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    • 5. 发明申请
    • Pressure Wave Generator
    • 压力波发生器
    • US20120227416A1
    • 2012-09-13
    • US13425521
    • 2012-03-21
    • Alan CaughleyDavid Haywood
    • Alan CaughleyDavid Haywood
    • F25B9/14F01B19/02
    • F25B9/14F04B37/08
    • A pressure wave generator (40) for driving one or more cryogenic refrigerator systems. The pressure wave generator (40) comprises a housing with one or more inlet/outlet ports (57,58) through which generated pressure waves of gas may pass through to drive a cryogenic refrigerator system or systems connected to the inlet/outlet ports (57,58). The pressure waves are generated by at least one pair of opposed diaphragms (41,42) located in the housing that are moveable in a reciprocating motion within the housing to create pressure waves in gas spaces (55,56) associated with each diaphragm (41,42). The gas spaces (55,56) each having associated inlet/outlet ports (57,58) through which the pressure waves may pass. An operable drive system is also provided to move the pair of diaphragms (41,42) in a reciprocating motion.
    • 一种用于驱动一个或多个低温冰箱系统的压力波发生器(40)。 压力波发生器(40)包括具有一个或多个入口/出口端口(57,58)的壳体,产生的气体压力波通过所述入口/出口端口(57,58)通过其驱动以驱动连接到入口/出口(57)的低温冰箱系统 ,58)。 压力波由位于壳体中的至少一对相对的隔膜(41,42)产生,其能够在壳体内以往复运动的方式运动,以在与每个隔膜(41)相关联的气体空间(55,56)中产生压力波 ,42)。 每个具有相关联的入口/出口端口(57,58)的气体空间(55,56),压力波可以通过这些口/出口。 还提供可操作的驱动系统以使往复运动中的一对隔膜(41,42)移动。
    • 7. 发明授权
    • Wall arrangement for a servomotor
    • 伺服电机的墙壁布置
    • US06928920B2
    • 2005-08-16
    • US10707093
    • 2003-11-20
    • Masato WakeWayne Hewitt
    • Masato WakeWayne Hewitt
    • B60T13/563B60T13/567F16J3/02F16J3/04F01B19/02B23P19/02
    • B60T13/567B60T13/563F16J3/02F16J3/042Y10T29/4987Y10T29/53657
    • A movable wall for separating an interior of a housing for a brake booster into a first chamber and a second chamber. The movable wall is characterized by a diaphragm, a backing plate and a hub member. The diaphragm has a peripheral bead secured to the housing and an axial bead located in a groove in a cylindrical body of the hub member. The groove has a front face that is separated from a rear face by an arcuate transition surface located between a bottom of the groove and the front face. The axial bead has a profile corresponding to the groove and an arcuate lip that extends from a rear surface. The lip is connected by a convolute to a radial section of the disc portion of the diaphragm while the backing plate has an axial opening surrounded by a radial surface that engages the front face of the groove. The axial bead engages the radial surface to urge the radial annular surface into engagement with the front face of the groove while sealing the front chamber from the rear chamber. In response to a manual input force moving the cylindrical body, the convolute allows the cylindrical body to move without creating a radial force in the diaphragm that may cause separation between axial bead and groove.
    • 用于将用于制动助力器的壳体的内部分离成第一室和第二室的活动壁。 可移动壁的特征在于隔膜,背板和轮毂构件。 隔膜具有固定到壳体的周边珠缘和位于轮毂构件的圆柱体中的槽中的轴向珠。 凹槽具有通过位于凹槽的底部和前表面之间的弓形过渡表面与后表面分离的前表面。 轴向胎圈具有对应于凹槽的轮廓和从后表面延伸的弧形唇缘。 唇缘通过卷曲连接到隔膜的盘部分的径向部分,而背板具有由与槽的前表面接合的径向表面包围的轴向开口。 轴向胎圈与径向表面接合,以迫使径向环形表面与槽的前表面接合,同时将前室与后室密封。 响应于移动圆柱体的手动输入力,旋转体允许圆柱体移动而不在隔膜中产生可能导致轴向凸缘和凹槽之间的分离的径向力。
    • 9. 发明授权
    • Centrifugal pump having anti-clogging backflow prevention gate
    • 离心泵具有防堵漏回流防止门
    • US5967744A
    • 1999-10-19
    • US57200
    • 1998-04-08
    • Michael Danner
    • Michael Danner
    • F04D15/00F04D29/48F01B19/02
    • F04D29/486F04D15/0016Y10S415/911
    • A centrifugal pump, includes a pump volute having a substantially axial inlet port and a substantially radial outlet port and is substantially symmetrical about the axis of the outlet port, with the outlet port being flanked by a first and second side wall, an impeller rotably mounted inside the pump volute, a drive motor coupled to the impeller for imparting rotational movement to the impeller, and a gate mounted between the impeller and the outlet port. The gate is in the form of a resilient flap having a fixed end and a free end. The flap free end is movable between a first operating position where the free end is biased against one of the first and second walls during operation of the pump and a second non-operating position in which the gate is disposed in a normal unbiased position spaced between the first and second walls when the pump is not in operation.
    • 离心泵包括具有基本上轴向的入口端口和基本上径向的出口端口的泵蜗壳,​​并且围绕出口的轴线基本对称,出口端口侧面是第一和第二侧壁,叶轮可旋转地安装 在泵蜗壳内部,连接到叶轮的驱动马达用于向叶轮施加旋转运动,以及安装在叶轮和出口之间的门。 门是具有固定端和自由端的弹性翼片的形式。 翼片自由端可以在第一操作位置和第二非操作位置之间移动,在第一操作位置,自由端在泵的操作期间被偏置在第一和第二壁中的一个上,并且第二非操作位置中,门被布置在间隔开的正常无偏位置 泵不工作时的第一和第二壁。