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    • 1. 发明申请
    • PRESSURE EQUALIZATION ASSEMBLY FOR A LIQUID STORAGE VESSEL
    • 用于液体储存容器的压力均衡装配
    • WO2010121242A1
    • 2010-10-21
    • PCT/US2010/031583
    • 2010-04-19
    • TAYLOR INNOVATIONS, L.L.C.TAYLOR, Julian, S.
    • TAYLOR, Julian, S.
    • G05D16/00
    • F16K17/196Y10T137/3127Y10T137/7846Y10T137/7922
    • A vapor pressure equalization assembly (1 10) having an underpressure relief assembly (120) and an overpressure relief assembly (122) in fluidic communication with the vapor space (106) of a liquid storage tank (102). The underpressure and overpressure relief assemblies each have movable pistons (136, 162) sealingly engageable with respective sealing members (138, 164), and biasing members (146, 168) which exert respective biasing forces to maintain the pistons in sealing engagement with the sealing members. A predetermined underpressure or overpressure differential between the vapor space pressure and atmospheric pressure will cause one of the pistons to open fluidic communication of the vapor space to equalize the vapor space pressure with that of the surrounding atmospheric pressure.
    • 具有负压释放组件(120)和与液体储存罐(102)的蒸气空间(106)流体连通的超压释放组件(122)的蒸汽压力均衡组件(110)。 负压和超压释放组件各自具有可与相应的密封构件(138,164)密封接合的活动活塞(136,162)和施加相应偏压力的偏置构件(146,168),以保持活塞与密封件 成员。 蒸汽空间压力和大气压力之间的预定负压或超压差将导致一个活塞打开蒸汽空间的流体连通,以使蒸汽空间压力与周围大气压力的平衡。
    • 4. 发明申请
    • LARGE DIAMETER AND RELATIVELY HIGH PRESSURE RELIEF VALVE
    • 大直径和相对高压减压阀
    • WO1994021950A1
    • 1994-09-29
    • PCT/US1993012248
    • 1993-12-16
    • TAYLOR, Julian, S.
    • F16K17/14
    • F16K17/14F16K17/406Y10T137/1782Y10T137/7781
    • A pressure relief valve (10-10') for monitoring pressure in relatively large diameter conductors containing relatively high fluid pressure. The valve having housing (16, 18) openings of equal diameter with respect to the conductor and a flow passageway (19) is provided with different diameter coaxial sleeves (28, 30) slidably receiving dual diameter interconnected pistons (38, 52). The smaller diameter piston (52) forms a flow passageway (19) stop while the larger diameter piston (38) generates a pressure differential with respect to the smaller diameter piston for moving both pistons toward a flow passageway open position in which a piston rod (40) guides the pistons in their axial movement with respect to the sleeves and collapses a pressure collapsible pin (62) supported by a pin cage (26) connected with the valve body (12) in axial alignment with the piston rod (40) for opening the valve passageway (19) and releasing fluid pressure from the conductor.
    • 一种用于在相对较大直径的导体中监测压力的减压阀(10-10'),该导管包含相当高的流体压力。 具有相对于导体具有相等直径的壳体(16,18)的阀和流动通道(19)设置有可滑动地接收双直径互连活塞(38,52)的不同直径的同轴套管(28,30)。 较小直径的活塞(52)形成流动通道(19)停止,而较大直径的活塞(38)相对于较小直径的活塞产生压差,用于将两个活塞朝向流动通道打开位置移动,其中活塞杆 40)引导活塞相对于套筒的轴向运动,并且将与阀体(12)连接的销保持架(26)支撑的压力可折叠销(62)与活塞杆(40)轴向对准, 打开阀通道(19)并从导体释放流体压力。