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公开(公告)号:US20140366956A1
公开(公告)日:2014-12-18
申请号:US13919338
申请日:2013-06-17
Applicant: Deere & Company
Inventor: Scott R. Wiens , Randall K. Bill , Jarrod A. Lemire
IPC: F16H61/4174
CPC classification number: F16H57/027 , B60K15/06 , B60K2015/03118 , E02F9/0883 , F02M37/0088 , F16H57/037 , F16H57/045 , F16H57/0483 , Y10T137/3105
Abstract: A vehicle hydraulic oil reservoir assembly includes a main reservoir and an auxiliary reservoir. The main reservoir has a lower portion and an upper portion. The auxiliary reservoir has a lower portion and an upper portion. The auxiliary reservoir has a port formed in the upper portion thereof. The lower portion of the auxiliary reservoir is communicated with the lower portion of the main reservoir. A breather vent is in communication with atmosphere. A vent pipe communicates the port with the breather vent.
Abstract translation: 车辆液压油储存器组件包括主储存器和辅助储存器。 主容器具有下部和上部。 辅助储存器具有下部和上部。 辅助储存器具有形成在其上部的端口。 辅助储存器的下部与主储存器的下部连通。 一个通气孔与大气沟通。 排气管将端口与通气孔连通。
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公开(公告)号:US08596292B2
公开(公告)日:2013-12-03
申请号:US13522208
申请日:2011-08-22
Applicant: William C. Maier
Inventor: William C. Maier
CPC classification number: F04B53/20 , F04B39/16 , Y10T137/3105 , Y10T137/794 , Y10T137/8013 , Y10T137/8593
Abstract: A controlled flow drain having an upper flange coupled to a lower flange. The upper flange defines an inlet cavity and the lower flange defines a swirl chamber. The inlet cavity and swirl chamber are in fluid communication via a swirl nozzle defined within a swirl nozzle plate that separates the inlet cavity from the swirl chamber. After separating debris within the drain fluid, the drain fluid is accelerated through the swirl nozzle and discharged into the swirl chamber, and more debris is thereby separated and eventually settles into an annular groove. The drain fluid may then exit the lower flange via an exit control passage. The swirl chamber may be flushed with a series of flushing liquid injection ports symmetrically-arrayed about the annular groove. Flushing the swirl chamber removes fluidized debris and also remove any built up fouling present on the swirl nozzle and exit control passage.
Abstract translation: 一个受控的排水管,具有一个联接到下凸缘的上凸缘。 上凸缘限定入口腔,下凸缘限定旋流室。 入口腔和涡流室通过限定在旋流喷嘴板内的旋流喷嘴流体连通,涡流喷嘴将入口腔与涡流室分离。 在排出流体中分离碎屑之后,排出流体通过旋流喷嘴被加速并被排放到涡流室中,并且由此分离出更多的碎屑并最终沉降成环形凹槽。 然后,排出流体可以经由出口控制通道离开下凸缘。 可以用围绕环形槽对称地排列的一系列冲洗液注入口冲洗涡流室。 冲洗涡流室可以除去流化的碎屑,还可以去除涡流喷嘴和出口控制通道上存在的任何积聚的污垢。
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公开(公告)号:US06895989B2
公开(公告)日:2005-05-24
申请号:US10413514
申请日:2003-04-15
Applicant: Vladimir Olshanetsky , Alexey Zarochintsev , Ehud Orenstein
Inventor: Vladimir Olshanetsky , Alexey Zarochintsev , Ehud Orenstein
IPC: B60K15/035 , F02M25/08 , F02M37/00 , F16K24/04
CPC classification number: F02M37/0023 , B60K15/03504 , B60K2015/03276 , B60K2015/0344 , B60K2015/03509 , B60K2015/03514 , B60K2015/03557 , F02M25/08 , F02M37/0082 , Y10T137/3099 , Y10T137/3105 , Y10T137/86324
Abstract: A fuel trap for a vehicle's fuel system, the liquid fuel trap comprises a housing adapted for fitting within the vehicle's fuel tank and at least one fuel fluid inlet port connectable to a fuel venting valve system, a gas outlet port connectable to a fuel vapor treating system; and a liquid fuel discharge assembly for discharging liquid fuel into the fuel tank, said liquid fuel discharge assembly fitted with a fluid propelling mechanism responsive to acceleration and buoyant forces, and to fuel motion within the fuel tank.
