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    • 1. 发明申请
    • System And Method For Dispensing A Cooled Beverage
    • 冷却饮料分配系统和方法
    • US20090077999A1
    • 2009-03-26
    • US12224996
    • 2007-03-05
    • Andrew ChapmanAndrew HillisHoward BiddleJeremy Carey
    • Andrew ChapmanAndrew HillisHoward BiddleJeremy Carey
    • B01D9/04F25D17/02
    • F25D31/002B67D1/0864B67D1/0865F25C2301/002
    • The present invention relates to a system for cooling a beverage, the system comprising: a beverage line (5) connectable to a beverage supply for transporting beverage from the beverage supply through an insulated carrier to a dispensation site (1), a cooling medium generator (2) for generating a cooling medium; a cooling line (6) for transporting the cooling medium from the cooling medium generator through the insulated carrier so as to allow heat exchange between the cooling medium in the cooling line and the beverage in the beverage line; and a pump (3) for pumping the cooling medium through the cooling line. The cooling medium generator (2) is an ice slush generator. The present invention also relates to a method of cooling a beverage flowing through a beverage line using ice slush as a cooling medium.
    • 本发明涉及一种用于冷却饮料的系统,该系统包括:可连接到饮料供应源的饮料生产线(5),用于将饮料从饮料供应通过绝缘载体输送到分配部位(1);冷却介质发生器 (2),用于产生冷却介质; 冷却管线(6),用于将冷却介质从冷却介质发生器通过绝缘载体输送,以便允许冷却管线中的冷却介质与饮料管线中的饮料之间进行热交换; 以及用于通过冷却管线泵送冷却介质的泵(3)。 冷却介质发生器(2)是冰浆发生器。 本发明还涉及一种使用冰淇淋作为冷却介质来冷却流过饮料管线的饮料的方法。
    • 6. 发明申请
    • CONTROL SYSTEM
    • 控制系统
    • US20100212336A1
    • 2010-08-26
    • US12678906
    • 2008-09-17
    • Andrew ChapmanRoderick Andrew Haines
    • Andrew ChapmanRoderick Andrew Haines
    • F25C1/00B67D7/80
    • F25D31/002F25C5/12F25C5/20F25C2301/002F25D17/02
    • The present invention provides a control system for controlling the ice volume fraction of a circulating ice-containing medium. The control system comprises a freezer apparatus for generating an ice-containing medium, a pump for circulating the ice-containing medium through a flow circuit comprising an outward line, a main line and a return line, and a bypass line connecting the outward line and return line to form a bypass circuit. In use, the time taken for circulating ice-containing medium to pass through the bypass circuit is less than the time taken for circulating ice-containing medium to pass through the flow circuit. The present invention also provides a method for controlling the ice volume fraction of a circulating ice-containing medium using such a control system.
    • 本发明提供一种用于控制循环含冰介质的冰体积分数的控制系统。 控制系统包括用于产生含冰介质的冷冻装置,用于使含冰介质循环通过包括外线,主线和返回管线的流动回路的泵,以及连接外部线路和 返回线路形成旁路电路。 在使用中,使含冰介质循环通过旁路回路所花费的时间小于使含冰介质循环通过流路所需的时间。 本发明还提供一种使用这种控制系统来控制循环含冰介质的冰体积分数的方法。
    • 9. 发明授权
    • Variable torque-rate test joint
    • 可变转矩试验接头
    • US08418569B2
    • 2013-04-16
    • US12449570
    • 2008-04-11
    • Peter William EverittBen William TyersAndrew ChapmanJohn Edward Burton
    • Peter William EverittBen William TyersAndrew ChapmanJohn Edward Burton
    • G01L5/24
    • G01L5/0042G01L5/24G01L25/003
    • A variable torque-rate test point for the performance testing of rotary tools for threaded fasteners comprises a screw-threaded bolt (1) having a moment of inertia comparable to that of a bolt to be tightened using the rotary tool. The bolt (1) is tightened in the test joint against a torque-rate adjustment device (6) which can be adjusted to simulate a hard or a soft joint. The adjustment device (6) comprises a washer portion (7) beneath the bolt head (4), at least one spring beam (8) extending from a reaction point (9) radially outwardly of the bolt (1), and a pivotal bearing member (10) or other pivot at a mid portion of the beam (8). The beam (8) flexes as it extends in cantilever over the pivot point, and that flexure can be adjusted to vary the torque-rate of the test joint by varying the distance between the pivot point and the rotary axis of the bolt (1).
    • 用于螺纹紧固件的旋转工具的性能测试的可变扭矩率测试点包括螺旋螺栓(1),其具有与使用旋转工具紧固的螺栓的惯性矩相当的惯性矩。 螺栓(1)在测试接头中被紧固在扭矩调节装置(6)上,扭矩调节装置(6)可被调节以模拟硬接头或软接头。 调节装置(6)包括在螺栓头(4)下方的垫圈部分(7),从螺栓(1)的径向向外的反应点(9)延伸的至少一个弹簧梁(8)和枢转轴承 构件(10)或其他枢轴在梁(8)的中部。 梁(8)随着悬臂在枢轴点上的延伸而弯曲,并且可以通过改变枢轴点和螺栓(1)的旋转轴线之间的距离来调整弯曲以改变测试接头的扭矩率, 。
    • 10. 发明申请
    • VARIABLE TORQUE-RATE TEST JOINT
    • 可变扭矩测试接头
    • US20100132481A1
    • 2010-06-03
    • US12449570
    • 2008-04-11
    • Peter William EverittBen William TyersAndrew ChapmanJon Edward Burton
    • Peter William EverittBen William TyersAndrew ChapmanJon Edward Burton
    • G01L5/24
    • G01L5/0042G01L5/24G01L25/003
    • A variable torque-rate test point for the performance testing of rotary tools for threaded fasteners comprises a screw-threaded bolt (1) having a moment of inertia comparable to that of a bolt to be tightened using the rotary tool. The bolt (1) is tightened in the test joint against a torque-rate adjustment device (6) which can be adjusted to simulate a hard or a soft joint. The adjustment device (6) comprises a washer portion (7) beneath the bolt head (4), at least one spring beam (8) extending from a reaction point (9) radially outwardly of the bolt (1), and a pivotal bearing member (10) or other pivot means at a mid portion of the beam (8). The beam (8) flexes as it extends in cantilever over the pivot point, and that flexure can be adjusted to vary the torque-rate of the test joint by varying the distance between the pivot point and the rotary axis of the bolt (1).
    • 用于螺纹紧固件的旋转工具的性能测试的可变扭矩率测试点包括螺旋螺栓(1),其具有与使用旋转工具紧固的螺栓的惯性矩相当的惯性矩。 螺栓(1)在测试接头中被紧固在扭矩调节装置(6)上,扭矩调节装置(6)可被调节以模拟硬接头或软接头。 调节装置(6)包括在螺栓头(4)下方的垫圈部分(7),从螺栓(1)的径向向外的反应点(9)延伸的至少一个弹簧梁(8)和枢转轴承 构件(10)或其他枢转装置在梁(8)的中部。 梁(8)随着悬臂在枢轴点上的延伸而弯曲,并且可以通过改变枢轴点和螺栓(1)的旋转轴线之间的距离来调整弯曲以改变测试接头的扭矩速率, 。