistons and a rotation shaft coaxial to a central axis of the machine, the transmission mechanism including a first rolling body mounted fixedly on at least one piston, an axis of the first rolling body passing in the centre of the piston and connected to a second rolling body, a centre of which passing through the central axis of the machine and being integral with the rotation shaft, the first rolling body being connected to the second rolling body directly or by an intermediate transmission member, wherein a demultiplication ratio between the first and the second rolling body is equal to 2 and is positive.
    • 具有可变形菱形的旋转机械包括由可变形的菱形接触形成的转子,具有或不具有间隙,壳体的内表面形成定子和/或具有中心冠的外表面,可变形菱形包括四个 活塞通过枢转铰链紧邻地连接,轴线平行于壳体的纵向轴线,从而形成闭合链条; 传递机构,用于传递活塞与与机器的中心轴线同轴的旋转轴之间的运动,传动机构包括固定地安装在至少一个活塞上的第一滚动体,第一滚动体的轴线经过第一滚动体的中心 活塞并连接到第二滚动体,第二滚动体的中心穿过机器的中心轴线并与旋转轴成一体,第一滚动体直接或通过中间传动构件连接到第二滚动体,其中 第一和第二滚动体之间的分度比等于2并且为正。
    • 13. 发明授权
    • Fluid machine for converting heat energy into mechanical rotational force
    • 用于将热能转换为机械旋转力的流体机
    • US07249459B2
    • 2007-07-31
    • US10868867
    • 2004-06-17
    • Shigeru HisanagaYasushi YamanakaKenji TsukaharaKazuhide Uchida
    • Shigeru HisanagaYasushi YamanakaKenji TsukaharaKazuhide Uchida
    • F01K27/00
    • F02C1/04F01C1/0215F01C1/324F01C11/008F01C21/008F04B23/103F04B23/12F04B41/06
    • A fluid machine according to the present invention has an expansion device for collecting waste heat from an internal combustion engine and converting the collected heat energy into mechanical rotational force, an electric rotating device selectively operating as an electric power generator and as an electric motor, and a pump device for pressurizing refrigerant for Rankine cycle, wherein those components are operatively connected with each other by a single rotating shaft. When starting up Rankine cycle, the electric rotating device is operated as the electric motor, so that the pump device is driven to pressurize and pump out high pressure refrigerant. Once the expansion device starts its operation, the electric rotating device is rotated by the expansion device and therefore the operational mode of the electric rotating device is switched over to the power generating mode. The expansion device will be operated at its maximum efficiency in relation to the heat energy inputted into the Rankine cycle, by controlling the power generation at the electric rotating device.
    • 根据本发明的流体机械具有用于从内燃机收集废热并将所收集的热能转换为机械旋转力的膨胀装置,作为发电机和电动机选择性地运行的电动旋转装置,以及 用于对用于兰金循环的制冷剂加压的泵装置,其中这些部件通过单个旋转轴彼此可操作地连接。 当启动兰金循环时,电动旋转装置作为电动机操作,从而驱动泵装置对高压制冷剂进行加压和泵送。 一旦膨胀装置开始运转,则电动旋转装置由膨胀装置旋转,因此电动旋转装置的操作模式切换到发电模式。 通过控制电动旋转装置的发电,膨胀装置以与输入到兰金循环的热能相关的最大效率运行。
    • 14. 发明申请
    • Fluid machine
    • 流体机
    • US20060179843A1
    • 2006-08-17
    • US11401235
    • 2006-04-11
    • Shigeru HisanagaYasushi Yamanaka
    • Shigeru HisanagaYasushi Yamanaka
    • B01D19/00F01B31/00F01K19/00F04B17/00F04B9/14
    • F02G1/00F01C1/0207F01C1/324F01C11/006F01C13/04F01C21/008F02G5/00Y02T10/166
    • A fluid machine for a waste heat collecting system for an internal combustion engine has an object to make most use of the collected waste heat and an operation of a compressor, an alternator or the like by a rotational driving force from an expansion device function well even during an engine running is stopped. The fluid machine according to the present invention has a pulley connected to the engine, an expansion device for generating a rotational driving force from the collected waste heat, a compressor device driven by the pulley and the expansion device, wherein a rotating shaft is commonly used for the pulley, the expansion device and the compressor device. The expansion device is an expansion device for changing its expansion volume, so that the Rankine cycle for collecting the waste heat can be operated most effectively.