Abstract translation: 一种用于车辆燃料系统的燃料收集器,液体燃料收集器包括适于装配在车辆燃料箱内的壳体和可连接到燃料排放阀系统的至少一个燃料流体入口,可连接到燃料蒸气处理 系统; 以及用于将液体燃料排放到燃料箱中的液体燃料排出组件,所述液体燃料排放组件装配有响应于加速和浮力的流体推进机构,并且燃料在燃料箱内运动。
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公开(公告)号:US5337779A
公开(公告)日:1994-08-16
申请号:US615571
申请日:1990-11-19
Applicant: Hiroshi Fukuhara
Inventor: Hiroshi Fukuhara
CPC classification number: F16T1/00 , Y10T137/3052 , Y10T137/3105 , Y10T137/7306
Abstract: An automatic drain device in an air compressor system includes an electrode sensor in a liquid collection cell. An electronic control detects an electrical change in the electrode sensor resulting from contact with liquid in the liquid collection cell and energizes a drain valve for a predetermined time effective to drain the liquid collection cell. A cycle timer triggers the energization of the drain valve when the electrode sensor fails to provide the required electrical change for a predetermined cycle time. Test inputs permit driving the electronic control to simulate sensing of liquid, and also permit energization of the drain valve without involving the remainder of the electronic control.
Abstract translation: 空气压缩机系统中的自动排水装置包括液体收集池中的电极传感器。 电子控制器检测由于与液体收集单元中的液体接触而导致的电极传感器中的电变化,并且将排水阀通电一预定时间以有效地排出液体收集单元。 当电极传感器不能在预定的周期时间内提供所需的电气变化时,周期定时器触发排水阀的通电。 测试输入允许驱动电子控制来模拟液体的感测,并且还允许排水阀通电而不涉及电子控制的其余部分。
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公开(公告)号:US5205315A
公开(公告)日:1993-04-27
申请号:US833018
申请日:1992-02-10
Applicant: Wayne R. Margerum
Inventor: Wayne R. Margerum
CPC classification number: B60T17/004 , B60C23/16 , Y10T137/3102 , Y10T137/3105
Abstract: The manual valve normally attached to the wet tank of an air pressure system in a motor vehicle which accumulates moisture is replaced by an automatic valve which has an inlet port connected to the drain line from the wet tank and an outlet port vented to the atmosphere. This valve is operable between an open position where the inlet and outlet ports are interconnected and a closed position where these two ports are isolated from each other. An air line which is used to activate the valve is interconnected to the parking brake of the motor vehicle and is operable to move the valving means to the closed position during normal operation of the vehicle and to the open position whenever the parking brake is engaged to thereby automatically drain moisture from the wet tank while the vehicle is parked.
Abstract translation: 通常安装在积聚水分的机动车辆中的空气压力系统的湿箱中的手动阀被自动阀代替,该自动阀具有连接到来自湿箱的排水管的入口端口和通向大气的出口。 该阀可以在入口和出口相互连接的打开位置和这两个端口彼此隔离的关闭位置之间操作。 用于启动阀的空气管路与机动车辆的驻车制动器相互连接,并且可操作以在车辆的正常操作期间将阀装置移动到关闭位置,并且每当驻车制动器接合到 从而在车辆停放时自动从湿箱中排出水分。
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公开(公告)号:US4883995A
公开(公告)日:1989-11-28
申请号:US292061
申请日:1988-12-30
Applicant: Frederick J. Rink, Jr.
Inventor: Frederick J. Rink, Jr.
CPC classification number: H02K9/24 , H02K5/124 , Y10T137/3105
Abstract: A fluid draining system for an electric power generator of the type containing a cooling gas under pressure includes oil-pressurized shaft seals adjacent the rotor bearings, to prevent the pressurized gas from escaping through the bearings. Oil is at a pressure higher than the pressurized gas and means are provided to automatically drain leakage oil from the bottom of the generator. The automatic drain includes a differential pressure valve with its first inlet connected to the drain in the bottom of the generator, its second inlet connected to the gas pressure within the generator, and its outlet completing the drain path for the system when the differential pressure of the first inlet exceeds that of the second inlet by a preset amount.
