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    • 3. 发明授权
    • Lubricant particle collector having a connector with a ball locking mechanism
    • 具有带球锁定机构的连接器的润滑剂颗粒收集器
    • US07029581B2
    • 2006-04-18
    • US10397138
    • 2003-03-26
    • James L. Horan
    • James L. Horan
    • B01D35/06
    • F01M11/0408Y10T137/87957Y10T137/87965
    • A removable particle collector for an apparatus which separates metal particles from lubricating oil. A valve assembly has a bore that provides a passage into the reservoir from outside. A valve element is normally biased against a valve seat to close the bore. A plug has a stem which when inserted into the valve assembly bore forces the valve element away from the valve seat. A portion of the stem is magnetized to attract ferromagnetic particles in the reservoir. A plurality of balls rotatably project from a surface on either the valve assembly or the plug and are received in a plurality of locking grooves in the other of the valve assembly and the plug to secure those components together. The balls are lubricated by fluid from the reservoir and can rotate to reduce wear which could loosen the components.
    • 用于将金属颗粒与润滑油分离的装置的可移除的颗粒收集器。 阀组件具有从外部提供通道进入储存器的孔。 阀元件通常偏压在阀座上以关闭孔。 塞子具有杆,当插入到阀组件孔中时,阀元件远离阀座。 杆的一部分被磁化以吸引储层中的铁磁颗粒。 多个滚珠从阀组件或塞子上的表面可旋转地突出并且被容纳在阀组件和插头中的另一个中的多个锁定槽中,以将这些部件固定在一起。 球由来自储存器的流体润滑并且可以旋转以减少可能松动部件的磨损。
    • 4. 发明授权
    • Conductive particle detector
    • 导电粒子检测器
    • US5388448A
    • 1995-02-14
    • US105146
    • 1993-08-12
    • Stephen ShowalterJames L. Horan
    • Stephen ShowalterJames L. Horan
    • G01V3/00B01D35/02G01N15/00G01N15/06G01N27/04G01V3/02G01V3/11G01R27/02
    • G01N15/0656
    • An electrically conductive particle detector that includes a hollow spool or sleeve of insulating material having an open end, a sidewall and a circumferential array of elongated fluid passages that extend radially through the sidewall. A pair of internested helical conductors are mounted in corresponding helical grooves on the interior of the sleeve sidewall, with helical reaches of the conductors spaced from each other by the sleeve. Electrical circuitry is connected to the conductors for detecting impingement of a conductive particle that bridges adjacent reaches of the conductors in fluid that flows through the sleeve. A perforated strainer is carried by the sleeve spaced from the conductors for removing particles in the fluid that flows through the sleeve.
    • 导电粒子检测器,其包括具有开口端,侧壁和径向延伸穿过侧壁的细长流体通道的圆周阵列的中空卷轴或绝缘材料套筒。 一对被隔离的螺旋导体安装在套筒侧壁内部的相应的螺旋槽中,导体的螺旋形到达通过套筒相互隔开。 电路连接到导体,用于检测在流过套筒的流体中桥接导体的相邻导体的导电颗粒的冲击。 穿孔过滤器由套管与导体间隔开,用于去除流过套筒的流体中的颗粒。
    • 5. 发明授权
    • Gas and fluid separator
    • 气体和流体分离器
    • US4707165A
    • 1987-11-17
    • US708003
    • 1985-03-04
    • Thomas E. TauberJames L. Horan
    • Thomas E. TauberJames L. Horan
    • B04C5/14B01D19/00B01D29/11B01D35/02B01D35/143B01D36/00B01D36/04B04C5/00B04C5/10B04C9/00F16N39/00F16N39/06
    • F16N39/06B01D19/0057B01D29/114B01D35/143B01D36/001B01D36/045B04C5/00B04C5/10B04C9/00F16N39/002B01D2201/302B01D2201/4084B04C2009/004
    • An apparatus for removing entrapped gas in a fluid is disclosed. The invention is particularly useful in separating air from oil used in engines and transmissions. The inlet for the oil and air, the exit for the air, and the oil exit are all located at the same end of the invention. This facilitates its use in a variety of engine and transmission configurations. Oil enters tangentially at the top of a cylindrical housing and is caused to cyclonically work its way down to the bottom of the housing. The oil is then forced to reverse its flow and travel upward with a downwardly projecting shroud. The oil is forced to enter an oil outlet tube which is connected to the top of the shroud and which passes through the top of the housing. An air outlet tube projects downwardly from the center of the top portion of the housing. The oil outlet tube is located concentrically within the air outlet tube. As the air circulates within the top portion of the cylindrical housing, the oil is centrifugally forced outward, while the lighter air coalesces and moves towards the center of the apparatus. The air passes into the gap formed by the oil and air outlet tubes where it is channeled to the air exit tube.In other embodiments, the apparatus includes a filter which filters out solid particles; includes an internal pressure through a relief valve which permits the oil to bypass the filter if it becomes clogged sufficiently to prohibit the passage of oil through the filter; includes a false bottom where the solid particles are trapped thereby permitting ease of the removal of the filter; includes around the filter a shroud which helps insure that little or no air passes through the filter.
    • 公开了一种用于去除流体中的截留气体的装置。 本发明特别适用于从发动机和变速器中使用的油中分离空气。 油和空气的入口,空气出口和出油口均位于本发明的同一端。 这有助于其在各种引擎和传输配置中的使用。 油在圆柱形壳体的顶部切向进入,并使其旋转地向下移动到壳体的底部。 然后油被迫使其逆流并且向下运动并向下突出的护罩。 油被迫进入油出口管,该出油管连接到护罩的顶部并且穿过壳体的顶部。 出气管从壳体顶部的中心向下突出。 出油管同心地位于出气管内。 当空气在圆柱形壳体的顶部部分内循环时,油被离心地向外强制,而较轻的空气聚结并向设备的中心移动。 空气进入由油和空气出口管形成的间隙,在那里它被引导到出气管。 在其他实施例中,该装置包括过滤掉固体颗粒的过滤器; 包括通过安全阀的内部压力,其允许油在足够堵塞的情况下绕过过滤器以阻止油通过过滤器; 包括固体颗粒被捕获的假底部,从而允许容易地去除过滤器; 在过滤器周围包括护罩,其有助于确保空气很少或没有空气通过过滤器。