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    • 71. 发明申请
    • REVERSING VALVE ASSEMBLY WITH IMPROVED PILOT VALVE MOUNTING STRUCTURE
    • 反向阀组件与改进的引导阀安装结构
    • WO2006023552A3
    • 2007-05-18
    • PCT/US2005029246
    • 2005-08-17
    • RANCO INCHALL LAWRENCE BMORENO JACK A
    • HALL LAWRENCE BMORENO JACK A
    • F16K11/065
    • F16K31/061F16K31/0668Y10T137/86839
    • A pilot valve assembly includes a mounting bracket having at least three sides, including an anchor panel extending between first and second generally parallel leg panels. A four-sided mounting bracket, having a top leg panel connecting distal ends of the first and second leg panels is also disclosed. Disposed through the first leg panel and preferably through the second leg panel are respectively first and second apertures which define an axis line. A solenoid coil having a central bore is placed between the leg panels such that the central bore is aligned with the axis line. A pilot valve body is inserted through the first aperture and into the central bore such that an end of the pilot valve body is adjacent the second leg panel and secured thereto by various methods. The mounting bracket can be made from a single, integral blank.
    • 导阀组件包括具有至少三个侧面的安装支架,其包括在第一和第二大致平行的腿板之间延伸的锚定面板。 还公开了具有连接第一和第二腿板的远端的顶部腿部面板的四面安装支架。 通过第一腿板布置并且优选地通过第二腿板布置分别是限定轴线的第一和第二孔。 具有中心孔的螺线管线圈被放置在腿部面板之间,使得中心孔与轴线对齐。 先导阀体穿过第一孔插入中心孔,使得先导阀体的一端与第二腿板相邻并通过各种方法固定在其上。 安装支架可以由一个整体的空白制成。
    • 72. 发明申请
    • DIRECTLY OPERATED CONTROL VALVE IN A VALVE DEVICE
    • 阀门设备中直接操作的控制阀
    • WO2006006873A1
    • 2006-01-19
    • PCT/NO2005/000265
    • 2005-07-15
    • FMC KONGSBERG SUBSEA ASMAGNUS, Heyn, HalfdanKASIN, TorsteinBRAATEN, Vidar
    • MAGNUS, Heyn, HalfdanKASIN, TorsteinBRAATEN, Vidar
    • F16K11/065
    • F16K11/0655
    • The invention relates to a valve device comprising a housing (2) with a bore (7) and a slide (4) movably arranged in the bore and arranged to provide or cut a fluid connection, for example between a pressure fluid source and an actuator. According to the invention the slide comprises a valve element (50) arranged in a complementary through-going bore (48) in the slide (4), where the valve element (50) comprises a through-going fluid bore (52), and the housing comprises pressure elements (70, 74) on opposite sides of the valve element (50) and in abutment against it by means of at least one pressure device, which pressure device is mounted at a side of one of the pressure elements (70, 74) facing away from the valve element (50). The invention also relates to a directly operated control valve.