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公开(公告)号:US4580543A
公开(公告)日:1986-04-08
申请号:US699139
申请日:1985-02-07
Applicant: Kongo Aoki
Inventor: Kongo Aoki
CPC classification number: F01M13/0405 , F01M13/023 , Y10T137/3105
Abstract: A ventilator for use with an internal combustion engine includes an oil sump located at the lower end of the vertically extending outlet tube of the ventilator, a check valve disposed at the bottom of the sump for allowing fluid to flow from the sump toward the pressure chamber of the ventilator, and an outlet port extending out through the side wall of the outlet tube. The outlet tube is in communication with an intake manifold via the outlet port. The oil sump cooperates with the check valve to prevent oil from flowing into the intake manifold through the outlet port.
Abstract translation: 用于内燃机的呼吸机包括位于通气机的垂直延伸的出口管的下端的油底壳,设置在贮槽底部的止回阀,用于允许流体从贮槽向压力室流动 的通气机,以及从出口管的侧壁延伸出的出口。 出口管经由出口与进气歧管连通。 油底壳与止回阀配合,以防止油通过出口流入进气歧管。
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公开(公告)号:US4453893A
公开(公告)日:1984-06-12
申请号:US368135
申请日:1982-04-14
Applicant: Marlin L. Hutmaker
Inventor: Marlin L. Hutmaker
CPC classification number: F16T1/00 , Y10T137/3105
Abstract: The invention comprises a valve contained in a drainage line from a compressor tank and a control for operating the valve. The control includes a timer which comprises an air storage tank, an air bleed valve for bleeding the storage tank and structure for operating the valve in response to air pressure received from the air storage tank. The timer operator is initiated in response to deactivation of the compressor motor.
Abstract translation: 本发明包括一个包含在来自压缩机箱的排水管中的阀和用于操作阀的控制器。 该控制装置包括定时器,该定时器包括空气存储箱,用于使储存罐渗血的排气阀和响应于从储气罐接收的空气压力来操作阀的结构。 响应于压缩机马达的停用启动定时器操作器。
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公开(公告)号:US4353387A
公开(公告)日:1982-10-12
申请号:US150121
申请日:1980-05-15
Applicant: Pierre A. Bouygues , Jean-Marie Delcoustal
Inventor: Pierre A. Bouygues , Jean-Marie Delcoustal
CPC classification number: F16T1/48 , F16T1/14 , Y10T137/3102 , Y10T137/3105
Abstract: The drainage device includes a drainage chamber (9) which communicates via an inlet pipe (20) with a compressed air tank and is provided with an outlet orifice (16), elements (5,24) for closing the outlet orifice and elements (5,19,1,21) for opening the outlet orifice while partially closing off the inlet pipe. Application to gas-blast circuit breaker installations.
Abstract translation: 排水装置包括通过入口管(20)与压缩空气罐连通的排水室(9),并设置有出口孔(16),用于封闭出口孔和元件(5)的元件(5,24) ,19,1,21),用于打开出口孔口,同时部分关闭入口管道。 应用于气体断路器的安装。
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公开(公告)号:US4026685A
公开(公告)日:1977-05-31
申请号:US641248
申请日:1975-12-16
Applicant: Arthur R. Grix
Inventor: Arthur R. Grix
CPC classification number: B01D53/0446 , B01D46/30 , B01D53/0454 , B01D53/26 , B01D2257/80 , B01D2259/4009 , B01D53/0431 , Y10T137/3105
Abstract: A flow-reversing, regenerative, desiccant air dryer system absorbs moisture, oil droplets, and carbon particles from the incoming air during compression in a compressed air system. Once sufficient air pressure has been attained in an air pressure reservoir, control valves direct the flow of atmospheric-pressure air, heated by passing through the warm compressor cylinder, in a reverse direction through the air dryer. The reverse flow of heated, atmospheric pressure air both purges the trapped oil, carbon particles, and condensed liquid water and removes the moisture from the desiccant.
Abstract translation: 流动反向,再生式干燥剂空气干燥器系统在压缩空气系统中在压缩期间从进入的空气中吸收水分,油滴和碳颗粒。 一旦在空气压力贮存器中已经达到足够的空气压力,则控制阀通过空气干燥器反向引导通过暖压缩机气缸加热的大气压力空气的流动。 加热的大气压空气的反向流动既清除被捕获的油,碳颗粒和冷凝的液态水,并从干燥剂中除去水分。
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