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    • 3. 发明授权
    • Fluid control valve
    • 流体控制阀
    • US09371930B2
    • 2016-06-21
    • US13598409
    • 2012-08-29
    • Shigeyuki Hayashi
    • Shigeyuki Hayashi
    • F16K1/50F16K31/00F16K47/00F16K1/44
    • F16K31/007F16K1/44F16K1/50F16K47/00
    • An object of this invention is both to prevent contamination of a fluid passing a fluid control valve and to prevent a tilt of a valve body in a moving direction and vibration of the valve body. The fluid control valve comprises a valve body that is arranged on an inner surface of a valve chest through a predetermined space in the valve chest and that is arranged on a valve seat arranged in the valve chest in a detachable manner, an actuator that biases the valve body in a direction of opening the valve, a valve body return spring that biases the valve body in a direction of closing the valve, and a tilt restraining spring that biases the valve body in a direction of resolving a tilt of the valve body to an open/close direction.
    • 本发明的目的在于防止通过流体控制阀的流体的污染并且防止阀体在移动方向上的倾斜和阀体的振动。 所述流体控制阀包括阀体,所述阀体通过所述阀体内的预定空间设置在所述阀体的内表面上,并且以可拆卸的方式设置在设置在所述阀体中的阀座上;致动器, 阀体在打开阀的方向上,阀体复位弹簧,其使阀体沿关闭阀的方向偏压;以及倾斜抑制弹簧,其将阀体沿着将阀体倾斜的方向偏压到 开/关方向。
    • 5. 发明授权
    • Vibration damping device for a valve
    • 阀门振动阻尼装置
    • US09103467B2
    • 2015-08-11
    • US14198401
    • 2014-03-05
    • Michael McNeely
    • Michael McNeely
    • F16K21/10F16K47/04F16K1/12F16K47/00
    • F16F15/14F16K1/126F16K1/32F16K17/0433F16K31/52433F16K47/00F16K47/04Y10T74/1876Y10T137/7793Y10T137/7904
    • Embodiments of the invention provide a vibration damping system including a fixed element, a moveable element arranged to move linearly along an axis relative to the fixed element in response to a non-mechanical force, and an inerter element coupling the moveable element to the fixed element, and configured to convert the linear motion of the moveable element into rotational motion about the axis. The vibration damping system may be applied to many types of valves. In some embodiments, the vibration damping system may be applied to pressure relief valves. In some embodiments, the moveable element rotates to provide inertial damping. In other embodiments, the inerter element rotates to provide inertial damping.
    • 本发明的实施例提供了一种减震系统,其包括固定元件,可移动元件,其被布置成响应于非机械力而沿着相对于固定元件的轴线线性运动,以及将可移动元件联接到固定元件的惰性元件 并且被配置为将可移动元件的线性运动转换成围绕该轴线的旋转运动。 振动阻尼系统可以应用于许多类型的阀门。 在一些实施例中,减震系统可以应用于泄压阀。 在一些实施例中,可移动元件旋转以提供惯性阻尼。 在其他实施例中,重载元件旋转以提供惯性阻尼。
    • 6. 发明授权
    • Tunable check valve
    • 可调节止回阀
    • US09080690B2
    • 2015-07-14
    • US14524093
    • 2014-10-27
    • Dennis W. GilstadBarbara C. Gilstad
    • Dennis W. GilstadBarbara C. Gilstad
    • F16K47/02F04B53/00F04B53/10F16K47/00F16K1/36F16K15/00F16K15/06F16K25/00F16K31/00
    • F16K47/023F04B53/001F04B53/10F04B53/1087F16K1/36F16K15/00F16K15/06F16K25/005F16K31/00F16K47/00Y10S137/902Y10S137/904Y10T137/785
    • Tunable check valves reduce valve-generated vibration to increase the reliability of tunable fluid ends. Selected improved designs described herein reflect disparate applications of identical technical principles (relating to, e.g., the vibration spectrum of an impulse). Tunable check valve embodiments comprise a family including, but not limited to, tunable check valve assemblies, tunable valve seats, and tunable radial arrays. Each such tunable embodiment, in turn, contributes to blocking excitation of fluid end resonances, thus reducing the likelihood of fluid end failures associated with fatigue cracking and/or corrosion fatigue. By down-shifting the frequency domain of each valve-closing impulse shock, initial excitation of fluid end resonances is minimized. Subsequent damping and/or selective attenuation of vibration likely to excite one or more predetermined (and frequently localized) fluid end resonances represents further optimal use of fluid end vibration-control resources for improving high-pressure fluid end reliability.
