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    • 4. 发明申请
    • Inverted bottle fluid dispensing system
    • 倒瓶流体分配系统
    • US20070169844A1
    • 2007-07-26
    • US11318918
    • 2005-12-27
    • Fangzhen ZhengNeil McDonaldMark Copelli
    • Fangzhen ZhengNeil McDonaldMark Copelli
    • B65B1/04
    • B67D3/0029
    • An inverted-bottle fluid dispensing system providing efficient fluid dispensation. Various aspects of the present invention provide a stem comprising an outer surface and an inner surface defining an inner fluid flow cavity. A slot may, for example, provide a flow path between the outer surface and the inner cavity. The slot may, for example, be substantially longitudinally aligned on the stem. The stem may, for example, include a cylindrically shaped portion and a flat portion, at least a portion of which may be longitudinally coextensive with the cylindrically shaped portion. Further for example, the stem may include a plurality of faces culminating in a vertex at a tip, where at least one of the faces may comprise an aperture extending between the outer surface and the inner cavity. Also for example, the stem may comprise a base portion, where the base portion includes at least one aperture extending therethrough.
    • 提供有效的流体分配的倒瓶流体分配系统。 本发明的各个方面提供了一种杆,其包括限定内部流体流动腔的外表面和内表面。 例如,槽可以在外表面和内腔之间提供流动路径。 槽可以例如在杆上基本上纵向对准。 杆可以例如包括圆柱形部分和平坦部分,其至少一部分可以与圆柱形部分纵向共同延伸。 此外,例如,杆可以包括多个顶点,其顶端处于顶点,其中至少一个面可以包括在外表面和内腔之间延伸的孔。 还例如,杆可以包括基部,其中基部包括延伸穿过其中的至少一个孔。
    • 5. 发明授权
    • Variable torque rate test joint
    • 可变转矩试验接头
    • US08511181B2
    • 2013-08-20
    • US13510462
    • 2010-11-17
    • Adrian James DuffinJohn Edward BurtonPeter William EverittNeil McDonaldAndrew Wilkins
    • Adrian James DuffinJohn Edward BurtonPeter William EverittNeil McDonaldAndrew Wilkins
    • B25B23/14
    • G01L3/1464G01L3/1457G01L5/0042G01L5/24G01L25/003
    • In a variable torque rate test joint, screw-threaded first and second elements are rotated relative to one another by a tool under test. At least one spring beam is cantilevered over a pivot point to exert an axial force between the first and second elements and the torque rate of the test joint can be varied by moving the pivot point to change the axial force. The first element may be a shaft that is fixed during testing and the second element is a nut rotatably mounted on the shaft, whereby the element rotated by the tool has a minimal moment of inertia. Whichever of the first and second elements is held stationary during the test may be mounted in a hub that is locked during the test but can be rotated at the end of the test to reset the test joint. Measurements may be made of the torque and the rotation angle to derive an actual torque rate of the joint, which allows correction of errors by moving the pivot point.
    • 在可变转矩测试接头中,螺纹的第一和第二元件通过被测工具相对于彼此旋转。 至少一个弹簧梁悬挂在枢轴点上以在第一和第二元件之间施加轴向力,并且可以通过移动枢轴点来改变测试接头的扭矩来改变轴向力。 第一元件可以是在测试期间被固定的轴,并且第二元件是可旋转地安装在轴上的螺母,由此由工具旋转的元件具有最小的惯性矩。 第一和第二元件中的任何一个在测试期间保持固定可以安装在在测试期间被锁定的毂中,但是可以在测试结束时旋转以复位测试接头。 可以测量扭矩和旋转角度以导出接头的实际扭矩率,这允许通过移动枢转点来校正误差。
    • 6. 发明申请
    • VARIABLE TORQUE RATE TEST JOINT
    • 可变扭矩率测试接头
    • US20130125666A1
    • 2013-05-23
    • US13510462
    • 2010-11-17
    • Adrian James DuffinJohn Edward BurtonPeter William EverittNeil McDonaldAndrew Wilkins
    • Adrian James DuffinJohn Edward BurtonPeter William EverittNeil McDonaldAndrew Wilkins
    • G01L3/14
    • G01L3/1464G01L3/1457G01L5/0042G01L5/24G01L25/003
    • In a variable torque rate test joint, screw-threaded first and second elements are rotated relative to one another by a tool under test. At least one spring beam is cantilevered over a pivot point to exert an axial force between the first and second elements and the torque rate of the test joint can be varied by moving the pivot point to change the axial force. The first element may be a shaft that is fixed during testing and the second element is a nut rotatably mounted on the shaft, whereby the element rotated by the tool has a minimal moment of inertia. Whichever of the first and second elements is held stationary during the test may be mounted in a hub that is locked during the test but can be rotated at the end of the test to reset the test joint. Measurements may be made of the torque and the rotation angle to derive an actual torque rate of the joint, which allows correction of errors by moving the pivot point.
