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    • 41. 发明申请
    • Gas Metering Valve for a Dual Fuel Engine
    • 双燃料发动机气体计量阀
    • US20160245251A1
    • 2016-08-25
    • US15019537
    • 2016-02-09
    • HOERBIGER KOMPRESSORTECHNIK HOLDING GMBH
    • Martin KönczölChristoph Brandl
    • F02M63/00F02M43/00G05D7/01
    • F02M63/0012F02M21/0254F02M21/0272F02M43/00F02M63/0017F02M63/0033F02M63/0063F02M2200/16F02M2547/00F04B39/1053F04B53/1082Y02T10/32Y02T10/36
    • The invention relates to a gas metering valve (1) for a dual fuel engine (17), which has a displaceable closing body (6) which, in a position of resting against a valve seat (5), closes the gas metering valve (1) and, in a position of being lifted off from the valve seat (5), opens the gas metering valve (1). The gas metering valve (1) is actuatable in a gas operating mode, in which the gas metering valve (1) meters combustion gas via a gas channel (13) into an intake manifold (15) of the dual fuel engine (17), and in a liquid fuel operating mode, in which the gas metering valve (1) remains sealingly closed against the pressure prevalent in the intake manifold (15). The valve seat (5) is movably situated along a valve seat guide (4), the valve seat (5), owing to the combustion gas pressure in the gas channel (13), in the gas operating mode being pressed away from the closing body (6) against a stop (20) in the gas metering valve (1) and is kept in its operating position, and the valve seat (5) in the liquid fuel operating mode being sealingly pressed by the pressure from the intake manifold (15) against the closing body (6).
    • 本发明涉及一种用于双燃料发动机(17)的气体计量阀(1),其具有可移位的关闭体(6),其在与阀座(5)相对的位置处关闭气体计量阀 在从阀座(5)取下的位置,打开气体计量阀(1)。 气体计量阀(1)可以在气体操作模式中致动,其中,气体计量阀(1)经由气体通道(13)将燃烧气体计量到双燃料发动机(17)的进气歧管(15)中, 并且在液体燃料操作模式中,其中气体计量阀(1)相对于在进气歧管(15)中流行的压力保持密封地关闭。 阀座(5)沿着阀座引导件(4)可移动地定位,阀座(5)由于气体通道(13)中的燃烧气体压力,在气体操作模式中被压向远离闭合 主体(6)抵靠在气体计量阀(1)中的止动件(20)并保持在其操作位置,并且处于液体燃料操作模式的阀座(5)被来自进气歧管的压力 15)抵靠封闭体(6)。
    • 45. 发明申请
    • Elastomeric Sealing Element for Gas Compressor Valve
    • 气体压缩机用弹性密封件
    • US20090014678A1
    • 2009-01-15
    • US12134415
    • 2008-06-06
    • Kevin Patrick Durham
    • Kevin Patrick Durham
    • F16K1/46F04B53/10F16J15/32
    • F04B39/08F04B39/1013F04B39/102F04B39/1033F04B39/1053F05C2225/00F05C2225/02F05C2225/04F05C2225/08F05C2253/12
    • This invention relates to the use of elastomers with the sealing element of reciprocating gas compressor valves to increase the reliability of the gas tight seal within the reciprocating gas compressor valve and to increase the useful life of reciprocating gas compressor valve. The elastomeric material is either used as a coating layer on the sealing element of the reciprocating gas compressor valve, or as the entire sealing element. The elastomeric material acts as a cushion to reduce the wear on the sealing element, provides a superior gas tight seal, and is more tolerant of entrained dirt or liquids in the gas stream thereby increasing the operable life of the reciprocating gas compressor valve. Reducing the mean time between reciprocating gas compressor valve failures results in longer reciprocating gas compressor run times for the user, increased revenue generation for the user and safer operation of said equipment.
