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    • 3. 发明授权
    • Dishwasher float mounting bracket with retainer cover
    • 洗碗机浮动安装支架带保持盖
    • US07000620B2
    • 2006-02-21
    • US10615360
    • 2003-07-07
    • Chad M. ThomasBrook J. BeastonMichael C. Simmons
    • Chad M. ThomasBrook J. BeastonMichael C. Simmons
    • B08B7/00H01H35/18G01F23/56
    • A47L15/4244H01H35/18
    • A float mounting plate is provided for a dishwasher to limit the level of water in the dishwasher tub. The float has a stem extending downwardly through a stand pipe in the bottom of the tub and into a switch bracket which houses the water level control switch. A tab is provided on the switch bracket which is adapted to extend around the float stem, thereby slidably retaining the retainer ring of the stem for engagement and disengagement with the switch, and limiting lateral or horizontal movement of the stem. In one embodiment, the tab is integrally formed with the bracket, with a living hinge allowing the tab to pivot between open and closed positions. In a second embodiment, the tab snap fits onto the bracket to capture the float stem.
    • 为洗碗机提供浮动安装板以限制洗碗机桶中的水位。 浮子具有向下延伸通过桶底部的立管并且容纳水位控制开关的开关支架的杆。 在开关支架上设置有一个突片,其适于围绕浮子杆延伸,从而可滑动地保持杆的保持环以与开关接合和分离,并限制杆的横向或水平运动。 在一个实施例中,突片与支架一体形成,具有允许突片在打开位置和关闭位置之间枢转的活动铰链。 在第二实施例中,突片卡扣配合到支架上以捕获浮子杆。
    • 5. 发明授权
    • Radial seal filter with multi-component housing
    • 带多组件外壳的径向密封过滤器
    • US07992722B2
    • 2011-08-09
    • US11343252
    • 2006-01-27
    • Chad M. Thomas
    • Chad M. Thomas
    • B01D35/00B01D35/30B01D27/00
    • B01D35/30B01D29/21B01D29/96B01D2201/295B01D2201/304B01D2201/305
    • A fluid filter housing for receipt of a fluid filter element and for threaded attachment to a mounting base includes a unitary, molded plastic shell, an annular, threaded nutplate, and a plastic weld ring. The plastic shell defines a hollow interior for receipt of the fluid filter element. The plastic shell also defines one side of an O-ring groove. The threaded nutplate includes a groove-side surface that defines a second side of the O-ring groove. The weld ring is securely joined to the threaded nutplate by co-molding and is securely joined to the shell by a spin weld process. The weld ring provides a third surface for the O-ring groove. As such, three separate components are used to create an inwardly opening three-sided annular groove for receipt of an annular seal for sealing an interface between the fluid filter housing and the mounting base.
    • 用于接收流体过滤元件并用于螺纹连接到安装基座的流体过滤器壳体包括单一的模制塑料外壳,环形螺纹螺母板和塑料焊接环。 塑料外壳限定用于接收流体过滤元件的中空内部。 塑料外壳还限定了O形圈槽的一侧。 螺纹螺母板包括限定O形环槽的第二侧的槽侧表面。 焊接环通过共同模制牢固地连接到螺纹螺母板,并通过旋转焊接工艺牢固地接合到壳体。 焊环为O形环槽提供第三表面。 因此,使用三个单独的部件来产生向内开口的三面环形槽,用于接收用于密封流体过滤器壳体和安装基座之间的界面的环形密封件。
    • 7. 发明申请
    • FLUID FILTER FOR COMBUSTION ENGINE SYSTEMS AND METHODS
    • 用于燃烧发动机系统和方法的流体过滤器
    • US20090184036A1
    • 2009-07-23
    • US12016095
    • 2008-01-17
    • Harold R. MartinMark T. WleczorekChad M. ThomasWilliam C. Haberkamp
    • Harold R. MartinMark T. WleczorekChad M. ThomasWilliam C. Haberkamp
    • B01D35/14
    • B01D29/114B01D29/902B01D2201/44
    • Described herein are embodiments of a fluid filter for combustion engine systems and associated methods. According to one exemplary embodiment, a fluid filter apparatus for reducing re-entrainment of contaminant particles into post-filtration fluid flow due at least in part to a fluid flow surge includes at least one fluid filter and a fluid flow diverting element that is coupled to the fluid filter. The fluid filter includes at least one fluid filtering medium that is communicable in fluid flow receiving communication with a fluid flowing along a first fluid flow path during a fluid flow non-surge event. During a fluid flow surge event, the fluid flow diverting element is capable of diverting at least some of the fluid from the first fluid flow path to a second fluid flow path.
    • 这里描述了用于燃烧发动机系统和相关方法的流体过滤器的实施例。 根据一个示例性实施例,用于至少部分地由于流体流动浪涌而减少污染物颗粒到后过滤流体流中的再夹带的流体过滤装置包括至少一个流体过滤器和流体流动转向元件,其耦合到 流体过滤器。 所述流体过滤器包括至少一个流体过滤介质,所述至少一个流体过滤介质可在流体流动非浪涌事件期间以流体流动方式与沿着第一流体流动路径流动的流体连通地通信。 在流体流动浪涌事件期间,流体流动分流元件能够将至少一些流体从第一流体流动路径转移到第二流体流动路径。