    • 用于内燃机的废热收集系统的流体机械的目的是通过来自膨胀装置的旋转驱动力使收集的废热大量使用压缩机,交流发电机等的操作,甚至平稳地起作用 在发动机运转停止时。 根据本发明的流体机械具有连接到发动机的滑轮,用于从收集的废热产生旋转驱动力的膨胀装置,由滑轮和膨胀装置驱动的压缩机装置,其中通常使用旋转轴 用于滑轮,膨胀装置和压缩机装置。 膨胀装置是用于改变其膨胀体积的膨胀装置,从而可以最有效地操作用于收集废热的朗肯循环。
    • 15. 发明授权
    • Four-phase cycle planetating piston internal combustion engine
    • 四相循环行星式活塞内燃机
    • US3882827A
    • 1975-05-13
    • US45029074
    • 1974-03-12
    • WILLIAMS ROBERT H
    • WILLIAMS ROBERT H
    • F01C1/324F02B75/02F02B53/00
    • F01C1/324F02B2053/005F02B2075/027
    • A cylindrical piston eccentrically planetates within a cylindrical bore formed in the stator to generate with each cycle, on one side of the piston, proceeding clockwise from 6 o''clock to 12 o''clock, expanding fuel vapor suction and contracting fuel vapor compression strokes and, on the opposite side of the piston, proceeding from 12 o''clock to 6 o''clock, expanding combustion and contracting exhaust strokes. A shaft journaled concentrically on said stator has fixed thereto an eccentric on which the piston is concentrically mounted. A traveling tangential sealing engagement is maintained between the piston and stator bore to progressively generate said strokes. The fuel vapor inhaled and then compressed on said suction and compression strokes is delivered at 12 o''clock at the moment of maximum compression directly into an ignition sub chamber located between 12 o''clock and 1:20 o''clock, and is forthwith ignited by an electric spark. Controlled separation of the free spaces on opposite sides of the piston within the stator bore is effected in the vertical diametral plane of said bore by radially reciprocable vanes and confinement of the fuel charge in the ignition sub chamber pending the ignition of said charge employs separate cam operated radial valves located respectively at 12 o''clock and 1:20 o''clock. The exhaust stroke terminates at an exhaust port provided in the stator at approximately 5:30 o''clock and fuel vapors are fed to the engine through an inlet port located in the stator at approximately 6:30 o''clock. The piston is tethered by suitable means located at 12 o''clock which restrains rotation of said piston and confines its movement to planetation thereof as aforesaid.
    • 圆柱形活塞在形成在定子中的圆柱形孔内偏心地行星,以在活塞的一侧上的每个循环产生,从6点到12点顺时针方向,扩大燃料蒸汽吸入和收缩燃料蒸汽压缩冲程, 在活塞的相反一侧,从12点到6点,扩大燃烧和收缩排气冲程。 同轴地定位在所述定子上的轴固定有偏心体,活塞同心地安装在该偏心体上。 在活塞和定子孔之间保持行进的切向密封接合,以逐渐产生所述冲程。 在所述吸入和压缩冲程中吸入并随后被压缩的燃料蒸汽在最大压缩时的12点直接输送到位于12点和1:20点之间的点火子室中,并且立即点燃 用电火花。 通过径向往复运动的叶片在所述孔的垂直直径平面内对所述定子孔内的活塞的相对侧上的自由空间进行可控的分离,并且在所述电荷的点燃之前将所述燃料充电限制在所述点火子室中, 分别位于12点和1:20点的操作式径向阀。 排气冲程终止于大约5:30点设置在定子中的排气口,燃料蒸气在大约6:30点通过位于定子中的入口进给发动机。
    • 16. 发明申请
    • ROTARY DEVICE INCLUDING A COUNTERBALANCED SEAL ASSEMBLY
    • 旋转装置,包括平衡式密封组件
    • US20160061039A1
    • 2016-03-03
    • US14472151
    • 2014-08-28
    • GoTek Energy, Inc.
