可節流式超高壓緊湊型閥
    14.
    发明专利
    可節流式超高壓緊湊型閥 审中-公开
    可节流式超高压紧凑型阀

    公开(公告)号:TW201730441A

    公开(公告)日:2017-09-01

    申请号:TW105129393

    申请日:2016-09-09

    CPC classification number: F16K1/12 F16K1/14 F16K1/38 F16K3/24 F16K31/62

    Abstract: 本發明高壓閥包括槓桿和可變力發生器,用於易於控制在高壓下開啟和關閉的閥, 高壓閥包括具有在第一端口和第二端口間可提供流體連通的腔室之殼體,可在腔室內開啟位置和關閉位置之間移動的銷, 槓桿的第一端連接到銷,且槓桿的第二端連接到可變力發生器。 槓桿圍繞樞轉點旋轉, 連接到可變力發生器的控制器被配置到調節可變力發生器施加到槓桿的第二端的力,以控制銷在開口位置和關閉位置之間的運動。

    Abstract in simplified Chinese: 本发明高压阀包括杠杆和可变力发生器,用于易于控制在高压下打开和关闭的阀, 高压阀包括具有在第一端口和第二端口间可提供流体连通的腔室之壳体,可在腔室内打开位置和关闭位置之间移动的销, 杠杆的第一端连接到销,且杠杆的第二端连接到可变力发生器。 杠杆围绕枢转点旋转, 连接到可变力发生器的控制器被配置到调节可变力发生器施加到杠杆的第二端的力,以控制销在开口位置和关闭位置之间的运动。

    用於液體之高壓、高剪力處理系統
    15.
    发明专利
    用於液體之高壓、高剪力處理系統 审中-公开
    用于液体之高压、高剪力处理系统

    公开(公告)号:TW201702488A

    公开(公告)日:2017-01-16

    申请号:TW105109753

    申请日:2016-03-28

    Abstract: 提供一種方法,應用於一液體的高液體剪力處理,使用一隔離裝置,具有一第一子艙室用來容納一第一液體、和一第二子艙室用來容納一第二液體,由一分隔器來界定,分隔器位在艙室中且可在該艙室的一第一端(first end)和該艙室的一第二端(second end)之間移動。二個子艙室以壓力連通(in pressure communication)彼此、但不是液體連通(in fluid communication)彼此。一第一液體在一超高壓力被抽吸進入第一子艙室,而在第一子艙室的壓力引發一被處理的第二液體從第二子艙室排放進入一處理閥門。也提供一種系統用於實施此方法的步驟。

    Abstract in simplified Chinese: 提供一种方法,应用于一液体的高液体剪力处理,使用一隔离设备,具有一第一子舱室用来容纳一第一液体、和一第二子舱室用来容纳一第二液体,由一分隔器来界定,分隔器位在舱室中且可在该舱室的一第一端(first end)和该舱室的一第二端(second end)之间移动。二个子舱室以压力连通(in pressure communication)彼此、但不是液体连通(in fluid communication)彼此。一第一液体在一超高压力被抽吸进入第一子舱室,而在第一子舱室的压力引发一被处理的第二液体从第二子舱室排放进入一处理阀门。也提供一种系统用于实施此方法的步骤。

    SAMPLE PREPARATION DEVICES AND METHODS
    17.
    发明申请

    公开(公告)号:US20170106366A1

    公开(公告)日:2017-04-20

    申请号:US15314763

    申请日:2015-05-29

    Abstract: Devices and methods for sample preparation via pressure cycling technology are disclosed. The device for sample preparation comprises a tube having an inner surface, a top, and a bottom, the tube configured to contain a sample at the bottom and to be received into a pressure chamber for sample preparation, a cap detachably connected to the top of the tube, and a tapered elongate member extending from the cap into the tube, the tapered elongate member configured to contact the inner surface of the tube and the sample in the bottom of the tube, wherein the tube is deformable such that in operation under pressure the tube is deformed against the tapered elongate member to promote disruption of the sample.

    Ultrahigh pressure compact valve with throttling capability

    公开(公告)号:US11156295B2

    公开(公告)日:2021-10-26

    申请号:US15758975

    申请日:2016-09-08

    Abstract: A high pressure valve includes a lever and a variable force generator for facilitating control of opening and closing the valve at high pressures. The high pressure valve includes a housing having a chamber providing fluid communication between a first port and a second port, a pin movable within the chamber between an open position and a closed position. A first end of a lever is coupled to the pin and a second end of the lever is coupled to a variable force generator. The lever pivots about a pivot point. A controller coupled to the variable force generator is configured to adjust a force applied to the second end of the lever by the variable force generator to control the movement of the pin between the open position and the closed position.

    Sample preparation devices and methods

    公开(公告)号:US10710082B2

    公开(公告)日:2020-07-14

    申请号:US15314763

    申请日:2015-05-29

    Abstract: Devices and methods for sample preparation via pressure cycling technology are disclosed. The device for sample preparation comprises a tube having an inner surface, a top, and a bottom, the tube configured to contain a sample at the bottom and to be received into a pressure chamber for sample preparation, a cap detachably connected to the top of the tube, and a tapered elongate member extending from the cap into the tube, the tapered elongate member configured to contact the inner surface of the tube and the sample in the bottom of the tube, wherein the tube is deformable such that in operation under pressure the tube is deformed against the tapered elongate member to promote disruption of the sample.

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