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    • 51. 发明授权
    • Moisture responsive device and method
    • 水分响应装置及方法
    • US08979430B2
    • 2015-03-17
    • US12518031
    • 2007-12-07
    • Michael E. Brown
    • Michael E. Brown
    • A01G27/04A01G27/00A01G25/16F16K7/08F16K31/00
    • A01G27/003A01G25/167F16K7/08F16K31/001Y10T137/189
    • A moisture responsive device is described having a moisture responsive element comprising at least a moisture responsive formation of a first material in association with a less moisture responsive formation of a second material, in that the first material has a greater tendency to absorb moisture and to increase in volume as a result than the second material, the two formations being so mechanically arranged together that such swelling tends to cause mechanical deformation of the moisture responsive element; and an actuation member optionally of flexibly resilient material in mechanical association with the moisture responsive element so that distortion of the moisture responsive element in the presence of moisture tends to mechanically distort the actuation member and thereby cause the actuation member to change between at least a first functional state and a second functional state. A method of use, especially in irrigation control, is also described.
    • 描述了一种湿度响应装置,其具有水分响应元件,该水分响应元件至少包含与第二材料的较少水分响应性结构相关联的第一材料的水分响应性结构,因为第一材料具有较大的吸湿倾向并增加 结果是比第二材料体积大,两个结构被机械地布置在一起,使得这种膨胀趋向于引起水分响应元件的机械变形; 以及任选地具有柔性弹性材料的致动构件,其与水分响应元件机械相关联,使得在存在湿气的情况下水分响应元件的变形倾向于使致动构件机械地变形,从而使致动构件在至少第一 功能状态和第二功能状态。 还描述了一种使用方法,特别是在灌溉控制中。
    • 52. 发明申请
    • Emergency Drainage Device for Enclosed Compartments
    • 封闭隔间紧急排水装置
    • US20140239208A1
    • 2014-08-28
    • US13780870
    • 2013-02-28
    • GM GLOBAL TECHNOLOGY OPERATIONS LLC
    • JURGEN THYROFFJOHANNES LAUER
    • F16K31/12
    • F16K31/12F16K31/001Y10T137/1624Y10T137/1632
    • A drainage device for placement on a housing includes an external plug component and a liquid expandable component. The external plug component has a first cap section and a second attachment section. The first cap section is positionable over an exterior side of a housing wall. The first attachment section is adapted to attach the drainage device to an opening in the housing wall. The liquid expandable component contacts the external plug component and is adapted to contact a structure within the housing when the drainage device is placed on the housing. Characteristically, the liquid expandable component has a higher volume when contacted with liquid than when dry. The liquid expandable component pushes the internal plug component away from the structure within the housing when the liquid expandable component transitions from a non-liquid-containing state to a liquid containing state thereby providing a path for liquid to escape.
    • 用于放置在壳体上的排水装置包括外部塞子部件和液体可膨胀部件。 外部插头部件具有第一盖部分和第二连接部分。 第一盖部分可定位在壳体壁的外侧上。 第一附接部分适于将排水装置附接到壳体壁中的开口。 液体可膨胀组件接触外部插头部件,并且当排水装置放置在壳体上时适于接触壳体内的结构。 特别地,当与液体接触时,液体可膨胀组分具有比干燥时更高的体积。 当液体可膨胀部件从非液体状态转移到液体容纳状态时,液体可膨胀部件将内部塞子部件推离壳体内的结构,从而提供液体逸出的路径。
    • 55. 发明授权
    • Automatic flow shut-off system
    • 自动流量关闭系统
    • US08006714B1
    • 2011-08-30
    • US12462356
    • 2009-08-03
    • James B. MartinLloyd G. Jones
    • James B. MartinLloyd G. Jones
    • F16K17/36D06F39/08
    • F16K31/001A47L15/421D06F39/081Y10T137/1624Y10T137/1632Y10T137/5762
    • An automatic flow shut-off unit for shutting off water to an appliance (e.g. commode) when a leak or overflow occurs. The unit includes an outer housing having a ball valve mounted thereon wherein the valve is connected between the water supply and the appliance. A tripper unit is mounted in the outer housing and has a plunger therein. The valve is connected to the plunger by a length of actuation material (e.g. flexible cable). A compression spring is positioned in the tripper unit to normally bias the plunger downwards. A cartridge having a water reactive material (e.g. commercially-available toilet paper) thereon is removably mounted in the outer housing wherein the water reactive material when dry supports the plunger in a cocked position but which will quickly weaken and disintegrate upon contact with water.
