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    • 1. 发明授权
    • Support apparatus being adjustable as to height and insulating
vibrations for machines and the like
    • 支撑装置可调节机器等的高度和绝缘振动
    • US4114845A
    • 1978-09-19
    • US791490
    • 1977-04-27
    • Gottfried Weisenberger
    • Gottfried Weisenberger
    • F16F1/54F16F7/00F16M13/00
    • F16F7/00F16F1/54F16F2230/18F16F2236/123
    • The invention relates to mounting apparatus for adjustingly and insulatingly supporting various types of rotatable and vibratable machinery. The apparatus includes a base member and a vertically movable support member, both of which members have inclined surfaces in diverging pairs between which are disposed two wedge shaped members. A screw arrangement having right and left hand threads engage the two wedge shaped members to move them toward and away from each other in unison to raise and lower the vertically movable support member. Between the wedge shaped members and the base member on the bottom and the support member on the top are resilient elements which provide cushioning for the upper support member. The resilient elements may be attachable to the wedge shaped members and slide relative to the other member or may be attachable to all of the members. In the latter case the resilient members are somewhat thicker because in the absence of relative sliding the relative movement between the members must be accommodated by the relative displacement between the upper and lower portions of each resilient member.
    • 本发明涉及用于调节和绝缘地支撑各种可旋转和可振动机械的安装装置。 该装置包括基座构件和可垂直移动的支撑构件,两个构件具有分叉对的倾斜表面,两个楔形构件之间设置有倾斜表面。 具有右手螺纹和左手螺纹的螺钉装置与两个楔形构件接合以一致地将它们彼此移动并远离彼此以升高和降低可垂直移动的支撑构件。 在楔形构件和底部上的基座构件之间以及顶部上的支撑构件之间是弹性元件,其为上部支撑构件提供缓冲。 弹性元件可以可附接到楔形构件并相对于另一个构件滑动,或者可以附接到所有构件。 在后一种情况下,弹性构件稍厚,因为在没有相对滑动的情况下,构件之间的相对运动必须通过每个弹性构件的上部和下部之间的相对位移来容纳。
    • 2. 发明授权
    • Fluid control valve
    • 流体控制阀
    • US4064910A
    • 1977-12-27
    • US693777
    • 1976-06-08
    • Gottfried Weisenberger
    • Gottfried Weisenberger
    • F16F15/027F16K11/14
    • F16F15/027Y10S267/01Y10T137/86919
    • A control valve for controlling the supply of pressurized fluid to a working element, such as a pneumatic spring, comprises a housing having a bore comprising first and second bore sections with a smaller diameter middle bore section. A connection for a source of pressurized fluid communicates with the first bore section; an outlet opening with the second bore section; and a working element, such as a pneumatic spring, is fed from the middle bore section. A valve stem is slidable within the middle bore section in response to displacement of the working element, and has a duct therethrough which can interconnect the first and the second bore sections but which can be closed off by a closure member in the first bore section. The closure member can also isolate the middle bore section from the first bore section. The shape of the valve stem is such that for small deviations of the working element from a datum position, fluid flow from the first bore section into the middle bore section is throttled so that a slow return of the working element towards the datum is obtained, whereas the flow is unthrottled for larger deviations and a faster return is obtained.
    • 用于控制向工作元件(例如气动弹簧)供应加压流体的控制阀包括具有孔的壳体,该壳体包括具有较小直径的中间孔部分的第一和第二孔部分。 用于加压流体源的连接件与第一孔部分连通; 具有第二孔部分的出口; 并且从中间孔部分馈送诸如气动弹簧的工作元件。 响应于工作元件的位移,阀杆可以在中孔部分内滑动,并且具有穿过其中的管道,其能够使第一和第二孔部分互相连接,但是可以通过第一孔部分中的封闭构件封闭。 封闭构件还可以将中间孔部分与第一孔部分隔离。 阀杆的形状使得对于工作元件与基准位置的小偏差,从第一孔部分到中间孔部分的流体流被节流,从而获得工作元件朝向基准的缓慢返回, 而对于较大的偏差,流动是无节制的,并且获得更快的返回。