Sealing System For An Oscillating-Piston Engine
    11.
    发明申请
    Sealing System For An Oscillating-Piston Engine 失效
    振动活塞发动机密封系统

    公开(公告)号:US20090188460A1

    公开(公告)日:2009-07-30

    申请号:US12280153

    申请日:2007-02-19

    Applicant: Arnold Wagner

    Inventor: Arnold Wagner

    CPC classification number: F01C9/005 F01C19/02 F01C19/08 F01C19/125 F03C4/00

    Abstract: The sealing system for oscillating-piston engines, comprising at least two oscillating pistons (15) which revolve together in a spherical housing (24) about an axis (45) of revolution provided in the housing centre and which each have two opposite piston arms, which, when revolving, perform reciprocating oscillating movements in opposite directions about an oscillation axis (46) perpendicular to the axis (45) of revolution, wherein guide members (47) are provided on at least two pistons, said guide members (47) engaging in at least one guide groove (39) formed in the housing (24) for controlling the oscillating movements, has sealing elements (1, 2, 12, 14, 26, 33) on or in the vicinity of all moving edges surrounding the working chambers (17) and prechambers (30), which sealing elements (1, 2, 12, 14, 26, 33) close in a sealing manner all the gap regions present between machine parts displaced relative to one another by revolving and/or oscillating movements and not in direct contact, and has additional sealing elements (60) which prevent the excessive penetration of lubricating fluid into inlet (40) and outlet openings (41) in the housing (24).

    Abstract translation: 用于振动活塞发动机的密封系统包括至少两个围绕设置在壳体中心中的旋转轴线(45)在球形壳体(24)中一起旋转并且每个具有两个相对的活塞臂的摆动活塞(15) 当旋转时,绕垂直于旋转轴线(45)的摆动轴(46)沿相反方向进行往复摆动运动,其中引导件(47)设置在至少两个活塞上,所述导向件(47)接合 在形成在壳体(24)中用于控制振荡运动的至少一个引导槽(39)中,在围绕工作的所有移动边缘上或附近具有密封元件(1,2,12,14,26,33) 室(17)和前室(30),密封元件(1,2,12,14,26,33)以密封方式关闭,通过旋转和/或摆动相对于彼此移位的机器部件之间存在的所有间隙区域 动作不直接接触, 并且具有另外的密封元件(60),其防止润滑流体过度渗入到壳体(24)中的入口(40)和出口(41)中。

    Fluid System for Oscillating-Piston Engines
    12.
    发明申请
    Fluid System for Oscillating-Piston Engines 失效
    振动活塞式发动机的流体系统

    公开(公告)号:US20090151683A1

    公开(公告)日:2009-06-18

    申请号:US12278627

    申请日:2007-02-09

    Applicant: Arnold Wagner

    Inventor: Arnold Wagner

    CPC classification number: F01C9/005 F01C21/045 F04C29/0007 F04C29/023

    Abstract: The fluid system is intended for an oscillating-piston engine (100) which has at least two double-armed oscillating pistons (4) arranged in a spherical housing (19) and revolving together about an axis (23) of revolution arranged in the housing centre, wherein the oscillating pistons, when revolving, mutually perform reciprocating oscillating movements about an oscillation axis (24) perpendicular to the axis (23) of revolution, and guide members (5) attached to at least two pistons (4) engage in at least one guide groove (17) formed in the housing (19) and serving to control the oscillating movements. The fluid system (70) comprises at least one central feed opening (1), lying in the vicinity of an end of the axis (23) of revolution, for a fluid, continuous cavities and/or bores (10) in the pistons (4) for the fluid, and a fluid discharge on the outer side (3) of the respective piston. A rotation of the pistons (4) about the axis (23) of revolution causes a pressure difference which acts as suction at the feed opening (1) and as pressure in the discharge region (16) and thus makes possible a pumpless fluid system or a fluid system which needs only a low supply pressure. The fluid system serves, for example, to lubricate the oscillating-piston engine (100) and—when fuel is used as the fluid—can be supplied with fluid from a fuel tank together with a fuel supply and with cooling of the oscillating-piston engine.

    Abstract translation: 流体系统用于具有布置在球形壳体(19)中的至少两个双臂摆动活塞(4)并围绕布置在壳体中的旋转轴线(23)一起旋转的摆动活塞发动机(100) 中心,其中所述摆动活塞当旋转时,相对于垂直于旋转轴线(23)的摆动轴线(24)相互执行往复摆动运动,以及附接到至少两个活塞(4)的引导构件(5) 形成在壳体(19)中并用于控制振荡运动的至少一个引导槽(17)。 流体系统(70)包括位于旋转轴线(23)的端部附近的至少一个中心进料口(1),用于活塞中的流体,连续空腔和/或孔(10) 4),以及在相应活塞的外侧(3)上的流体排放。 活塞(4)围绕旋转轴线(23)的旋转导致作为进料口(1)处的吸力的压力差和作为排出区域(16)中的压力的​​压力差,并且因此使得无泵流体系统或 仅需要低供应压力的流体系统。 流体系统例如用于润滑振荡活塞式发动机(100),并且 - 当使用燃料时,流体可以与燃料供应源一起从燃料箱供应流体,并且通过冷却冲击活塞 发动机。

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