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    • 22. 发明授权
    • Snap assembly friction hinge
    • 卡扣组合摩擦铰链
    • US07958599B2
    • 2011-06-14
    • US12371402
    • 2009-02-13
    • James B. Easley
    • James B. Easley
    • E05D7/00
    • B29C45/14336B29L2031/22E05D7/06Y10T16/524Y10T16/555Y10T403/32631
    • A friction hinge includes a socket made up of a compressible elastomer insert sleeve inside a relatively rigid cup substrate. The insert sleeve defines an opening with a lip around the opening, and a relatively rigid ball or other center portion can be snap assembled through the lip and opening to center itself in the socket. A mount portion extends through the opening off the ball/center portion, and hand pressure on the mount portion can adjust the angular position of the joint. The size of the ball/center portion relative to the size of the cup substrate causes dimensional compression of the insert sleeve, such as about 15% of its thickness. The compression of the insert sleeve creates a controlled friction force on the ball/center portion, so the snap assembly friction hinge works consistently over a long time and over wide temperature ranges.
    • 摩擦铰链包括由相对刚性的杯基底内的可压缩弹性体插入套筒构成的插座。 插入套筒限定了具有围绕开口的唇部的开口,并且相对刚性的球或其它中心部分可以通过唇缘和开口被卡扣组装,使其自身居中插入。 安装部分从球/中心部分延伸穿过开口,并且安装部分上的手压可以调节关节的角位置。 球/中心部分相对于杯状基底的尺寸的大小导致插入套筒的尺寸压缩,例如其厚度的约15%。 插入套筒的压缩在球/中心部分上产生受控的摩擦力,因此快速组合摩擦铰链在长时间和宽的温度范围内保持一致。
    • 23. 发明申请
    • Snap Assembly Friction Hinge
    • 快速组装摩擦铰链
    • US20090205167A1
    • 2009-08-20
    • US12371402
    • 2009-02-13
    • James B. Easley
    • James B. Easley
    • E05D7/00B29C39/00
    • B29C45/14336B29L2031/22E05D7/06Y10T16/524Y10T16/555Y10T403/32631
    • A friction hinge includes a socket made up of a compressible elastomer insert sleeve inside a relatively rigid cup substrate. The insert sleeve defines an opening with a lip around the opening, and a relatively rigid ball or other center portion can be snap assembled through the lip and opening to center itself in the socket. A mount portion extends through the opening off the ball/center portion, and hand pressure on the mount portion can adjust the angular position of the joint. The size of the ball/center portion relative to the size of the cup substrate causes dimensional compression of the insert sleeve, such as about 15% of its thickness. The compression of the insert sleeve creates a controlled friction force on the ball/center portion, so the snap assembly friction hinge works consistently over a long time and over wide temperature ranges.
    • 摩擦铰链包括由相对刚性的杯基底内的可压缩弹性体插入套筒构成的插座。 插入套筒限定了具有围绕开口的唇部的开口,并且相对刚性的球或其它中心部分可以通过唇缘和开口被卡扣组装,使其自身居中插入。 安装部分从球/中心部分延伸穿过开口,并且安装部分上的手压可以调节关节的角位置。 球/中心部分相对于杯状基底的尺寸的大小导致插入套筒的尺寸压缩,例如其厚度的约15%。 插入套筒的压缩在球/中心部分上产生受控的摩擦力,因此快速组合摩擦铰链在长时间和宽的温度范围内保持一致。
    • 26. 发明授权
    • Pneumatic controller and method
    • 气动控制器及方法
    • US5916165A
    • 1999-06-29
    • US965583
    • 1997-11-06
    • Douglas J. DuchonJames B. EasleyChristine Kronich
    • Douglas J. DuchonJames B. EasleyChristine Kronich
    • F04B49/06A61M1/00A61M5/00A61M5/142A61M5/145
    • A61M5/14546A61M5/007
    • A pneumatic control device includes a housing, a pressure control member secured to the housing, a first fluid-conduit member, and a first sensor. The pressure control member is constructed and arranged to selectively change a fluid pressure within the control member. The first fluid-conduit member is in fluid-flow communication with the pressure control member. The first sensor is in fluid-flow communication with the first fluid-conduit member. The sensor is constructed and arranged to generate a control signal based upon the fluid pressure within the control member. In preferred systems, the pneumatic controller is useful for producing a variable control signal to control a rate of fluid dispersement to a patient in an angiographic system.
    • 气动控制装置包括壳体,固定到壳体的压力控制构件,第一流体管道构件和第一传感器。 压力控制构件被构造和布置成选择性地改变控制构件内的流体压力。 第一流体管道构件与压力控制构件流体流动连通。 第一传感器与第一流体管道构件流体流动连通。 传感器被构造和布置成基于控制构件内的流体压力产生控制信号。 在优选的系统中,气动控制器可用于产生可变控制信号以控制在血管造影系统中对患者的流体分散速率。