    • 可调节止回阀减少阀门产生的振动,提高可调流体端的可靠性。 所描述的所选改进的设计反映了相同的技术原理(涉及例如脉冲的振动谱)的不同应用。 可调式止回阀实施例包括家庭,包括但不限于可调式止回阀组件,可调节阀座和可调节径向阵列。 每个这样的可调谐实施例又有助于阻止流体端部共振的激励,从而减少与疲劳开裂和/或腐蚀疲劳相关的流体端部故障的可能性。 通过下移每个闭阀脉冲冲击的频域,使流体端共振的初始激励最小化。 可能激发一个或多个预定(并且经常局部化)的流体端部共振的振动的随后的阻尼和/或选择性衰减表示用于改善高压流体端可靠性的流体端振动控制资源的进一步最佳使用。
    • 8. 发明申请
    • FLUID CONTROL VALVE
    • 流体控制阀
    • US20130048898A1
    • 2013-02-28
    • US13598409
    • 2012-08-29
    • Shigeyuki Hayashi
    • Shigeyuki Hayashi
    • F01L3/10
    • F16K31/007F16K1/44F16K1/50F16K47/00
    • An object of this invention is both to prevent contamination of a fluid passing a fluid control valve and to prevent a tilt of a valve body in a moving direction and vibration of the valve body. The fluid control valve comprises a valve body that is arranged on an inner surface of a valve chest through a predetermined space in the valve chest and that is arranged on a valve seat arranged in the valve chest in a detachable manner, an actuator that biases the valve body in a direction of opening the valve, a valve body return spring that biases the valve body in a direction of closing the valve, and a tilt restraining spring that biases the valve body in a direction of resolving a tilt of the valve body to an open/close direction.
    • 本发明的目的在于防止通过流体控制阀的流体的污染并且防止阀体在移动方向上的倾斜和阀体的振动。 所述流体控制阀包括阀体,所述阀体通过所述阀体内的预定空间设置在所述阀体的内表面上,并且以可拆卸的方式设置在设置在所述阀体中的阀座上;致动器, 阀体在打开阀的方向上,阀体复位弹簧,其使阀体沿关闭阀的方向偏压;以及倾斜抑制弹簧,其将阀体沿着将阀体倾斜的方向偏压到 开/关方向。
    • 9. 发明申请
    • THROTTLE VALVE DEVICE
    • 节流阀装置
    • US20120205566A1
    • 2012-08-16
    • US13348572
    • 2012-01-11
    • Hiroyuki Oka
    • Hiroyuki Oka
    • F02D9/08F16K31/44
    • F02M19/122F02D9/08F02D9/10F02M9/08F02M9/10F02M19/128F16K1/221F16K47/00
    • A throttle valve device ideal for small, inexpensive implements is provided. The throttle valve device having a damping member for slowly closing a throttle valve. The throttle valve device (1) has a throttle valve (4) that is fixed to a throttle shaft (5) pivotably supported in an air intake passage (2) and that is urged towards the closed direction, the throttle valve (4) adapted for adjusting the amount of air passing through the air intake passage (2). A through-bore (31) penetrating a shaft bore of the throttle shaft (5) is formed in a body, and a damping member (8) having frictional capabilities is inserted into and supported in the through-bore (31) in a state of pressing against the throttle shaft (5) inserted through the shaft bore (51).
    • 提供了一种适用于小型廉价工具的节流阀装置。 节流阀装置具有用于缓慢关闭节流阀的阻尼构件。 节气门装置(1)具有节流阀(4),该节流阀(4)固定到可枢转地支撑在进气通道(2)中并且朝向关闭方向被推动的节气门轴(5),节流阀(4)适于 用于调节通过进气通道(2)的空气量。 穿过节流轴(5)的轴孔的通孔(31)形成在主体中,并且具有摩擦能力的阻尼构件(8)以状态插入并支撑在通孔(31)中 压靠穿过轴孔(51)的节流轴(5)。