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    • 1. 发明授权
    • Variable valve actuator with a pneumatic booster
    • 带气动助力器的可变气门执行机构
    • US07536984B2
    • 2009-05-26
    • US11787295
    • 2007-04-16
    • Zheng Lou
    • Zheng Lou
    • F01L1/34
    • F01L9/02F01L9/026F01L2001/34446F01L2003/258F01L2009/028F01L2810/05Y10S137/906Y10T137/87096
    • Actuators, and corresponding methods and systems for controlling such actuators, provide independent valve control with a large initial or opening force. In an exemplary embodiment, an actuator includes a driver further including a housing defining a longitudinal axis and first and second directions, an actuation mechanism capable of generating actuation force at least in the first direction, and a rod with one end operably connected with at least one part of the actuation mechanism and with the other end available for an operable connection with a load such as an engine valve; at least one return spring operably connected with the rod through a spring retainer assembly and biasing the rod in the second direction; and a pneumatic booster further including a pneumatic cylinder, a pneumatic piston operably connected with the rod through the spring retainer assembly and biasing the rod in the first direction, a charge mechanism providing a controlled fluid communication between the pneumatic cylinder and a high-pressure gas source, and a bleed mechanism providing a controlled fluid communication between the pneumatic cylinder to a low-pressure gas sink.
    • 致动器以及用于控制这种致动器的相应方法和系统提供具有大的初始或打开力的独立阀控制。 在示例性实施例中,致动器包括驱动器,其进一步包括限定纵向轴线和第一和第二方向的壳体,能够至少在第一方向上产生致动力的致动机构,以及一端与至少可操作地连接的杆 致动机构的一部分,另一端可用于与诸如发动机气门的负载的可操作连接; 至少一个复位弹簧通过弹簧保持器组件与所述杆可操作地连接并且沿所述第二方向偏置所述杆; 以及气动助力器,还包括气动缸,气动活塞,通过所述弹簧保持器组件与所述杆可操作地连接并且沿所述第一方向偏置所述杆;充气机构,其在所述气缸和高压气体之间提供受控的流体连通 源和泄放机构,其在气压缸与低压气体槽之间提供受控的流体连通。
    • 2. 发明授权
    • Variable valve actuator with a pneumatic booster
    • 带气动助力器的可变气门执行机构
    • US08146547B2
    • 2012-04-03
    • US12636051
    • 2009-12-11
    • Zheng Lou
    • Zheng Lou
    • F01L9/02
    • F01L9/02F01L9/026F01L2001/34446F01L2003/258F01L2009/028F01L2810/05Y10S137/906Y10T137/87096
    • Actuators, and corresponding methods and systems for controlling such actuators, provide independent valve control with a large initial or opening force. In an exemplary embodiment, an actuator includes a driver further including a housing defining a longitudinal axis and first and second directions, an actuation mechanism capable of generating actuation force at least in the first direction, and a rod with one end operably connected with at least one part of the actuation mechanism and with the other end available for an operable connection with a load such as an engine valve; at least one return spring operably connected with the rod through a spring retainer assembly and biasing the rod in the second direction; and a pneumatic booster further including a pneumatic cylinder, a pneumatic piston operably connected with the rod through the spring retainer assembly and biasing the rod in the first direction, a charge mechanism providing a controlled fluid communication between the pneumatic cylinder and a high-pressure gas source, and a bleed mechanism providing a controlled fluid communication between the pneumatic cylinder to a low-pressure gas sink.
    • 致动器以及用于控制这种致动器的相应方法和系统提供具有大的初始或打开力的独立阀控制。 在示例性实施例中,致动器包括驱动器,其进一步包括限定纵向轴线和第一和第二方向的壳体,能够至少在第一方向上产生致动力的致动机构,以及一端与至少可操作地连接的杆 致动机构的一部分,另一端可用于与诸如发动机气门的负载的可操作连接; 至少一个复位弹簧通过弹簧保持器组件与所述杆可操作地连接并且沿所述第二方向偏置所述杆; 以及气动助力器,还包括气动缸,气动活塞,通过所述弹簧保持器组件与所述杆可操作地连接并且沿所述第一方向偏置所述杆;充气机构,其在所述气缸和高压气体之间提供受控的流体连通 源和泄放机构,其在气压缸与低压气体槽之间提供受控的流体连通。
    • 3. 发明申请
    • PRESSURE BALANCED ENGINE VALVES
    • 压力平衡发动机阀门
    • US20120017860A1
    • 2012-01-26
    • US13234258
    • 2011-09-16
    • Stephen ScuderiRiccardo Meldolesi
    • Stephen ScuderiRiccardo Meldolesi
    • F01L1/06
    • F02B41/08F01L1/181F01L1/38F01L1/46F01L1/462F01L3/20F01L9/026F01L2003/258F01L2810/05
    • A split-cycle engine includes a crankshaft rotatable about a crankshaft axis. A compression piston is slidably received within a compression cylinder and operatively connected to the crankshaft such that the compression piston reciprocates through intake and compression strokes during a single rotation of the crankshaft. An expansion piston is slidably received within an expansion cylinder and operatively connected to the crankshaft such that the expansion piston reciprocates through expansion and exhaust strokes during a single rotation of the crankshaft. A crossover passage interconnects the expansion and compression cylinders. The crossover passage includes crossover compression (XovrC) and crossover expansion (XovrE) valves defining a pressure chamber therebetween. At least one of the XovrC and XovrE valves is a balanced valve. A fluid pressure balancer biases the valve for balancing fluid pressures acting against the valve in both opening and closing directions, reducing the forces required in actuating the valve.
