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    • 1. 发明授权
    • Method and apparatus for controlling fluid pressure
    • 用于控制流体压力的方法和装置
    • US08678025B2
    • 2014-03-25
    • US12296564
    • 2008-04-21
    • Douglas Quinten Kitt
    • Douglas Quinten Kitt
    • G05D7/00G05D9/00F16K31/12F16K31/36
    • F16K17/30G05D16/08G05D16/16Y10T137/0368Y10T137/2544Y10T137/7759Y10T137/7784
    • A method and apparatus to control pressure in a fluid delivery system utilizes a variable-pressure regulating means and a flow-controlled selecting means to provide a higher pressure when the flow in the system is higher, and to provide a lower pressure when the flow in the system is lower. It exploits an inherent signal that is generated and transmitted by the fluid, and which enables remote control of the pressure. Useful, for example, to provide pressure control for a garden hose fitted with a closeable nozzle, wherein full pressure is provided through the hose when the nozzle is open, lower pressure is maintained when the nozzle is closed, and the operator controls pressure in the hose from the fluid delivery end of the hose, protecting the hose from bulging or splitting, making the hose easier to handle, and conserving water. Other applications include protecting washing machine supply hoses from bursting and flooding; and pressure control of fire sprinkler, compressed gas, and pneumatic control systems.
    • 用于控制流体输送系统中的压力的​​方法和装置利用可变压力调节装置和流量控制选择装置,当系统中的流量较高时提供更高的压力,并且当流入 系统较低。 它利用由流体产生和传输的固有信号,并且能够远程控制压力。 例如,对于装配有可关闭喷嘴的花园软管提供压力控制是有用的,其中当喷嘴打开时通过软管提供全压力,当喷嘴关闭时维持较低的压力,并且操作者控制压力 软管从软管的流体输送端,防止软管膨胀或分裂,使软管更容易处理,并节约用水。 其他应用包括保护洗衣机供应软管免遭爆裂和淹水; 消防喷淋头,压缩气体和气动控制系统的压力控制。
    • 4. 发明申请
    • FLOW- AND PRESSURE-CONTROL VALVE
    • 流量和压力控制阀
    • US20100170581A1
    • 2010-07-08
    • US12600896
    • 2008-04-18
    • Gerhard Loeffler
    • Gerhard Loeffler
    • F16K15/00F16K37/00
    • G05D7/005Y10T137/7722Y10T137/7784Y10T137/7791Y10T137/7808Y10T137/8225
    • The invention relates to a valve combination for regulating the rate of flow or the differential pressure in liquid-conveying heating and cooling systems, consisting of a housing (2) provided with a feed pipe (10), a discharge pipe (11) and a connection pipes (6) arranged between them and a regulator (3) which is arranged axially in the connection pipe (6), wherein the regulator (3) keeps the differential pressure constant at a preset value by means of a first flow regulator (4) also arranged axially in the connection pipe (6) and can be adjusted by an actuating part (8) which projects from the housing (2) and acts on a second seat (24), and by means of a presettable second flow regulator (5) which is arranged axially or coaxially thereto, wherein the flow cross section (9) is adjustable, which is characterized in that, when an actuator (29) that acts on the actuating part (8) is installed, the flow cross section (9) is adjustable by means of a handle (7) not covered by the actuator and that, when the actuator (29) is installed, the position of the handle (7) on a display unit (19) which is not covered by the actuator can be read, and the display unit (19) shows the presetting of the flow cross section (9).
    • 本发明涉及一种用于调节液体输送加热和冷却系统中的流速或压差的阀门组合件,其包括设置有进料管(10)的壳体(2),排出管(11)和 布置在它们之间的连接管(6)和轴向布置在连接管(6)中的调节器(3),其中调节器(3)通过第一流量调节器(4)将压差保持在预设值 )还布置在连接管(6)中,并且可以由从壳体(2)突出并且作用在第二座(24)上的致动部件(8)调节,并且借助于可预设的第二流量调节器 5),其轴向或同轴布置,其中,所述流动横截面(9)是可调节的,其特征在于,当安装作用在所述致动部件(8)上的致动器(29)时,所述流动横截面 9)可以通过未被致动器a覆盖的把手(7)来调节 d,当安装致动器(29)时,可以读取未被致动器覆盖的显示单元(19)上的手柄(7)的位置,并且显示单元(19)示出预置 流动横截面(9)。
    • 7. 发明申请
    • MODULAR IN-LINE FLUID REGULATORS
    • 模块化在线流体调节器
    • US20090071548A1
    • 2009-03-19
    • US11855830
    • 2007-09-14
    • Daryll Duane PattersonJason Dirk Jablonski
    • Daryll Duane PattersonJason Dirk Jablonski
    • F16K17/00
    • G05D16/0663G05D16/0402G05D16/103Y10T137/7784
    • Modular in-line fluid regulators are described. One described example modular fluid regulator apparatus includes a body having a fluid inlet and a threaded outer surface to engage a threaded opening in another fluid regulator to serially fluidly couple first and second fluid regulators. The example fluid regulator apparatus also includes valve to control a flow of fluid through the first fluid regulator, and a pressure sensing member operatively coupled to the valve to control a position of the valve to provide a regulated output pressure at an outlet of the first fluid regulator. The pressure sensing member and the valve are configured to be received in a cavity of the second fluid regulator adjacent the threaded opening.
