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    • 2. 发明申请
    • CONTROL VALVE
    • 控制阀
    • US20160139605A1
    • 2016-05-19
    • US14898451
    • 2014-06-10
    • FIMCIM S.P.A.
    • Tiziano GUIDETTIAlfredo CERUTTIStefano CRIVELLI
    • G05D7/00F16K5/04
    • G05D7/00F16K3/262F16K5/04F24D19/1015F24D2220/0271G05D7/0106
    • A control valve including: a valve body, a flow shutter operatively interposed between an inlet and an outlet, a driving spindle having at least a first actuating end and a second end connected to the flow shutter. The valve also includes a differential pressure automatic regulation device, comprising: a cup-shaped body arranged around the driving spindle and axially mobile with respect to said driving spindle; a spring operatively interposed between the valve body and the cup-shaped body to push the latter away from the flow shutter; a rolling membrane having a radially inner edge fixed to the cup-shaped body and a radially outer edge fixed to the valve body to delimit a first chamber in fluid communication with the inlet and a second chamber in fluid communication with the outlet.
    • 一种控制阀,包括:阀体,可操作地插入入口和出口之间的流动闸板,具有至少第一致动端和连接到流动闸板的第二端的驱动轴。 所述阀还包括压差自动调节装置,包括:一个围绕所述驱动心轴布置并相对于所述驱动心轴可移动的杯形体; 可操作地插入在阀体和杯形体之间以将其推离流动闸板的弹簧; 滚动膜,其具有固定到杯形体的径向内边缘和固定到阀体的径向外边缘,以限定与入口流体连通的第一腔室和与出口流体连通的第二腔室。
    • 5. 发明授权
    • Liquid pressure circuit
    • 液压回路
    • US09150091B2
    • 2015-10-06
    • US13498434
    • 2010-09-30
    • Tsuneo EndoShigeru IbarakiKazutaka TakahashiDaiki SatoSeiichiro Ishikawa
    • Tsuneo EndoShigeru IbarakiKazutaka TakahashiDaiki SatoSeiichiro Ishikawa
    • B60K6/12B60K6/40F02N7/08F16K3/26F16K3/34F15B13/04F15B13/044
    • B60K6/12B60K6/40F02N7/08F15B13/0406F15B13/0444F16K3/262F16K3/34F16K5/0414Y02T10/6208Y02T10/6282Y10T137/3127Y10T137/86533Y10T137/86702Y10T137/8671Y10T137/86734Y10T137/86751Y10T137/88022
    • A liquid pressure circuit is provided in which connecting an accumulator (22) to a high pressure liquid path (Lh) by opening a cut-off valve (24a) and connecting a intake liquid path (Li) to the high pressure liquid path (Lh) by means of a switch valve (24b) enables a pump/motor (M) to be operated as a motor by liquid stored under pressure in the accumulator (22), connecting the accumulator (22) to the high pressure liquid path (Lh) by opening the cut-off valve (24a) and connecting the intake liquid path (Li) to a low pressure liquid path (Ll) by means of the switch valve (24b) enables the pump/motor (M) to be operated as a pump to thus store liquid of a tank (21) under pressure in the accumulator (22), and closing the cut-off valve (24a) and connecting the intake liquid path (Li) to the high pressure liquid path (Lh) by means of the switch valve (24b) enables the pump/motor (M) to rotate without load; it is therefore possible to switch between three circuits, that is, drive (motor operation), regeneration (pump operation), and neutral (load-free running) by a simple structure with a small number of components.
    • 提供一种液压回路,其通过打开截止阀(24a)并将进气液路径(Li)连接到高压液体通路(Lh)而将蓄能器(22)连接到高压液体通路(Lh) )通过开关阀(24b)使得泵/马达(M)能够通过在储存器(22)中的压力下储存的液体作为电动机操作,将蓄能器(22)连接到高压液体路径(Lh )通过打开截止阀(24a)并且通过开关阀(24b)将进气液路径(Li)连接到低压液体通路(L1)使得泵/马达(M)能够作为 一个泵,用于将蓄液器(21)的液体在压力下储存在蓄能器(22)中,并且关闭截止阀(24a)并将进气流路(Li)连接到高压液体通路(Lh)上 开关阀(24b)的装置使得泵/​​马达(M)能够无负载地旋转; 因此通过具有少量部件的简单结构,可以在三个电路之间切换,即驱动(电动机操作),再生(泵操作)和中性(无负载运行)。
    • 6. 发明申请
    • REGULATING VALVE AND METHOD FOR PRODUCING THE SAME
    • 调节阀及其制造方法
    • US20140374640A1
    • 2014-12-25
    • US14312597
    • 2014-06-23
    • CAREL INDUSTRIES S.P.A.