    • 分相发动机包括可围绕曲轴轴线旋转的曲轴。 压缩活塞可滑动地容纳在压缩气缸中并且可操作地连接到曲轴,使得压缩活塞在曲轴的单次旋转期间通过进气和压缩冲程往复运动。 膨胀活塞可滑动地容纳在膨胀缸内并且可操作地连接到曲轴,使得膨胀活塞在曲轴的单次旋转期间通过膨胀和排气冲程往复运动。 交叉通道将膨胀和压缩气缸相互连接。 交叉通道包括交叉压缩(XovrC)和在其间限定压力室的交叉膨胀(XovrE)阀。 XovrC和XovrE阀中至少有一个是平衡阀。 流体压力平衡器偏压阀,以平衡在打开和关闭方向上作用在阀上的流体压力,从而减少致动阀所需的力。
    • 4. 发明申请
    • Pressure balanced engine valves
    • 压力平衡发动机阀门
    • US20090044778A1
    • 2009-02-19
    • US12218757
    • 2008-07-17
    • Stephen P. ScuderiRiccardo Meldolesi
    • Stephen P. ScuderiRiccardo Meldolesi
    • F01L1/46F02B33/02
    • F02B41/08F01L1/181F01L1/38F01L1/46F01L1/462F01L3/20F01L9/026F01L2003/258F01L2810/05
    • A split-cycle engine includes a crankshaft rotatable about a crankshaft axis. A compression piston is slidably received within a compression cylinder and operatively connected to the crankshaft such that the compression piston reciprocates through intake and compression strokes during a single rotation of the crankshaft. An expansion piston is slidably received within an expansion cylinder and operatively connected to the crankshaft such that the expansion piston reciprocates through expansion and exhaust strokes during a single rotation of the crankshaft. A crossover passage interconnects the expansion and compression cylinders. The crossover passage includes crossover compression (XovrC) and crossover expansion (XovrE) valves defining a pressure chamber therebetween. At least one of the XovrC and XovrE valves is a balanced valve. A fluid pressure balancer biases the valve for balancing fluid pressures acting against the valve in both opening and closing directions, reducing the forces required in actuating the valve.
    • 分相发动机包括可围绕曲轴轴线旋转的曲轴。 压缩活塞可滑动地容纳在压缩气缸内并且可操作地连接到曲轴,使得压缩活塞在曲轴的单次旋转期间通过进气和压缩冲程往复运动。 膨胀活塞可滑动地容纳在膨胀缸内并且可操作地连接到曲轴,使得膨胀活塞在曲轴的单次旋转期间通过膨胀和排气冲程往复运动。 交叉通道将膨胀和压缩气缸相互连接。 交叉通道包括交叉压缩(XovrC)和在其间限定压力室的交叉膨胀(XovrE)阀。 XovrC和XovrE阀中至少有一个是平衡阀。 流体压力平衡器偏压阀,以平衡在打开和关闭方向上作用在阀上的流体压力,从而减少致动阀所需的力。
    • 8. 发明申请
    • VARIABLE VALVE ACTUATOR WITH A PNEUMATIC BOOSTER
    • 具有气动升降器的可变阀门执行器
    • US20100126442A1
    • 2010-05-27
    • US12636051
    • 2009-12-11
    • Zheng Lou
    • Zheng Lou
    • F01L9/02
    • F01L9/02F01L9/026F01L2001/34446F01L2003/258F01L2009/028F01L2810/05Y10S137/906Y10T137/87096
    • Actuators, and corresponding methods and systems for controlling such actuators, provide independent valve control with a large initial or opening force. In an exemplary embodiment, an actuator includes a driver further including a housing defining a longitudinal axis and first and second directions, an actuation mechanism capable of generating actuation force at least in the first direction, and a rod with one end operably connected with at least one part of the actuation mechanism and with the other end available for an operable connection with a load such as an engine valve; at least one return spring operably connected with the rod through a spring retainer assembly and biasing the rod in the second direction; and a pneumatic booster further including a pneumatic cylinder, a pneumatic piston operably connected with the rod through the spring retainer assembly and biasing the rod in the first direction, a charge mechanism providing a controlled fluid communication between the pneumatic cylinder and a high-pressure gas source, and a bleed mechanism providing a controlled fluid communication between the pneumatic cylinder to a low-pressure gas sink.
    • 致动器以及用于控制这种致动器的相应方法和系统提供具有大的初始或打开力的独立阀控制。 在示例性实施例中,致动器包括驱动器,其进一步包括限定纵向轴线和第一和第二方向的壳体,能够至少在第一方向上产生致动力的致动机构,以及一端与至少可操作地连接的杆 致动机构的一部分,另一端可用于与诸如发动机气门的负载的可操作连接; 至少一个复位弹簧通过弹簧保持器组件与所述杆可操作地连接并且沿所述第二方向偏置所述杆; 以及气动助力器,还包括气动缸,气动活塞,通过所述弹簧保持器组件与所述杆可操作地连接并沿所述第一方向偏压所述杆;充气机构,其在所述气缸和高压气体之间提供受控的流体连通 源和泄放机构,其在气压缸与低压气体槽之间提供受控的流体连通。