    • 在可变转矩测试接头中,螺纹的第一和第二元件通过被测工具相对于彼此旋转。 至少一个弹簧梁悬挂在枢轴点上以在第一和第二元件之间施加轴向力,并且可以通过移动枢轴点来改变测试接头的扭矩来改变轴向力。 第一元件可以是在测试期间被固定的轴,并且第二元件是可旋转地安装在轴上的螺母,由此由工具旋转的元件具有最小的惯性矩。 第一和第二元件中的任何一个在测试期间保持固定可以安装在在测试期间被锁定的毂中,但是可以在测试结束时旋转以复位测试接头。 可以测量扭矩和旋转角度以导出接头的实际扭矩率,这允许通过移动枢转点来校正误差。
    • 7. 发明申请
    • WATER DISPENSER AND METHOD OF OPERATING IT
    • 水分配器及其操作方法
    • US20120104031A1
    • 2012-05-03
    • US12916658
    • 2010-11-01
    • Neil McDonaldDaniel CapelleDaniel Brosnan
    • Neil McDonaldDaniel CapelleDaniel Brosnan
    • B67D7/00B67D7/06B67D7/08
    • B67D1/0014B67D1/0888B67D2001/0088B67D2210/0001B67D2210/00149
    • A water dispenser is fluidly connectable to a water source. The water dispenser includes a water tank; a faucet fluidly connected to the water tank and configured to generate an activation signal after being activated; a valve fluidly connectable to the water source and fluidly connected to the water tank; a first float switch movably disposed in the water tank and configured to generate an open signal after moving away from a predetermined position; and a controller operatively connected to the faucet and the first float switch. The controller is configured to open the valve to refill the water tank with water from the water source after the controller receives both the activation signal from the faucet and the open signal from the first float switch. A method of operating the water dispenser is also disclosed.
    • 水分配器可流体地连接到水源。 饮水机包括一个水箱; 水龙头,其流体地连接到所述水箱并且被配置为在被激活之后产生激活信号; 阀可流体连接到水源并且流体连接到水箱; 第一浮动开关,其可移动地设置在所述水箱中,并且构造成在远离预定位置移动之后产生打开信号; 以及可操作地连接到水龙头和第一浮子开关的控制器。 控制器被配置为在控制器接收到来自水龙头的启动信号和来自第一浮子开关的打开信号之后,打开阀以从水源向水箱补充水。 还公开了一种操作饮水机的方法。
    • 9. 发明授权
    • Water dispenser and method of operating it
    • 饮水机及其操作方法
    • US08540118B2
    • 2013-09-24
    • US12916658
    • 2010-11-01
    • Neil McDonaldDaniel CapelleDaniel Brosnan
    • Neil McDonaldDaniel CapelleDaniel Brosnan
    • B67D1/00
    • B67D1/0014B67D1/0888B67D2001/0088B67D2210/0001B67D2210/00149
    • A water dispenser is fluidly connectable to a water source. The water dispenser includes a water tank; a faucet fluidly connected to the water tank and configured to generate an activation signal after being activated; a valve fluidly connectable to the water source and fluidly connected to the water tank; a first float switch movably disposed in the water tank and configured to generate an open signal after moving away from a predetermined position; and a controller operatively connected to the faucet and the first float switch. The controller is configured to open the valve to refill the water tank with water from the water source after the controller receives both the activation signal from the faucet and the open signal from the first float switch. A method of operating the water dispenser is also disclosed.
    • 水分配器可流体地连接到水源。 饮水机包括一个水箱; 水龙头,其流体地连接到所述水箱并且被配置为在被激活之后产生激活信号; 阀可流体连接到水源并且流体连接到水箱; 第一浮动开关,其可移动地设置在所述水箱中,并且构造成在远离预定位置移动之后产生打开信号; 以及可操作地连接到水龙头和第一浮子开关的控制器。 控制器被配置为在控制器接收到来自水龙头的启动信号和来自第一浮子开关的打开信号之后,打开阀以从水源向水箱补充水。 还公开了一种操作饮水机的方法。