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    • 1. 发明授权
    • Device employing gas generating cell for facilitating controlled release of fluid into ambient environment
    • 采用气体发生电池的设备便于将流体控制释放到周围环境中
    • US07614568B2
    • 2009-11-10
    • US10868203
    • 2004-06-14
    • Ashok V. JoshiTruman WoldJohn J. McEvoy
    • Ashok V. JoshiTruman WoldJohn J. McEvoy
    • A61L9/04
    • A61L9/037A61L9/122A61L9/127
    • A device for controllably releasing a fluid into an ambient environment. According to a particular embodiment of the present invention, the device comprises a housing having a fluid compartment and an orifice compartment disposed adjacent thereto and in fluid communication therewith via an orifice. The fluid compartment contains the fluid for release to the ambient environment. The orifice compartment includes a fluid exit opening covered by a removable sealing element and contains an initial quantity of fluid when the device is in an inactivated state. A fluid restrictor is disposed adjacent the orifice to restrict fluid flow from the fluid compartment into the orifice compartment in the inactivated state. A gas-generating cell is in selective communication with the fluid compartment such that gas generated by the cell is directed into the fluid compartment when the device is in an activated state. A fluid membrane is disposed between the gas-generating cell and the fluid compartment that allows the gas generated by the cell to pass therethrough to the fluid compartment in the activated state while preventing fluid within the fluid container from passing therethrough to the cell in the inactivated state. The device is activated by removing the sealing element to allow the initial quantity of fluid to exit out of the orifice compartment via the fluid exit opening and activating the cell to generate gas and force fluid from the fluid compartment to the orifice compartment and out the fluid exit opening in a controlled manner.
    • 用于将流体可控地释放到周围环境中的装置。 根据本发明的特定实施例,该装置包括具有流体隔室和邻近其设置并通过孔流体连通的孔室的壳体。 流体室包含用于释放到周围环境的流体。 孔室包括由可移除的密封元件覆盖的流体出口,并且当装置处于非活动状态时包含初始量的流体。 流体限制器设置在孔口附近以限制处于非活动状态的流体从流体隔室流入孔室。 气体发生电池与流体室选择性地连通,使得当该装置处于激活状态时,电池产生的气体被引导到流体室中。 流体膜设置在气体发生池和流体隔室之间,其允许由活化的细胞产生的气体通过其流到腔室中,同时防止流体容器内的流体通过其进入灭活的细胞 州。 该装置通过移除密封元件而被激活,以允许初始量的流体经由流体出口开口离开孔室,并激活电池以产生气体并迫使流体从流体隔室流到孔室并流出流体 以受控的方式出口。
    • 2. 发明授权
    • Foldable, refillable, sustained-release fluid delivery system
    • 可折叠,可补充,持续释放流体输送系统
    • US06957779B2
    • 2005-10-25
    • US10300729
    • 2002-11-20
    • Ashok V. JoshiTruman WoldJohn J. McEvoy
    • Ashok V. JoshiTruman WoldJohn J. McEvoy
    • A01M1/20A01M29/00A61L9/04A61L9/12A24F25/00
    • A01M1/2038A01M1/2044A01M29/00A61L9/04A61L9/12
    • The invention described herein is a framed fluid delivery device that is made up of a fluid-delivery cartridge for the timed-release delivery of a fluid contained therein, and a frame assembly for retaining the fluid delivery cartridge. The frame assembly is made up of a base portion that facilitates the delivery of fluid released from the fluid-delivery cartridge, at least one side panel associated with the base, and that secures the fluid-delivery cartridge within the frame assembly proximate the released fluid delivering means. Additionally, a fluid delivery device is disclosed that includes a fluid-delivery cartridge for the timed-release delivery of a fluid contained therein, the cartridge having a bottom, a top, and sides, and a dispersion pad positioned proximate the bottom of the fluid-delivery cartridge, wherein the dispersion pad at least partially surrounds the sides of the fluid-delivery cartridge.
    • 本文描述的本发明是框架式流体输送装置,其由用于定时释放输送其中包含的流体的流体输送筒和用于保持流体输送盒的框架组件构成。 框架组件由基部构成,该基部有助于输送从流体输送筒释放的流体,与基部相关联的至少一个侧板,并且将流体输送盒固定在框架组件内靠近释放流体 交付方式。 此外,公开了一种流体输送装置,其包括用于定时释放输送其中包含的流体的流体输送筒,所述筒具有底部,顶部和侧面,以及位于流体底部附近的分散垫 - 输送盒,其中所述分散垫至少部分地围绕所述流体输送盒的侧面。
    • 9. 发明授权
    • Rod pressurization sensing apparatus
    • 杆加压检测装置
    • US4925619A
    • 1990-05-15
    • US353563
    • 1989-05-18
    • James A. SparrowJohn J. McEvoy
    • James A. SparrowJohn J. McEvoy
    • G01B7/16G21C17/06
    • G21C17/06Y10S33/13
    • An apparatus is disclosed for determining pressurization in a nuclear fuel rod and the like by measuring the increase in diameter of the fuel rod occasioned by the internal pressurization of the rod, and which includes an elongate receiving member having front and rear ends and an axial opening extending therein. A gauge is positioned in the axial opening and is adapted to coaxially surround the fuel rod and then measure an increase in diameter of a fuel rod caused by a pressure increase within the rod. The gauge is formed from a substantially C-shaped bracket having inner and outer surfaces, spaced distal end portions and a more thin medial portion, and with a strain gauge mounted on both the inner and outer medial surfaces. A microprocessor is connected to the strain gauges so that changes in electrical output from the strain gauges can be measured to determine the increase in diameter of the fuel rod upon pressurization of the fuel rod.
    • 公开了一种用于通过测量由杆的内部加压引起的燃料棒的直径增加来确定核燃料棒等中的加压的装置,并且包括具有前端和后端以及轴向开口的细长接收构件 在其中延伸。 计量器位于轴向开口中并且适于同轴地围绕燃料棒,然后测量由杆内的压力增加引起的燃料棒的直径的增加。 仪表由具有内表面和外表面,间隔开的远端部分和更薄的中间部分的基本上C形的支架形成,并且具有安装在内内表面和外内表面上的应变仪。 微处理器连接到应变计,使得可以测量来自应变计的电力输出的变化,以确定在燃料棒加压时燃料棒的直径的增加。