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    • 12. 发明申请
    • Valve with Inherent Enhanced Turbulent Flow Metering Device and Flow Regulation
    • 具有固有增强湍流流量计量阀和流量调节阀
    • US20080048142A1
    • 2008-02-28
    • US11844208
    • 2007-08-23
    • Kevin J. EnglerJerome C. KloppMark Hentschel
    • Kevin J. EnglerJerome C. KloppMark Hentschel
    • F16K47/12
    • F16K27/00G01F1/10G01F1/115G01F1/12G01F15/00
    • A valve incorporates a device causing turbulents in the water stream just before passing over the turbine fins of the flow sensor. The device actually increases the Reynolds number or turbulence of the water stream increasing the contact of the water on the turbine. This causes the turbine to rotate more efficiently for the given flow volume passing over the flow measuring device. The improved efficiency results in better accuracy and performance over the entire flow range. In one embodiment the turbulent device forces the flow stream to rotate counter clockwise and hit the turbine fins causing higher force which makes the turbine turn more efficiently. The turbine is designed such that the major portion of the fin surface area is perpendicular to the turbulent flow stream. This opposed direction causes more force to be placed on the turbine fin by the water stream.
    • 阀门结合了在流过传感器的涡轮机翅片之前在水流中引起湍流的装置。 该装置实际上增加了水流的雷诺数或湍流,从而增加了涡轮机上水的接触。 这使得涡轮机对于通过流量测量装置的给定流量更有效地旋转。 改进的效率在整个流量范围内产生更好的精度和性能。 在一个实施例中,湍流装置迫使流动流逆时针旋转并撞击涡轮机叶片,导致更高的力,这使得涡轮机更有效地转动。 涡轮机被设计成使得翅片表面积的主要部分垂直于湍流流。 这种相反的方向导致更多的力通过水流被放置在涡轮翅片上。
    • 13. 发明授权
    • Safety restraint buckle three-state tongue sensor
    • 安全扣扣三态舌传感器
    • US6082481A
    • 2000-07-04
    • US107806
    • 1998-06-30
    • Kevin J. Engler
    • Kevin J. Engler
    • B60R22/48C12N15/12B60R21/00
    • B60R22/48B60R2022/4816Y10T24/45623
    • A safety restraint buckle apparatus and method wherein a Hall element is mounted with respect to a housing and a magnet is mounted with respect to the housing, at a distance from the Hall element. A latch is movably mounted between a latched position and an unlatched position. A tongue is movable between an engaged position within the housing and a disengaged position. In the engaged position of the tongue, the latch is in the latched position. An ejector with a pole piece or a pole member is movably mounted between a loaded position and an unloaded position. When the ejector is in the unloaded position, the Hall element operates in a high magnetic state. When the ejector is in the loaded position and the tongue is in the engaged position, the Hall element operates in a low magnetic state because the magnetic flux density is shunted through the tongue. When the latch is in the latched position and the tongue is in the disengaged position with the ejector thus held in an intermediate position, the Hall element operates in a mid magnetic state, between the low magnetic state and the high magnetic state, to indicate a false positive latch condition of the safety restraint buckle apparatus.
    • 一种安全保护带扣装置和方法,其中霍尔元件相对于壳体安装,并且磁体相对于壳体安装在离霍尔元件一定距离处。 闩锁可移动地安装在锁定位置和解锁位置之间。 舌头可在壳体内的接合位置和脱离位置之间移动。 在舌片的接合位置,闩锁处于锁定位置。 具有极片或极构件的喷射器可移动地安装在装载位置和卸载位置之间。 当喷射器处于卸载位置时,霍尔元件工作在高磁状态。 当喷射器处于装载位置并且舌片处于接合位置时,由于磁通密度通过舌片分流,所以霍尔元件工作在低磁状态。 当闩锁处于闩锁位置并且舌头处于脱离位置时,弹射器因此保持在中间位置,霍尔元件在低磁状态和高磁状态之间的中间磁状态下操作,以指示 安全扣带装置的假锁定状态。