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    • 3. 发明申请
    • Rotational-part supporter
    • 旋转零件支持者
    • US20030015374A1
    • 2003-01-23
    • US10107791
    • 2002-03-27
    • Yasumaro MatsuuraKikuta YamadaSeiji Tanaka
    • F16N027/00
    • F16C19/163F16C33/585F16C33/6614F16C33/6625F16C33/6629F16C2233/00F16N2210/14
    • The invention provides a rotational-part supporter in which one of either an inner part or an outer part is fixed, and the other one is rotated, and a main rotational shaft lies between the inner and outer parts. A number of revolutions below a set number of revolutions based on a lubrication lifetime predicted for each rotational bearing (3) is stored in a memory (61) disposed in a lubricant supply controller (6). When the number of revolutions obtained by actual rotation reaches the stored number of revolutions in the rotational bearing (3) after supplying a lubricant, the controller (6) issues a signal indicating that a lubricant should be newly supplied, and thereby a safe operation can be realized.
    • 本发明提供了一种旋转部分支撑件,其中,内部部分或外部部分中的一个固定,另一个旋转,并且主旋转轴位于内部和外部之间。 基于为每个旋转轴承(3)预测的润滑寿命而设定的转数以下的转数被存储在设置在润滑剂供给控制器(6)中的存储器(61)中。 当通过实际旋转获得的转数在供给润滑剂之后到达旋转轴承(3)中的存储转数时,控制器(6)发出指示应该新提供润滑剂的信号,从而安全操作 实现。
    • 5. 发明申请
    • System and method for lubricant flow control in a variable speed compressor package
    • 变速压缩机包装中润滑剂流量控制的系统和方法
    • US20040112679A1
    • 2004-06-17
    • US10318421
    • 2002-12-13
    • Steven D. Centers
    • F16N027/00
    • F04C28/08F04C18/16F04C29/021F04C29/028
    • A system and method for regulating lubricant flow in a variable speed compressor includes a compressor having an inlet for gas to be compressed, at least one lubricant injection line, and an outlet through which compressed gas and lubricant exit, a flow control interface comprising at least one valve for regulating the flow of lubricant through the lubricant injection line, and a control logic in communication with the compressor such that the operating speed of the compressor is communicated to the control logic and the control logic is in communication with the flow control interface such that the control logic sends a signal to the flow control interface to open or close the at least one valve depending on the predetermined optimum lubricant flow rate for the compressor based on its operational speed. This allows the flow of lubricant through the compressor to be varied in response to the operating needs of the compressor at different speeds.
    • 用于调节变速压缩机中的润滑剂流量的系统和方法包括:压缩机,其具有用于被压缩的气体的入口,至少一个润滑剂注入管线和压缩气体和润滑剂离开的出口,流动控制界面至少包括 用于调节通过润滑剂注入管线的润滑剂流动的一个阀,以及与压缩机通信的控制逻辑,使得压缩机的运行速度被传送到控制逻辑,并且控制逻辑与流量控制接口 控制逻辑根据其操作速度根据压缩机的预定最佳润滑剂流量,向流量控制接口发送信号以打开或关闭至少一个阀。 这允许润滑剂通过压缩机的流动响应于压缩机在不同速度下的操作需要而变化。
    • 7. 发明申请
    • Pneumatic in-line lubricator
    • 气动在线润滑器
    • US20020166730A1
    • 2002-11-14
    • US09851908
    • 2001-05-09
    • Michael V. Rzeppa
    • F16N027/00
    • F16N7/30F16N27/00
    • An in-line lubricator for a pneumatic tool system includes a body defining a fluid reservoir and a working passageway and an actuator positionable within the body. The actuator includes an elongated body having a transfer cavity formed therein which is in fluid communication with the fluid reservoir when the actuator is in a first position and which is in fluid communication with the working passageway when the actuator is in the second position. Movement of the actuator from the first position to the second position transports a predetermined amount of fluid from the fluid reservoir into the working passageway.
    • 用于气动工具系统的在线润滑器包括限定流体储存器的主体和可位于主体内的工作通道和致动器。 致动器包括细长主体,其具有形成在其中的传送腔,当致动器处于第一位置时,当致动器处于第二位置时,致动器处于与流体存储器流体连通并且与工作通道流体连通。 致动器从第一位置移动到第二位置将预定量的流体从流体储存器输送到工作通道中。
    • 8. 发明申请
    • Lubrication control device
    • 润滑控制装置
    • US20020117356A1
    • 2002-08-29
    • US09794933
    • 2001-02-28
    • GENERAL MOTORS CORPORATION
    • Scott Henry Wittkopp
    • F16N027/00
    • F16H63/3026F16D25/123F16H57/0473
    • An automatic transmission is comprised of a housing and a hub rotatable about a shaft at differing speeds and having an axial assembly gap therebetween. The axial assembly gap defines an annular flow path in fluid communication with a source lubrication path and a lubrication-requiring mechanism. A lubrication control device is disposed in the annular flow path. The device includes a washer in constant contact with the housing and having a radial slot to permit a prescribed flow of lubricant through the annular flow path to the lubrication-requiring mechanism. The device further includes a belleville spring wherein a small diameter end is in contact with the hub and a large diameter end is piloted by a seating on the washer, wherein the belleville spring provides spring adjustability to accommodate the variable axial assembly gap.
    • 自动变速器包括壳体和可以以不同速度绕轴旋转并且在它们之间具有轴向组合间隙的轮毂。 轴向组装间隙限定了与源润滑路径和润滑需求机构流体连通的环形流动路径。 润滑控制装置设置在环形流路中。 该装置包括与壳体恒定接触的垫圈,并且具有径向槽,以允许润滑剂通过环形流动路径流到润滑需要机构。 该装置还包括一个贝尔弹簧,其中一个小直径端部与轮毂相接触,并且一个大直径的端部由垫圈上的座椅引导,其中,该贝氏弹簧提供弹簧可调节性以适应可变的轴向组件间隙。