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    • 1. 发明申请
    • MEDICAL GAS MANIFOLD
    • 医疗气体歧管
    • WO2015028889A3
    • 2015-07-30
    • PCT/IB2014002570
    • 2014-08-26
    • PENTAIR FLOW SERVICES AG
    • HAMM MARK KOSTEEN WILLIAM CMILLER JOHN B
    • F16K27/00F17C13/04G05D7/06
    • F16K27/003G05D16/0602G05D16/0663Y10T137/87885
    • A medical gas manifold including a bank body formed as a single body and including a primary bank regulator valve body and a secondary bank regulator valve body, a primary bank regulator received within the primary bank regulator valve body, a secondary bank regulator received in the secondary bank regulator valve body, a line body formed as a single body and including a first line regulator valve body and a second line regulator valve body, a first line regulator received in the first line regulator valve body, a second line regulator received in the second line regulator valve body, a primary ball valve fluidly coupling the first line regulator to the bank body, and a secondary ball valve fluidly coupling the second line regulator to the bank body.
    • 一种医用气体歧管,包括形成为单体的堤体,并且包括主堤调节阀体和副堤坝调节阀体,主堤坝调节器容纳在主堤调节阀体内,副堤岸调节器接收在次级堤 堤坝调节器阀体,形成为单体的线体,并且包括第一线调节阀体和第二线调节阀体,第一线调节器,接收在第一线调节阀体中,第二线调节器接收在第二线调节器阀体中 线调节阀体,将第一线调节器流体地联接到堤体的主球阀,以及将第二管线调节器流体地联接到堤体的二次球阀。
    • 2. 发明申请
    • 制御バルブ
    • 控制阀
    • WO2014087996A1
    • 2014-06-12
    • PCT/JP2013/082469
    • 2013-12-03
    • カヤバ工業株式会社
    • 中村 善也竹内 亨
    • G05D16/06
    • G05D16/06F16K31/126G05D16/0663G05D16/185
    • シート孔(21)に対して軸方向に移動してシート孔(21)の流路断面積を変えるポペット弁(61)を備える制御バルブであって、リターンスプリング(12)に抗してポペット弁(61)を開弁方向に付勢するバネ盤(40)を備え、バネ盤(40)は、ポペット弁(61)の動きと連動する部位であって二次ポート(77)に導かれる二次圧を受ける二次圧受面(48)と、基準となるパイロット圧を受けるパイロット圧受面(49)と、を有し、バネ盤(40)が二次圧とパイロット圧の圧力差に応じて弾性変形してポペット弁(61)を軸方向に移動させる。
    • 控制阀设置有相对于座孔(21)沿轴向移动并改变座孔(21)的流动通道的横截面面积的提升阀(61)。 控制阀还设置有弹簧盘(40),该弹簧盘(40)沿提升阀(61)打开的方向将提升阀(61)压靠在复位弹簧(12)上。 弹簧盘(40)设置有:二次压力接收表面(48),其是与提升阀(61)的运动相关联地运动并且经受二次压力传导到次级端口(77)的部分 ); 以及经受作为基准压力的先导压力的先导压力接收表面(49)。 弹簧盘40根据二次压力和先导压力之间的压力差弹性变形,并使提升阀61沿轴向移动。
    • 5. 发明申请
    • TEMPERATURE-CONTROLLED PRESSURE REGULATORS
    • 温度控制压力调节器
    • WO2010085386A1
    • 2010-07-29
    • PCT/US2010/020658
    • 2010-01-11
    • TESCOM CORPORATIONPATTERSON, Daryll, DuaneBURGETT, Eric, Jacob
    • PATTERSON, Daryll, DuaneBURGETT, Eric, Jacob
    • G05D16/06G05D23/12F28D21/00F28C3/06
    • G05D16/0655G05D16/0663Y10T137/6579
    • Temperature-controlled pressure regulators are described. An example temperature-controlled pressure regulator described herein includes a regulator body having a process fluid inlet fluidly coupled to a process fluid outlet via a first passageway and a heat transfer medium inlet to be fluidly coupled to a heat transfer medium outlet via a second passageway, where the heat transfer medium inlet is integrally formed with the regulator body. A heat chamber body is removably coupled to the regulator body to form a chamber between the heat transfer medium inlet and the heat transfer medium outlet. At least a portion of the first passageway is disposed within the chamber, and the chamber is to receive a heat transfer medium via the heat transfer medium inlet to provide heat to the process fluid as the process fluid flows through the chamber via the first passageway, which separates the process fluid from the heat transfer medium.