    • Luigi NALINIDavide SCARABOTTOLODaniele CAZZIN
    • F16K3/26
    • F16K3/262F16K3/26F16K3/265F16K3/32F16K3/34Y10T29/494
    • Regulating valve (10) comprising: a body (11) crossed by a channel (12) for a fluid, a shutter (13) sliding in the body (11), according to a sliding direction (A), between a closing position and an opening position. The shutter (13) protrudes along the sliding direction (A) between a back end (16) and a front end (17), which is provided with a side surface (18) parallel to the sliding direction (A) and coupling with the internal surface (15) of the seat (14).The front end (17) is tubular and has at least one aperture (20) crossable by a fluid according to a normal direction to the sliding direction (A).The aperture (20) has two sides (20a, 20b) which join together to form a cuspid and diverge along the sliding direction (A).
    • 调节阀(10)包括:由用于流体的通道(12)越过的主体(11),根据滑动方向(A)在所述主体(11)中滑动的挡板(13),在关闭位置和 开场 挡板(13)沿着滑动方向(A)在后端(16)和前端(17)之间突出,前端(17)设有平行于滑动方向(A)的侧表面(18)并与 座(14)的内表面(15)。 前端(17)是管状的并且具有至少一个孔(20),该孔(20)可根据沿滑动方向(A)的法线方向与流体交叉。 孔(20)具有两个接合在一起以形成尖端并沿着滑动方向(A)发散的两侧(20a,20b)。
    • 7. 发明申请
    • SELECTIVE OPERATION VALVE FOR A RECIPIENT FOR BIOPHARMACEUTICAL USE
    • 选择性操作阀用于生物医学用途的接收者
    • US20140131399A1
    • 2014-05-15
    • US14131982
    • 2012-07-12
    • Florian BlakeJeremy Gibelin
    • Florian BlakeJeremy Gibelin
    • F16K3/26B65D47/26B65D47/00
    • F16K3/262B65D47/00B65D47/261F16K3/265Y10T137/87877
    • The valve includes a female part having a closed, transverse, proximal end wall, and a tubular wall integral with a flange part, a lateral opening being formed on the proximal section of the tubular wall, a male part having a tubular wall forming, on the proximal side, a closing/opening part having an open, transverse, proximal end; the closing/opening part has an external shape and an external dimension that fit the internal shape and internal dimension of the proximal receiving part of the female part. The sealing elements include three ring seals separated from one another in an axial direction, supported by the upper surface of the tubular wall of the male part and engaging with the female part, a proximal seal to the fluid product, a distal seal to external contaminants, and an intermediate seal to the fluid product and to external contaminants between the proximal and distal seals.
    • 该阀包括一个阴部分,其具有封闭的,横向的近端壁,以及与凸缘部分成一体的管状壁,在该管状壁的近端部分上形成的侧向开口, 近侧,具有开放横向近端的封闭/开口部分; 闭合/打开部分具有外部形状和外部尺寸,其适合阴部件的近侧接收部分的内部形状和内部尺寸。 密封元件包括在轴向上彼此分离的三个环形密封件,由阳部件的管状壁的上表面支撑并与阴部件接合,与流体产品的近端密封件,对外部污染物的远端密封件 以及对流体产品的中间密封和近端和远端密封之间的外部污染物。
    • 8. 发明申请
    • PIPELINE PRESSURE ISOLATION SYSTEMS AND DEVICES
    • 管道压力隔离系统和设备
    • US20140110002A1
    • 2014-04-24
    • US13886185
    • 2013-05-02
    • FLUOR TECHNOLOGIES CORPORATION
    • Pat F. Fetizanan
    • F16K5/08
    • F16K5/08F16K3/262F16K5/0647F16K17/30F16K17/32F16K17/34Y10T137/7728Y10T137/7796Y10T137/9029
    • A pressure isolation device for a pipeline system is described. The pressure isolation device changes from an open position to a closed position when the pressure of a fluid flowing through the device exceeds a predetermined threshold pressure. In some embodiments, the pressure isolation device comprises a housing having an internal chamber, a main inlet, and a main outlet. An elongated member is disposed within the internal chamber between the main inlet and main outlet, and is biased towards the open position. As fluid pressure increases, the elongated member is pushed to the closed position and a portion of the elongated member blocks the fluid pathway from the main inlet to the main outlet. The pressure isolation device provides a simple mechanical solution to protecting and isolating downstream pipeline components from over-pressurization.
