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    • 3. 发明授权
    • High pressure valve assembly
    • 高压阀门总成
    • US09518674B2
    • 2016-12-13
    • US14551821
    • 2014-11-24
    • Senior IP GmbH
    • Patrick B. ReedRobert M. ThornePeter A. Jordan
    • F04F1/08F16K31/126G05D7/01E21B43/12
    • F16K31/126E21B43/123G05D7/0106Y10T137/7836
    • A valve assembly for high pressure applications includes a pre-charge chamber in fluid communication with a first bellows, at least one inlet for pressurized gas to enter the assembly, a system poppet and an outlet for releasing pressurized gas into a desired environment. The pre-charge chamber and first bellows are filled with pre-charge gas to a threshold pressure. Pressurized gas can flow through access channels into a second bellows, which expands to move a valve shaft connected to the poppet assembly to open the poppet and allow the release of gas. The expansion of the second bellows pushes incompressible fluid disposed between the two bellows against the first bellows, thus contracting the first bellows. The gas within each bellows maintains an internal pressure equal to the pressure exerted upon each bellows by the incompressible fluid, so as to minimize differential pressure across the bellows in the extended position.
    • 用于高压应用的阀组件包括与第一波纹管流体连通的预充气室,用于加压气体进入组件的至少一个入口,用于将加压气体释放到期望环境中的系统提升阀和出口。 预充气室和第一波纹管充满预充气体至阈值压力。 加压气体可以通过进入通道流入第二波纹管,第二波纹管膨胀以移动连接到提升阀组件的阀轴以打开提升阀并允许释放气体。 第二波纹管的膨胀将布置在两个波纹管之间的不可压缩流体压靠第一波纹管,从而收缩第一波纹管。 每个波纹管内的气体保持与由不可压缩流体施加在每个波纹管上的压力相等的内部压力,以便使延伸位置上的波纹管上的压差最小化。
    • 5. 发明授权
    • Backflow and flow rate control valve
    • 回流和流量控制阀
    • US09223316B2
    • 2015-12-29
    • US12525569
    • 2008-03-20
    • Gary Oddie
    • Gary Oddie
    • G05D7/01
    • G05D7/0106Y10T137/0379Y10T137/3631Y10T137/7783Y10T137/7785Y10T137/7787Y10T137/7788Y10T137/7789Y10T137/7791Y10T137/8593
    • A backflow and flow rate control system, comprising: a flow restrictor; a flow regulator chamber located down-stream of the flow restrictor; a control chamber configured to receive a portion of the fluid from a location upstream of the flow restrictor; a moveable element with no sliding parts positioned between the control chamber and the flow regulator chamber, wherein the moveable element is configured to move in response to a difference in pressure between the flow regulator chamber and the control chamber; a flow rate regulator configured to control the flow rate of the fluid in response to the movement of the moveable element; and a non-return regulator coupled with the moveable element and configured to control back-flow of the fluid.
    • 一种回流和流量控制系统,包括:限流器; 位于限流器下游的流量调节器室; 控制室,其构造成从所述限流器的上游位置接收所述流体的一部分; 可移动元件,其没有位于所述控制室和所述流量调节器室之间的滑动部件,其中所述可移动元件构造成响应于所述流量调节器室和所述控制室之间的压力差而移动; 流量调节器,被配置为响应于可移动元件的移动来控制流体的流速; 以及与所述可移动元件耦合并被配置为控制所述流体的回流的止回调节器。
    • 10. 发明授权
    • Fluid controller
    • 流体控制器
    • US08910656B2
    • 2014-12-16
    • US13861209
    • 2013-04-11
    • HORIBA STEC, Co., Ltd.
    • Tadahiro Yasuda
    • F16K31/02F16K27/12G05D7/01G05D7/06
    • G05D7/0106G05D7/0635Y10T137/7043Y10T137/7062Y10T137/7759Y10T137/7761Y10T137/7762
    • A fluid controller is disclosed, having a body unit, a fluid controlling valve, pressure sensors, and a casing. The fluid controlling valve is attached to a component part attachment face of the body unit. The pressure sensors are attached to the component part attachment face so that the pressure sensing surfaces thereof are positioned substantially perpendicular to the component part attachment face and substantially parallel to the longitudinal direction. On the lateral walls of the casing, the inner surfaces thereof are arranged to be uneven, so that such sections facing the fluid controlling valve and the pressure sensors are arranged to be thin sections, whereas at least a part of such a section that does not face the fluid controlling valve and the pressure sensors is arranged to be a thick section that is thicker than the thin sections.
    • 公开了一种流体控制器,其具有主体单元,流体控制阀,压力传感器和壳体。 流体控制阀附接到主体单元的部件附件面。 压力传感器附接到部件附件面,使得其压力感测表面基本上垂直于部件安装面定位并且基本上平行于纵向方向。 在壳体的侧壁上,其内表面被布置成不均匀,使得面向流体控制阀和压力传感器的这些部分被布置为薄的部分,而不是这样的部分的至少一部分 面对流体控制阀,并且压力传感器被布置为比薄部分更厚的厚部分。