11.
    发明专利
    未知

    公开(公告)号:DE602006007479D1

    公开(公告)日:2009-08-06

    申请号:DE602006007479

    申请日:2006-09-21

    Abstract: A connector for a pressure vessel includes a connector assembly having a first plurality of contacts, and a receiver assembly configured to be positioned within a receiver aperture formed in a closure of the pressure vessel and having a second plurality of contacts. The receiver assembly is configured to receive the connector assembly and place each of the first plurality of contacts in electrical contact with a corresponding one of the second plurality of contacts. A seal is provided between the connector assembly and the wall of the pressure vessel, for substantially sealing the receiver aperture from pressure within the vessel. The connector assembly is configured to be coupled to a product carrier, and sensors positioned in the vessel are coupled via the connector assembly to a data acquisition unit. When the closure is lowered onto the vessel, the receiver assembly contacts the connector assembly coupled to the carrier, closing the electrical contacts connecting the sensors to the acquisition unit.

    12.
    发明专利
    未知

    公开(公告)号:AT434742T

    公开(公告)日:2009-07-15

    申请号:AT06815061

    申请日:2006-09-21

    Abstract: A connector for a pressure vessel includes a connector assembly having a first plurality of contacts, and a receiver assembly configured to be positioned within a receiver aperture formed in a closure of the pressure vessel and having a second plurality of contacts. The receiver assembly is configured to receive the connector assembly and place each of the first plurality of contacts in electrical contact with a corresponding one of the second plurality of contacts. A seal is provided between the connector assembly and the wall of the pressure vessel, for substantially sealing the receiver aperture from pressure within the vessel. The connector assembly is configured to be coupled to a product carrier, and sensors positioned in the vessel are coupled via the connector assembly to a data acquisition unit. When the closure is lowered onto the vessel, the receiver assembly contacts the connector assembly coupled to the carrier, closing the electrical contacts connecting the sensors to the acquisition unit.

    PRESSURE VESSEL AND METHOD AND DEVICE FOR SEALING A PRESSURE VESSEL
    13.
    发明申请
    PRESSURE VESSEL AND METHOD AND DEVICE FOR SEALING A PRESSURE VESSEL 审中-公开
    压力容器和用于密封压力容器的方法和装置

    公开(公告)号:WO2007020099A3

    公开(公告)日:2007-08-23

    申请号:PCT/EP2006008163

    申请日:2006-08-18

    CPC classification number: F16J15/127

    Abstract: A seal assembly (10) is provided to seal a pressure vessel (12) and an adjacent enclosure (13). A metal support ring (11) configured to contact a first sealing surface (14) and a second sealing surface (15) when installed in a pressure vessel, is provided with a low friction coating with transferable low friction additives which results in the transfer of a solid lubricant film onto the vessel wall enclosure. Two polymer seals (17, 18) are provided adjacent the metal support ring (11) and the pressure vessel (12) and enclosure (13) respectively, the polymer seals (17, 18) having a configuration and being formed of a high resilience material, to increase the longevity of the seal assembly.

    Abstract translation: 提供密封组件(10)以密封压力容器(12)和相邻的外壳(13)。 当安装在压力容器中时,构造成接触第一密封表面(14)和第二密封表面(15)的金属支撑环(11)设置有具有可转移的低摩擦添加剂的低摩擦涂层,这导致转移 将固体润滑剂膜覆盖在血管壁外壳上。 两个聚合物密封件(17,18)分别设置在金属支撑环(11)和压力容器(12)和外壳(13)附近,聚合物密封件(17,18)具有构造并由高弹性形成 材料,以增加密封组件的使用寿命。

    THERMAL SENSOR CONNECTOR FOR PRESSURE VESSEL
    14.
    发明申请
    THERMAL SENSOR CONNECTOR FOR PRESSURE VESSEL 审中-公开
    用于压力容器的热传感器连接器

    公开(公告)号:WO2007038166A3

    公开(公告)日:2007-10-25

    申请号:PCT/US2006036740

    申请日:2006-09-21

    Abstract: A connector for a pressure vessel includes a connector assembly having a first plurality of contacts, and a receiver assembly configured to be positioned within a receiver aperture formed in a closure of the pressure vessel and having a second plurality of contacts. The receiver assembly is configured to receive the connector assembly and place each of the first plurality of contacts in electrical contact with a corresponding one of the second plurality of contacts. A seal is provided between the connector assembly and the wall of the pressure vessel, for substantially sealing the receiver aperture from pressure within the vessel. The connector assembly is configured to be coupled to a product carrier, and sensors positioned in the vessel are coupled via the connector assembly to a data acquisition unit. When the closure is lowered onto the vessel, the receiver assembly contacts the connector assembly coupled to the carrier, closing the electrical contacts connecting the sensors to the acquisition unit.