    • 描述了用于管道系统的压力隔离装置。 当流过该装置的流体的压力超过预定阈值压力时,压力隔离装置从打开位置改变到关闭位置。 在一些实施例中,压力隔离装置包括具有内部室,主入口和主出口的壳体。 细长构件设置在主入口和主出口之间的内室内,并朝向打开位置偏置。 当流体压力增加时,细长构件被推动到关闭位置,并且细长构件的一部分阻挡从主入口到主出口的流体路径。 压力隔离装置提供了一种简单的机械解决方案,用于保护和隔离下游管道部件免于过压。
    • 10. 发明申请
    • LIQUID PRESSURE CIRCUIT
    • 液压电路
    • US20120237362A1
    • 2012-09-20
    • US13498434
    • 2010-09-30
    • Tsuneo EndoShigeru IbarakiKazutaka TakahashiDaiki SatoSeiichiro Ishikawa
    • Tsuneo EndoShigeru IbarakiKazutaka TakahashiDaiki SatoSeiichiro Ishikawa
    • F04B49/00
    • B60K6/12B60K6/40F02N7/08F15B13/0406F15B13/0444F16K3/262F16K3/34F16K5/0414Y02T10/6208Y02T10/6282Y10T137/3127Y10T137/86533Y10T137/86702Y10T137/8671Y10T137/86734Y10T137/86751Y10T137/88022
    • A liquid pressure circuit is provided in which connecting an accumulator (22) to a high pressure liquid path (Lh) by opening a cut-off valve (24a) and connecting a intake liquid path (Li) to the high pressure liquid path (Lh) by means of a switch valve (24b) enables a pump/motor (M) to be operated as a motor by liquid stored under pressure in the accumulator (22), connecting the accumulator (22) to the high pressure liquid path (Lh) by opening the cut-off valve (24a) and connecting the intake liquid path (Li) to a low pressure liquid path (Ll) by means of the switch valve (24b) enables the pump/motor (M) to be operated as a pump to thus store liquid of a tank (21) under pressure in the accumulator (22), and closing the cut-off valve (24a) and connecting the intake liquid path (Li) to the high pressure liquid path (Lh) by means of the switch valve (24b) enables the pump/motor (M) to rotate without load; it is therefore possible to switch between three circuits, that is, drive (motor operation), regeneration (pump operation), and neutral (load-free running) by a simple structure with a small number of components.
    • 提供一种液压回路,其通过打开截止阀(24a)并将进气液路径(Li)连接到高压液体通路(Lh)而将蓄能器(22)连接到高压液体通路(Lh) )通过开关阀(24b)使得泵/马达(M)能够通过在储存器(22)中的压力下储存的液体作为电动机操作,将蓄能器(22)连接到高压液体路径(Lh )通过打开截止阀(24a)并且通过开关阀(24b)将进气液路径(Li)连接到低压液体通路(L1)使得泵/马达(M)能够作为 一个泵,用于将蓄液器(21)的液体在压力下储存在蓄能器(22)中,并且关闭截止阀(24a)并将进气流路(Li)连接到高压液体通路(Lh)上 开关阀(24b)的装置使得泵/​​马达(M)能够无负载地旋转; 因此通过具有少量部件的简单结构,可以在三个电路之间切换,即驱动(电动机操作),再生(泵操作)和中性(无负载运行)。