    • 一种自动流量关闭装置,用于在发生泄漏或溢流时将水关闭到器具(例如,接头)。 该单元包括具有安装在其上的球阀的外壳,其中阀连接在供水和器具之间。 脱扣器单元安装在外壳中并且在其中具有柱塞。 阀通过致动材料(例如柔性电缆)的长度连接到柱塞。 压缩弹簧定位在脱扣器单元中,以正常地将柱塞向下偏置。 具有水反应性材料(例如可商购的卫生纸)的筒可移除地安装在外壳中,其中干燥时的水反应性材料将柱塞支撑在翘起位置,但是在与水接触时将快速地削弱和分解。
    • 56. 发明申请
    • DEVICE FOR PREVENTING LEAKAGE FROM WATER PURIFIER
    • 防止水净化器泄漏的装置
    • US20100269916A1
    • 2010-10-28
    • US12735325
    • 2009-09-04
    • Ju Song HurSeok Bong BangJong Ho Gong
    • Ju Song HurSeok Bong BangJong Ho Gong
    • D06F39/08
    • E03B7/071C02F1/001C02F1/44C02F2201/005F16K31/001Y02A20/15Y10T137/5762
    • Disclosed is a device which prevents leakage by automatically shutting off flow of incoming tap water using a plunger as a check valve when a compressed pulp body expands due to fluid leaking from a water purifier or under a sink. The water leakage prevention device according to one embodiment of the present invention is installed in the flow path of running tap water to a water purifier, and comprises: a running water inlet connected to the water supply source; a running water outlet connected to the water purifier; an upper casing unit having a channel connecting the running water inlet to the running water outlet; a lower casing unit attached to the bottom of the upper casing unit and having a compressed body which expands with absorption of water leaking from the water purifier via the lower casing unit; and a plunger check valve which alternatively opens and closes the running water channel and prevents discharge of water through the running water outlet by closing said channel when absorption of leakage expands said compressed body.
    • 公开了一种当压缩的纸浆体由于从净水器或水槽泄漏的液体膨胀而使柱塞作为止回阀时自动关闭输入自来水的流动来防止泄漏的装置。 根据本发明的一个实施例的防漏水装置安装在流水自来水的流路中,并且包括:与供水源连接的自来水入口; 与净水器连接的自来水出口; 上壳体单元,具有将流水入口连接到流水出口的通道; 下壳体单元,其附接到所述上壳体单元的底部并且具有压缩体,所述压缩体随着吸收从所述净水器经由所述下壳体单元泄漏的水而膨胀; 以及柱塞止回阀,其可选地打开和关闭流水通道,并且当吸收泄漏使所述压缩体膨胀时,通过关闭所述通道来防止水通过流出水口排出。
    • 60. 发明申请
    • Irrigation valve
    • 灌溉阀
    • US20020124880A1
    • 2002-09-12
    • US10087988
    • 2002-03-05
    • Akio Tanikawa
    • F16K031/04
    • F16K31/001A01G27/003Y10T137/189
    • An irrigation valve is disclosed which requires no electric power, can be manufactured at low cost, is useful for large-scale irrigation, and which can operate automatically for a long period of time. This irrigation valve is simple in its piping system, but realizes controlling the watering adjusted to the drainage varied by locations or to the kinds of plant, in a vast agricultural land or a vast park. This irrigation valve thereby makes it possible to prevent soil, crops and plants from being badly effected by excessive irrigation, thus preventing environmental degradation, which is proceeding globally, and enabling the avoidance of food shortages. The irrigation valve according to the present invention formed of a vessel, at least a part of which is water-permeable, and a water-absorbable body housed in the vessel, wherein a pressure generated by volume expansion of the water-absorbable body is employed for automatically opening or closing a water supply pipe.
    • 公开了一种不需要电力的灌溉阀,可以低成本制造,对于大型灌溉是有用的,并且可以长时间自动操作。 这种灌溉阀在其管道系统中简单,但实现了在广泛的农田或广阔的公园中,根据位置或种类,控制排水量的变化。 因此,这种灌溉阀使得可以防止土壤,作物和植物受到过度灌溉的严重影响,从而防止全球正在进行的环境退化,并能够避免粮食短缺。 根据本发明的冲洗阀由至少一部分是透水的容器形成,并且容纳在该容器中的吸水体,其中采用由吸水体体积膨胀产生的压力 用于自动打开或关闭给水管。