    • Steven Lee HerbruckBradley Scott Farrenkopf
    • F01C19/04F01C21/00F01C21/08F04C29/00F04C15/00F04C18/34F04C27/00F01C1/34F04C2/34
    • F01C19/04F01C1/324F01C21/008F01C21/0827F04C19/005
    • A rotary device is provided. The rotary device includes a housing having an inner surface and a rotor assembly mounted for rotation in the housing about an axis defining an axial direction of the rotary device. The rotor assembly includes a rotor and a seal assembly. The rotor includes a central portion and a plurality of arms extending radially outward from the central portion. Each arm has a distal end disposed for sliding engagement with the inner surface, and at least one of the arms has a channel defined therein. The seal assembly is disposed within the channel, and includes a seal, a base defining a seal channel configured to receive the seal, and a counterweight mechanism pivotally coupled to the base. The counterweight mechanism is configured to control a contact pressure exerted by the seal on the inner surface resulting from rotation of the rotor.
    • 提供旋转装置。 旋转装置包括具有内表面和转子组件的壳体,转子组件安装成围绕限定旋转装置的轴向的轴线旋转在壳体中。 转子组件包括转子和密封组件。 转子包括中心部分和从中心部分径向向外延伸的多个臂。 每个臂具有设置成与内表面滑动接合的远端,并且至少一个臂具有限定在其中的通道。 密封组件设置在通道内,并且包括密封件,限定被构造成接收密封件的密封通道的基座和枢转地联接到基座的配重机构。 配重机构被配置为控制由转子旋转导致的密封件在内表面上施加的接触压力。
    • 18. 发明申请
    • Fluid Regulating Valve
    • 流体调节阀
    • US20150118088A1
    • 2015-04-30
    • US14399739
    • 2013-05-15
    • Energreen AS
    • Trond MelhusPer Hassel Sörensen
    • F01C1/344F01C1/324
    • F01C1/3446F01C1/324F03B13/00F03D9/00F05B2220/602Y02B10/30Y02B10/50Y02B10/70Y02E10/28Y02E10/72
    • A valve for regulating the fluid pressure and/or the fluid flow in a fluid distribution network. The valve comprises a stator (10, 110) defining an interior space (14, 114); at least one inlet port (15, 131a, 132a) and at least one outlet port (15, 133a, 134a). The inlet port and outlet port are arranged for being connected to a fluid duct. A rotor (20, 120) is arranged rotatable about a rotational axis in the interior space and is provided with a rotor core (21, 121) and a number of vanes (23, 123), which are movable in relation to the core. The rotor continuously divides, in sealing relation with the stator, upon rotation of the rotor the interior space into at least two mutually separated chambers (14a, 14b, 114a-d). Each chamber comprises an inlet opening (17a, 17b, 112a) and an outlet opening (18a, 18b, 112b). The valve further comprises at least one inlet channel (17, 131, 132) which connects the at least one inlet port with at least one inlet opening of each of said at least two chambers and at least one outlet channel 18, 133, 134) which connects at least one outlet opening of each of said at least two chambers with the at least one outlet port