    • 描述了温度控制的压力调节器。 本文所述的示例性温度控制压力调节器包括调节器主体,其具有经由第一通道流体耦合到过程流体出口的过程流体入口和经由第二通道流体耦合到传热介质出口的传热介质入口, 其中传热介质入口与调节器主体一体形成。 加热室主体可移除地联接到调节器主体以在传热介质入口和传热介质出口之间形成室。 第一通道的至少一部分设置在腔室内,并且腔室将经由传热介质入口容纳传热介质,以在工艺流体经由第一通道流过腔室时向加工流体提供热量, 其将过程流体与传热介质分离。
    • 9. 发明申请
    • REMOTE CONTROLLED DRINKER SYSTEM
    • 远程控制饮水机系统
    • WO00008376A1
    • 2000-02-17
    • PCT/US1999/017479
    • 1999-08-02
    • A01K39/02G05D16/08G05D16/14F17D3/01
    • A01K39/02G05D16/0605G05D16/0663G05D16/163Y10T137/0396Y10T137/261Y10T137/4245Y10T137/7797Y10T137/87877
    • A poultry drinker system (10) includes a number of drinker lines (12) each supplied from a common high pressure water supply (16) through a water pressure regulator (20). Each regulator (20) includes a reference spring (76) establishing a default minimum water pressure. A centralized remote control system (26) provides regulated low pressure air (36) to the water pressure regulators (20) to augment the reference spring force and remotely adjust the water pressure in the drinker lines (12). The remote control system (26) periodically applies higher pressure (34) to the water pressure regulators (20) to increase water pressure and flow rates and sequentially flush the drinker lines (12). The remote control system (26) includes a source of high pressure air (34), an air pressure regulator for supplying lower pressure air (38) and a stack of 3-way valves (32) for applying low or high pressure air to each water pressure regulator (20).
    • 家禽饮水器系统(10)包括多个通过水压调节器(20)从普通高压水源(16)供应的饮水器管线(12)。 每个调节器(20)包括建立默认最小水压的参考弹簧(76)。 集中式远程控制系统(26)向水压调节器(20)提供调节的低压空气(36),以增加参考弹簧力并远程调节饮用器管线(12)中的水压。 远程控制系统(26)周期性地向水压调节器(20)施加更高的压力(34)以增加水压和流速并且顺序地冲洗饮用器管路(12)。 远程控制系统(26)包括高压空气源(34),用于供应低压空气(38)的空气压力调节器和用于向每个空气施加低压或高压空气的三通阀(32) 水压调节器(20)。
    • 10. 发明申请
    • PILOT VALVE ARRANGEMENT
    • 导阀安装
    • WO2015136025A1
    • 2015-09-17
    • PCT/EP2015/055136
    • 2015-03-12
    • IMI HYDRONIC ENGINEERING INTERNATIONAL SA
    • VOLOVEC, PeterLAH, SlavkoLAZOV, Slave
    • F16K31/128F16K1/12
    • F16K31/128F16K1/126G05D16/0663G05D16/106G05D16/166Y10T137/7758
    • The present inventive concept relates to a pilot valve arrangement comprising: a first pilot valve part and a second pilot valve part. The second pilot valve part comprising: a second pilot valve body comprising: a compartment, a low pressure fluid inlet for receiving fluid from the first pilot valve part, and a high pressure fluid inlet, and a fluid outlet for receiving fluid from the low pressure and high pressure inlets via said compartment and providing fluid to a piloted valve. In a first state, the second pilot valve of the pilot valve arrangement provides for a first fluid flow path within the compartment to enable the low pressure fluid inlet to be in fluid communication with the fluid outlet via the first fluid flow path. In a second state, a second fluid flow path within the compartment to enable the high pressure fluid inlet to be in fluid communication with the fluid outlet via the second fluid flow path. The second fluid flow path being different from the first fluid flow path.
    • 本发明构思涉及一种先导阀装置,包括:第一先导阀部分和第二先导阀部分。 第二导阀部件包括:第二先导阀体,包括:隔室,用于从第一先导阀部分接收流体的低压流体入口和高压流体入口,以及用于从低压接收流体的流体出口 和通过所述隔室的高压入口并将流体提供给导向阀。 在第一状态下,先导阀装置的第二先导阀提供腔室内的第一流体流动路径,以使低压流体入口能够经由第一流体流路与流体出口流体连通。 在第二状态下,隔室内的第二流体流路使得高压流体入口能够经由第二流体流路与流体出口流体连通。 第二流体流动路径与第一流体流动路径不同。