    • 本发明涉及一种阀装置,其包括具有孔(7)的壳体(2)和可移动地布置在孔中的滑动件(4),并被布置成提供或切割流体连接,例如在压力流体源和致动器 。 根据本发明,滑块包括布置在滑块(4)中的互补贯通孔(48)中的阀元件(50),其中阀元件(50)包括贯穿流体孔(52),以及 壳体包括在阀元件(50)的相对侧上的压力元件(70,74),并且通过至少一个压力装置抵靠它,该压力装置安装在压力元件(70)中的一个压力元件 ,74)背离阀元件(50)。 本发明还涉及直接操作的控制阀。
    • 73. 发明申请
    • AIR CONSERVING SLIDE VALVE
    • 空气保存滑阀
    • WO2004096402A3
    • 2005-09-15
    • PCT/US2004013826
    • 2004-04-27
    • CARLETON LIFE SUPPORT SYS INCHAGER CHARLES
    • HAGER CHARLES
    • F16K11/065B01D53/04
    • F16K11/0655Y10T137/5544Y10T137/86839
    • A slide type valve (V) for regulating a gas generating system (10) that has at least a first and a second gas concentrating bed unit (12, 14) includes an outer body (120) with a slide face (106) having at least three open ports (130, 132, 134) communicating with an interior cavity (136) formed in the outer body (120). A vent port (132) and at least two bed ports (130, 134) are adapted to communicate an air flow with a gas concentrating bed unit (12, 14). The vent port (132) is formed between two bed ports. A slide block (100) having an essentially flat face (146) slides along the slide face interior surface (142) of the outer body (12) and has an interior cavity (148) and a first and a second opening (150, 152). The slide block slide face (146) has a closing portion (104) positioned between the first and second openings (150, 152). A controller (C) moves the slide block (100) between a first state (S1) and a second state (S2) for desired air flow.
    • 一种用于调节至少具有第一和第二气体浓缩床单元(12,14)的气体发生系统(10)的滑动式阀(V),包括具有滑动面(106)的外部本体(120) 与形成在外体(120)中的内腔(136)连通的至少三个开口(130,132,134)。 排气口(132)和至少两个床口(130,134)适于将空气流与气体浓缩床单元(12,14)连通。 排气口(132)形成在两个床口之间。 具有基本上平坦的表面(146)的滑块(100)沿着外体(12)的滑动面内表面(142)滑动,并具有内腔(148)和第一和第二开口 )。 滑块滑动面(146)具有定位在第一和第二开口(150,152)之间的封闭部分(104)。 控制器(C)在第一状态(S1)和第二状态(S2)之间移动滑动块(100)以获得所需的气流。
    • 78. 发明申请
    • OIL TEMPERATURE MANAGEMENT ASSEMBLY
    • WO2023067441A1
    • 2023-04-27
    • PCT/IB2022/059784
    • 2022-10-12
    • UFI INNOVATION CENTER S.R.L.
    • GIRONDI, Giorgio
    • F01M5/00F01P11/08F28D9/00F28D21/00F28F27/02F16H57/04F16K11/065F16K31/00
    • An oil temperature management assembly (1) fluidically connectable to an oil circulation system (900) of an operating group of a vehicle (500) comprises an auxiliary heat exchanger (930). The oil temperature management assembly (1) comprises a primary heat exchanger (2) and a support and fluidic connection module (3). The module (3) comprises a module body (4), a thermostatic valve (5) and a bypass valve (6). The module body (4), to which the primary heat exchanger (2) is operatively connected, comprises: - an assembly inlet mouth (411) fluidically connectable to a first oil duct (901) through which the oil arriving from the operating group (500) flows and an assembly outlet mouth (412) fluidically connectable to a second oil duct (902) through which the oil flows towards the operating group (500); - a primary exchanger inlet mouth (421) and a primary exchanger outlet mouth (422) for the fluid connection of the primary heat exchanger (2) and the module (3), in which the primary exchanger outlet mouth (422) fluidically communicates with the assembly outlet mouth (412); - an auxiliary mouth (43) in which the oil flows towards the auxiliary heat exchanger (930). The thermostatic valve (5) is housed in the module body (4) in a thermostatic valve housing (45) and is fluidically connected to the assembly inlet mouth (411), to the primary exchanger inlet mouth (421) and the auxiliary mouth (43), detecting the temperature of the oil entering the module (3) and directing the oil towards the primary exchanger inlet mouth (421) and towards the auxiliary mouth (43). The bypass valve (6) housed in the module body (4) in a bypass valve housing (46), fluidically connected to the assembly inlet mouth (411), to the thermostatic valve (5) and to the assembly outlet mouth (421), detecting the oil pressure entering the module (3) and directing the oil towards the thermostatic valve (5) and/or towards the assembly outlet mouth (412).