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    • 4. 发明申请
    • A CLAWBOWL FOR A MILKING CLUSTER
    • 一个鸡尾酒集团的CLAWBOWL
    • WO2015150807A1
    • 2015-10-08
    • PCT/GB2015/051020
    • 2015-04-01
    • AN UDDER IP COMPANY LTD.
    • DUKE, James Richard John
    • A01J5/04
    • A01J5/041
    • There is provided a clawbowl (3) for a milking cluster. The clawbowl comprises a plurality of milk inlets (11) for receiving milk (MLK1) from a plurality of teat cups of the milking cluster, and a milk outlet (4) for outletting the received milk (MLK2) for onward delivery. The clawbowl comprises a valve body (30) that is movable between a closed position where the valve body blocks the milk outlet, and an open position where the valve body unblocks the milk outlet, and further comprises a drain passageway (27) leading from an inside of the clawbowl to an outside of the clawbowl, wherein the valve body (30) blocks the drain passageway when the valve body is in the open position, and unblocks the drain passageway when the valve body is in the closed position to allow fluid to drain from the inside to the outside of the clawbowl.
    • 提供了一个用于挤奶集群的爪弓(3)。 爪形碗包括多个用于从挤奶组的多个挤奶杯中接收牛奶(MLK1)的牛奶入口(11),以及用于排出接收的牛奶(MLK2)以便向前输送的牛奶出口(4)。 所述卡爪包括阀体(30),所述阀体可在所述阀体阻塞所述牛奶出口的关闭位置和所述阀体解除所述牛奶出口之间的打开位置之间移动,并且还包括排出通道(27) 在所述爪弓内部到所述爪形碗的外侧,其中,当所述阀体处于打开位置时,所述阀体(30)阻挡所述排水通道,并且当所述阀体处于所述关闭位置时解除所述排水通道,以允许流体 从爪子的内侧向外侧排水。
    • 8. 发明申请
    • APPARATUS FOR X-RAY CT SCANNING
    • WO2020109788A1
    • 2020-06-04
    • PCT/GB2019/053350
    • 2019-11-27
    • HALLMARQ VETERINARY IMAGING LTD
    • BOLAS, Nicholas MartinLODEIRO, Eduardo PallasMARTINEZ, Laura MolinerPODOLYAK, GiedreKURN, Paul MichaelBARNETT, James Richard
    • A61B6/04A61B6/00B25J9/04A61B6/03A61B6/10
    • Apparatus for x-ray CT scanning of an object comprises an x-ray generator (1) mounted on a first support (3) on an outer ring (4) and an x-ray detector (2) mounted on a second support (10) on an inner ring (11), and a drive mechanism arranged to rotate the outer and inner rings (4, 11). The outer and inner rings have a first common axis of rotation and the diameter of the outer ring (4) is greater than the diameter of the inner ring (11). The first and second supports (3, 10) are positioned diametrically opposite each other with the second support (10) on the far side of the inner ring (11) with respect to the position of the outer ring (4). The inner surface of the outer ring (4) and the outer surface of the inner ring (11) are formed with teeth, and the drive mechanism includes a gearing arrangement connecting the outer and inner rings (4, 11). The gearing arrangement comprises first and second toothed rotary gears (14, 16) fixed so as to rotate together about a second common axis of rotation, the first rotary gear (14) having a greater diameter than the second rotary gear (16). The first rotary gear (14) interengages with the teeth of the outer ring (4) and the second rotary gear (16) interengages with the teeth of the inner ring (11) via a third toothed rotary gear or a toothed drive belt (18). The ratio of the number of teeth on the outer and inner rings (4, 11) are the same as the ratio of the number of teeth on the first and second rotary gears (14, 16) so that the outer and inner rings (4, 11) rotate at substantially the same angular speed in the same direction, whereby x-ray radiation emitted by the x-ray generator (1) is directed towards the x-ray detector (2) whilst the first and second supports (3, 10), on which the x-ray generator (1) and x-ray detector (2) are respectively mounted, are moving along respective first and second annular concentric paths defined by the outer and inner rings (4, 11).