    • 用于调节流体分配网络中的流体压力和/或流体流量的阀。 该阀包括限定内部空间(14,114)的定子(10,110)。 至少一个入口(15,131a,132a)和至少一个出口(15,133a,134a)。 入口端口和出口布置成连接到流体管道。 转子(20,120)能够围绕内部空间中的旋转轴线旋转设置并且设置有可相对于芯部移动的转子芯(21,121)和多个叶片(23,123)。 当转子与转子密封时,转子将内部空间转动到至少两个相互分离的腔室(14a,14b,114a-d)中。 每个室包括入口(17a,17b,112a)和出口(18a,18b,112b)。 所述阀还包括至少一个入口通道(17,131,132),其将所述至少一个入口端口与所述至少两个腔室中的每一个的至少一个入口连接,以及至少一个出口通道18,133,134) 其将所述至少两个室中的每一个的至少一个出口开口连接至少一个出口
    • 19. 发明申请
    • Fluid-Actuated Rotary Drive Device
    • 流体驱动旋转驱动装置
    • US20130309115A1
    • 2013-11-21
    • US13983368
    • 2011-09-28
    • Gerhard ThorwartUlrich HohlFrank Menikheim
    • Gerhard ThorwartUlrich HohlFrank Menikheim
    • F01C1/324
    • F01C1/324F15B15/12
    • A fluid-actuated rotary drive device is provided, with a housing (2) in which is formed a working chamber (3), in which is a swivel piston (18) able to swivel around a central axis (5). Also fitted or able to be fitted in the working chamber (3) is a space divider and stop unit (38), comprised of a space divider element (24) and at least one stop element (42) fixed to the former. The components of the space divider and stop unit (38) are fitted to one another by snap-in connection, so that the space divider and stop unit (38) is easy to handle during its installation in the working chamber (3).
    • 提供一种流体驱动的旋转驱动装置,其中壳体(2)形成有工作室(3),其中是能够围绕中心轴线(5)旋转的旋转活塞(18)。 还安装或能够安装在工作室(3)中的是具有分隔件和停止单元(38)的空间分隔件和止挡单元(38),其包括固定在前者上的空间分隔件(24)和至少一个止挡元件(42)。 空间分隔器和止动单元(38)的部件通过卡入式连接而彼此嵌合,使得分隔件和停止单元(38)在安装在工作室(3)中时易于处理。
    • 20. 发明授权
    • Rolling piston type expansion machine
    • 滚动活塞式膨胀机
    • US5616019A
    • 1997-04-01
    • US534983
    • 1995-09-27
    • Hitoshi HattoriMotonori FutamuraKazuo SaitoMasao Ozu
    • Hitoshi HattoriMotonori FutamuraKazuo SaitoMasao Ozu
    • F04C18/32F01C1/324F01C21/18F03C2/30F01C1/02
    • F01C21/18F01C1/324
    • A rolling piston type expansion machine eliminates the need for an open-close valve mechanism and smoothens the timing of inflow of high-pressure gas. The machine includes a cylinder having a discharge port and a roller freely gyratable or orbital in the cylinder. A freely movable blade supported in the cylinder has its tip in contact with the circumferential surface of the roller to form an expansion chamber. A gas passage is freely rotatably supported by a main bearing member and a secondary bearing member. The gas passage is formed in a main shaft having a crank shaft portion that gyrates or orbits the roller. An inlet port is provided along a shaft center of the main shaft. An inflow timing control portion controls inflow timing of the suction gas toward the expansion chamber via the inlet port of the gas passage.
    • 滚动活塞式膨胀机不需要开闭阀机构,并且平滑高压气体流入的时间。 该机器包括具有排出口和滚筒的滚筒,该滚筒可在滚筒中自由地旋转或轨道运动。 支撑在气缸中的可自由移动的刀片的尖端与辊的圆周表面接触以形成膨胀室。 气体通道由主轴承构件和次轴承构件自由地可旋转地支撑。 气体通道形成在具有旋转或轨道运转的曲轴部的主轴上。 沿着主轴的轴心设置入口。 流入正时控制部经由气体通路的入口将吸入气体朝向膨胀室的流入正时控制。