    • 本发明涉及弹性体与往复式气体压缩机阀的密封元件的使用,以提高往复式气体压缩机阀内的气密密封的可靠性并增加往复式气体压缩机阀的使用寿命。 弹性体材料用作往复式气体压缩机阀的密封元件上的涂层,或者用作整个密封元件。 弹性体材料充当垫子以减少密封元件的磨损,提供优异的气密密封,并且更耐受气流中夹带的污物或液体,从而增加往复式气体压缩机阀的可操作寿命。 减少往复式气体压缩机阀门故障之间的平均时间导致用户的往复式气体压缩机运行时间更长,增加了用户的收入并提高了所述设备的运行。
    • 47. 发明申请
    • Profiled plate valve
    • 异型板阀
    • US20010029981A1
    • 2001-10-18
    • US09759779
    • 2001-01-11
    • Neil C. Penza
    • F16K015/08
    • F04B39/1053F04B39/1033Y10T137/7839Y10T137/786Y10T137/7864Y10T137/7865
    • The subject application is directed to a compressor valve having a valve seat, a valve guard and a sealing plate with contoured sealing surfaces, the valve seat having defining inlet flow ports for admitting a controlled medium into the valve, the lower surface of the valve seat including at least one seating surface, the a valve guard having a recessed area and defining outlet flow ports for discharging a controlled medium from the valve, the sealing plate being positioned within a cavity between the valve guard and valve seat and moves relative to the lower surface of the valve seat between an open and closed position, the upper surface of the sealing plate defining at least one contoured sealing surface for engaging at least one seating surface of the valve seat along a continuous line of contact when the valve is in the closed position.
    • 本申请涉及具有阀座,阀门护罩和具有轮廓密封表面的密封板的压缩机阀,阀座具有限定用于允许受控介质进入阀的入口流动端口,阀座的下表面 包括至少一个就座表面,所述阀门保护罩具有凹入区域并且限定用于从所述阀排出受控介质的出口流动端口,所述密封板定位在所述阀门保护罩和阀座之间的空腔内并相对于所述下表面移动 阀座的表面在打开和关闭位置之间,密封板的上表面限定至少一个轮廓的密封表面,用于当阀处于闭合状态时沿着连续的接触线接合阀座的至少一个就座表面 位置。
    • 48. 发明授权
    • Automatic valve
    • 自动阀
    • US5390700A
    • 1995-02-21
    • US171160
    • 1993-12-22
    • Gunter FinkHelmut Schrocker
    • Gunter FinkHelmut Schrocker
    • F16K15/08F04B39/10F16K15/10F16K15/12F16K15/14F16K15/16
    • F04B39/1053Y10T137/784Y10T137/786
    • An automatic valve for use in compressors or an otherwise non-return valve has a valve seat with passage channels which are controlled by a shutter blade (16). The shutter blade (16) includes a lock element (27) with concentric rings (19) connected together by radial cross pieces (29). The lock element (27) is guided by flexible guides (26). To enlarge the passage cross section through the valve and to improve the flow conditions, the guides (26), clamped on their outer rim, are guided radially inwardly from the clamping point with an outer cross piece (30); then pass over in the shape of an arch (31) with a relatively large radius of curvature into at least one ring section (32), which extends in the circumferential direction, and is provided with an outwardly directed bend (33), and in turn passes over in an inwardly directed arch (34) with an equally large radius of curvature into an inner cross piece (35), which adjoins the lock element (37). The radial cross pieces (30, 35, 29) of the guides (26) and the lock rings (19) are offset with respect to each other in the circumferential direction. In the opening direction of the valve space for freely swinging out the shutter blade (16) without an end stop is provided.
    • 用于压缩机或其他单向阀的自动阀具有带有通过快门叶片(16)控制的通道的阀座。 快门叶片(16)包括具有通过径向横向片(29)连接在一起的同心环(19)的锁定元件(27)。 锁定元件(27)由柔性引导件(26)引导。 为了扩大通过阀门的通道横截面并改善流动条件,夹紧在其外缘上的引导件(26)从夹紧点被径向向内引导,具有外部横梁(30); 然后以比较大的曲率半径的拱形(31)的形状穿过至少一个在圆周方向上延伸的环形部分(32),并且设置有向外指向的弯曲部(33),并且 在具有相当大的曲率半径的向内指向的拱形物(34)中转动到邻接锁定元件(37)的内部横梁(35)中。 引导件(26)和锁定环(19)的径向横向件(30,35,29)在圆周方向上相对于彼此偏移。 提供用于自由摆动快门叶片(16)而不具有端部止挡的阀空间的打开方向。