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    • 9. 发明授权
    • Flapper relief valve
    • 挡板安全阀
    • US09279511B2
    • 2016-03-08
    • US13866689
    • 2013-04-19
    • Hamilton Sundstrand Corporation
    • William J. Bagge
    • F16K21/14F16K17/00F16K1/20F16K17/04F16K15/03F16K27/02B60H1/24
    • F16K17/0413B60H1/249F16K1/20F16K15/033F16K21/14F16K27/0227Y10T137/7898
    • A pressure relief valve is provided including a flapper pivotally mounted to a housing. The flapper is movable between a first position and a second position. A protrusion extends from a first surface of the flapper. A biasing mechanism is positioned near a first end of the flapper. The biasing mechanism is configured to apply a biasing force to the first surface of the flapper. A non-rotatable pin is arranged generally parallel to the first end of the flapper. A drag link is configured to pivot about the non-rotatable pin. The drag link includes a retaining feature and is substantially aligned with the protrusion on the flapper. When the flapper rotates to the second position, the retaining feature is configured to engage the protrusion to retain the flapper in the second position.
    • 提供一种压力释放阀,包括枢转地安装到壳体的挡板。 挡板可在第一位置和第二位置之间移动。 突出部从挡板的第一表面延伸。 偏置机构位于挡板的第一端附近。 偏压机构构造成对挡板的第一表面施加偏置力。 大致平行于挡板的第一端布置不可转动销。 牵引连杆构造成围绕不可旋转的销枢转。 牵引连杆包括保持特征并且基本上与挡板上的突起对准。 当挡板旋转到第二位置时,保持特征构造成接合突起以将挡板保持在第二位置。
    • 10. 发明授权
    • Automatic flow control system and flood protector
    • 自动流量控制系统和防洪保护器
    • US5086806A
    • 1992-02-11
    • US680838
    • 1991-04-05
    • Christopher J. EnglerMichael W. Johnson
    • Christopher J. EnglerMichael W. Johnson
    • F16K21/14B67D7/32G01F15/00G01M3/28G05D7/06
    • G05D7/0635G01F15/003G01M3/2807F25C2400/14Y10T137/7759Y10T137/7761Y10T137/7782Y10T137/86397
    • An automatic fluid-flow control system is provided for controlling the quantity of fluid allowed to flow uninterrupted through a conduit. It is particularly useful in controlling potentially damaging floods caused by breakage in a branch plumbing line used to supply water to beverage dispensing appliances, ice-making machines and similar devices which repeatedly consume limited quantities of water in relatively short flow cycles. The fluid-flow control system includes a flow meter which emits a signal containing information about the flow of fluid and also indicating when fluid is flowing and when it is not. The preferred metering device emits pulses at a rate proportional to the flow rate. A counter accumulates a pulse count during each period of fluid flow. A separate pulse sensing network senses the beginning and end of each period of fluid flow and disables and initializes the counter whenever fluid is not flowing. The accumulated pulse count in the counter is proportional to the quantity of fluid passing through the meter. The counter is set to close a solenoid valve whenever a predetermined maximum pulse count is exceeded. A back-up protective circuit is also provided, employing a timer to measure the time interval of each fluid-flow cycle. When the time interval is exceeded, the timer closes the solenoid valve. In addition to the flood protector mode of operation, a configuration employing the same circuit as a dispenser control device is also disclosed.
    • 提供了一种自动流体流量控制系统,用于控制通过导管不间断地流动的流体的量。 它特别有助于控制由用于向饮料分配设备,制冰机器和类似设备供水的断路引起的潜在的破坏性洪水,这些设备在相对较短的流量循环中反复消耗有限量的水。 流体流量控制系统包括流量计,其发出包含关于流体流动的信息的信号,并且还指示流体何时流动以及何时不流体流动。 优选的计量装置以与流量成比例的速率发射脉冲。 计数器在流体流动的每个周期期间累积脉冲数。 单独的脉冲感测网络检测每个流体周期的开始和结束,并且每当流体不流动时禁用和初始化计数器。 计数器中的累计脉冲数与流过仪表的流体量成比例。 每当超过预定的最大脉冲数时,计数器被设置为关闭电磁阀。 还提供备用保护电路,采用定时器来测量每个流体循环的时间间隔。 超过时间间隔时,定时器关闭电磁阀。 除了防洪器操作模式之外,还公开了采用与分配器控制装置相同的电路的结构。