    Abstract translation: 一种用于压力容器的连接器包括:连接器组件,其具有第一多个触点;以及接收器组件,其被配置为定位在形成在压力容器的闭合件中的接收器孔内并具有第二多个触点。 接收器组件被配置成接收连接器组件并且将第一多个接触件中的每个接触件与第二多个接触件中对应的一个接触件电接触。 在连接器组件和压力容器的壁之间提供密封件,用于基本上密封容器孔口免受容器内的压力。 连接器组件被构造成联接到产品载体,并且位于容器中的传感器经由连接器组件联接到数据采集单元。 当封闭件下降到容器上时,接收器组件接触连接到载体的连接器组件,闭合将传感器连接到获取单元的电触点。

    SYSTEMS AND METHODS TO REDUCE THE PRESSURE IN A PRESSURE CHAMBER
    15.
    发明申请
    SYSTEMS AND METHODS TO REDUCE THE PRESSURE IN A PRESSURE CHAMBER 审中-公开
    降低压力室压力的系统和方法

    公开(公告)号:WO2006129180A1

    公开(公告)日:2006-12-07

    申请号:PCT/IB2006/001445

    申请日:2006-06-02

    Abstract: Systems and methods for performing a stepwise depressurization of a high-pressure fluid (liquid) filled chamber are shown and described. At least two valves are controllably opened and closed in a sequence to release a predetermined amount of pressure from the high-pressure chamber. At least some of the pressurized fluid released from the high-pressure chamber is stored, at least temporarily, in a second pressure chamber. The second pressure chamber is located between the two controllable valves. A control system controls the valves in response to a signal from at least one pressure sensor coupled to the high-pressure chamber. Additional components can be included in the system such as a pressure intensifier and a high-pressure pump, both coupled to the high-pressure chamber, and at least one other pressure sensor to improve the accuracy of the measured pressure in the high-pressure chamber.

    Abstract translation: 显示和描述了用于执行高压流体(液体)填充室的逐步减压的系统和方法。 至少两个阀门按顺序可控地打开和关闭以从高压室释放预定量的压力。 从高压室释放的至少一些加压流体至少暂时储存在第二压力室中。 第二压力室位于两个可控阀之间。 控制系统响应来自耦合到高压室的至少一个压力传感器的信号来控制阀。 附加的部件可以包括在系统中,例如压力增压器和高压泵,两者都耦合到高压室,以及至少一个其他压力传感器,以提高高压室中测得的压力的精度 。

    MOVABLE PRESSURE INTENSIFIER FOR A PRESSING ARRANGEMENT
    16.
    发明申请
    MOVABLE PRESSURE INTENSIFIER FOR A PRESSING ARRANGEMENT 审中-公开
    可移动压力增压器用于压力安排

    公开(公告)号:WO2014206447A1

    公开(公告)日:2014-12-31

    申请号:PCT/EP2013/063243

    申请日:2013-06-25

    CPC classification number: B30B11/002 A23L3/0155

    Abstract: A system for high-pressure treatment comprising a high-pressure vessel (12) having a high-pressure cylinder provided with coaxial first and second end closures (20a, 20b). A surrounding force-absorbing frame is provided for resisting outward axial movement of the first and second end closures (20a, 20b) when closed during operation. A first and a second closure manipulator is arranged to open and close a respective end closure (20a, 20b). Further, at least one pressure intensifier unit (54) is connected to the pressure vessel (12) via a respective at least one tube extending through the first and/or second end closure via a respective through passage. The pressure intensifier units (54) are configured to increase the pressure inside the pressure vessel by feeding pressure medium into the pressure vessel (12) via the at least one tube during a pressurizing phase. The pressure intensifier unit (54) is arranged to move in a longitudinal direction of the pressure vessel (12) in response to an axial movement of the first end closure and/or second end closure (20a, 20b).

    Abstract translation: 一种用于高压处理的系统,包括具有设置有同轴的第一和第二端盖(20a,20b)的高压缸的高压容器(12)。 提供围绕的力吸收框架,用于当操作期间关闭时抵抗第一和第二端盖(20a,20b)的向外的轴向运动。 第一和第二闭合操纵器布置成打开和关闭相应的端盖(20a,20b)。 此外,至少一个增压器单元(54)经由相应的至少一个管经由相应的贯通通道延伸穿过第一和/或第二端盖而连接到压力容器(12)。 压力增强器单元(54)构造成通过在加压阶段期间经由至少一个管将压力介质输送到压力容器(12)中来增加压力容器内部的压力。 压力增强器单元(54)被布置成响应于第一端盖和/或第二端盖(20a,20b)的轴向运动而在压力容器(12)的纵向方向上移动。

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