    • 描述了模块化的在线流体调节器。 一个所描述的示例性模块化流体调节器装置包括具有流体入口和螺纹外表面的主体,以与另一个流体调节器中的螺纹开口接合以串联流体地联接第一和第二流体调节器。 示例性流体调节装置还包括用于控制通过第一流体调节器的流体流动的阀,以及可操作地联接到阀的压力感测构件,以控制阀的位置,以在第一流体的出口处提供调节的输出压力 调节器 压力感测构件和阀构造成被接收在邻近螺纹开口的第二流体调节器的空腔中。
    • 8. 发明授权
    • Variable flow area refrigerant expansion device
    • 可变流域制冷剂膨胀装置
    • US06289924B1
    • 2001-09-18
    • US09512177
    • 2000-02-24
    • Richard C. Kozinski
    • Richard C. Kozinski
    • F16K31122
    • F25B41/062F25B2341/062F25B2341/0662Y10T137/7784Y10T137/7792
    • A refrigerant flow metering device for use in a refrigeration system which uses a movable piston with a fixed flow passage in series with a variable area flow passage. The variable flow area is defined by the position of the piston relative to the containing housing. The position of the movable piston is a function of refrigerant pressure differential across the piston and the force of a spring member acting in an opposite direction on the piston. The variable flow area is defined as the clearance between a tapered fixed housing and the tapered portion of the movable piston. The piston is sealed via an “O” ring seal causing fluid to flow first through a fixed bore and then through the variable flow area.
    • 一种用于制冷系统的制冷剂流量计量装置,其使用具有与可变区域流动通道串联的固定流动通道的可移动活塞。 可变流动面积由活塞相对于容纳壳体的位置限定。 可移动活塞的位置是跨越活塞的制冷剂压力差和沿与活塞相反方向作用的弹簧件的力的函数。 可变流动面积被定义为锥形固定壳体与可移动活塞的锥形部分之间的间隙。 活塞通过“O”型密封圈密封,导致流体首先流过固定孔,然后通过可变流动区域。
    • 9. 发明授权
    • Multi-stage check valve
    • 多级止回阀
    • US5918628A
    • 1999-07-06
    • US63704
    • 1998-04-21
    • Curtis F. Harding
    • Curtis F. Harding
    • F02C7/232F02C9/26F16K15/02F16K15/06F16K17/04F16K15/00F16K31/12
    • F02C7/232F16K15/026Y02T50/671Y10T137/7784Y10T137/7839Y10T137/7925
    • A check valve includes an outer valve body and an inner poppet valve moveable relative to the valve body and spring-biased into a closed position. The inner poppet valve has first and second stage openings. The first stage preferably has a single, relatively small through-hole into the chamber of the poppet valve, while the second stage preferably has multiple openings of a larger diameter. The first and second stage openings are spaced axially along the poppet valve, with the first stage opening being located closer to the valve head of the poppet valve than the second stage openings. In the closed position, fluid flow is blocked through both the first and second stage openings. When the cracking force of the valve is exceeded and the valve head moves away from the valve seat, fill flow occurs through the first stage opening and is restricted through the second stage openings. The restricted fluid flow causes the pressure drop across the check valve to be satisfactory at low flow rates to cause the poppet valve to stroke long enough such that particles will pass easily between the valve head and the valve seat. The flow increases through the second stage openings as the poppet valve moves toward its open position. The pressure drop is minimized at high flow rates to maximize the efficiency of the check valve. The check valve also has relatively few parts, and can be easily assembled and installed within the housing of a fuel nozzle.
    • 止回阀包括外阀体和可相对于阀体移动并且弹簧偏置到关闭位置的内提升阀。 内提升阀具有第一和第二阶段开口。 第一阶段优选地具有到提升阀的腔室中的单个相对小的通孔,而第二阶段优选地具有多个较大直径的开口。 第一和第二级开口沿着提升阀轴向间隔开,第一级开口比第二级开口更靠近提升阀的阀头。 在关闭位置,流体流动通过第一和第二级开口被阻塞。 当超过阀的开启力并且阀头离开阀座时,填充流通过第一级开口发生并通过第二级开口受到限制。 受限制的流体流动导致止回阀上的压降在低流量下令人满意,导致提升阀足够长地行进,使得颗粒将容易地在阀头和阀座之间通过。 当提升阀向其打开位置移动时,流动通过第二级开口增加。 在高流速下压降最小化,以最大限度地提高止回阀的效率。 止回阀还具有相对较少的部件,并且可以容易地组装并安装在燃料喷嘴的壳体内。