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    • 4. 发明授权
    • Damping valve for a shock absorber
    • 减震器阻尼阀
    • US06749177B2
    • 2004-06-15
    • US10308599
    • 2002-12-03
    • Günther HandkeGünther BraunPeter WirthGerald Fenn
    • Günther HandkeGünther BraunPeter WirthGerald Fenn
    • F16F934
    • F16F9/3485
    • Damping valve for a shock absorber includes a damping valve body with at least one valve seat surface for a valve disk which is loaded in the lifting direction by a flow of damping medium. At least one support disk arranged on the valve disk determines, by its contour, a lever arm up to an effective surface to which pressure is applied by a damping medium in the lifting direction, and this support disk is pretensioned in direction of the valve disk by a tensioning plate, wherein the damping valve body forms a line of tensioning with the valve disk, support disk and tensioning plate, wherein at least one of the contact surfaces within the line of tensioning is profiled, so that there is a contact circle at the support disk, and the radius of the contact circle matches the provided reference dimension for the contour of the support disk determining the lever arm length. The profile contains a free cut that accommodates any inaccuracies in the shape of the structural component parts contained in the line of tensioning.
    • 用于减震器的阻尼阀包括具有用于阀盘的至少一个阀座表面的阻尼阀体,所述阀座表面通过阻尼介质流沿着提升方向加载。 布置在阀盘上的至少一个支撑盘通过其轮廓确定杠杆臂,直到达到提升方向上由阻尼介质施加压力的有效表面,并且该支撑盘在阀盘的方向上被预张紧 通过张紧板,其中所述阻尼阀体与所述阀盘,支撑盘和张紧板形成张紧线,其中所述张紧线内的至少一个接触表面被成型,使得在 支撑盘和接触圆的半径与确定杠杆臂长度的支撑盘的轮廓的提供的参考尺寸相匹配。 轮廓包含一个自由切割,其适应包含在张紧线中的结构部件的形状的任何不准确。
    • 7. 发明授权
    • Inclination sensor
    • 倾角传感器
    • US08336218B2
    • 2012-12-25
    • US12657662
    • 2010-01-25
    • Klaus Manfred SteinichPeter Wirth
    • Klaus Manfred SteinichPeter Wirth
    • G01C9/12G01C9/02
    • G01C9/14
    • To be able to measure the angular deviation simultaneously in two directions in space a magneto-sensitive sensor unit on the one hand (that can measure the magnetic flux density in at least two directions in space or orthogonal to each other) and a magnet on the other hand are moved relatively to each other, wherein one of both elements are provided in such a way that it aligns itself directly or indirectly according to the gravity. An optimal measuring result is achieved by guiding one of both elements on a defined, reproducible surface so that the center axis of this element is directed always to the center axis of the other element.
    • 为了能够在空间中的两个方向上同时测量角度偏差,一方面磁敏传感器单元(可以测量空间中的至少两个方向上的磁通密度或彼此正交的磁通密度)和磁体 另一方面相对移动,其中两个元件中的一个以这样的方式设置,使得其根据重力直接或间接地对准它。 通过在限定的可再现表面上引导两个元件中的一个,使得该元件的中心轴总是指向另一元件的中心轴线来实现最佳测量结果。
    • 9. 发明授权
    • Position sensor
    • 位置传感器
    • US07746066B2
    • 2010-06-29
    • US11990733
    • 2006-08-18
    • Klaus Manfred SteinichPeter Wirth
    • Klaus Manfred SteinichPeter Wirth
    • G01B7/14G01R33/02
    • G01D5/485
    • In order to be able to perform a measurement of the run time of an electrical impulse in a position sensor through a single slow timed timing generator, while still capable to achieve a high precision of the measurement result, the entire run time is determined, so that the number of the completely performed system timings is counted as a coarse time value, and the fractions thereof are counted as a fine time value, in which the electrical impulse is started at a fixed point in time of the system timing, e.g. at the beginning of the timing, and the difference value is measured between the end of the coarse time interval and the arrival of the wave as a fine time interval, which is then digitized and computed with the coarse time value.
    • 为了能够通过单个慢时定时发生器对位置传感器中的电脉冲的运行时间进行测量,同时仍然能够实现测量结果的高精度,因此确定整个运行时间,因此 完全执行的系统定时的数量被计算为粗略时间值,并且其分数被计数为精细时间值,其中电脉冲在系统定时的固定时间点开始,例如 并且在粗略时间间隔的结束和波的到达之间测量差值作为精细时间间隔,然后将该数值和粗略时间值进行数字化和计算。
    • 10. 发明申请
    • Device for cutting or welding tubular workpieces or the like
    • 用于切割或焊接管状工件等的装置
    • US20060163317A1
    • 2006-07-27
    • US10542538
    • 2004-07-08
    • Peter Wirth
    • Peter Wirth
    • B23K1/00B23K20/08B23K5/00
    • B23K37/0217B23K2101/06B23Q1/01B23Q1/527
    • The invention relates to a device (1) for cutting or welding tubes (3) or similar workpieces, said device comprising a guiding mechanism which is used to control the cutting or welding torch (17) along a pre-determined line and is provided with a stand-type portal (7). Said portal comprises a through opening (8) into which the workpiece (3) to be machined can be guided in the axial direction. A rotary part (14) can be rotated about the axis of the through opening (8) in a motor-driven manner, guiding a holding arm (16) therewith, which carries the cutting or welding torch (17) on the free end thereof. Said holding arm (16) is fixed to the rotary part (14) and embodied in such a way that the cutting or welding torch (17) moves radially in relation to the axis of the through opening (8) and can be brought into various angular positions in relation to the surface of the workpiece (3). Together with a device (20) which is used to carry out a relative movement between the workpiece (3) and the cutting or welding torch (17) in the axial direction of the through opening (8), the movement of the cutting and welding torch (17) is guided in a controllable manner, whereby it does not only follow a pre-determined line but can also be oriented in various positions in relation to the surface of the workpiece (3) during the entire movement.
    • 本发明涉及一种用于切割或焊接管(3)或类似工件的装置(1),所述装置包括用于沿预定线路控制切割或焊炬(17)的引导机构,并且设有 立式门户(7)。 所述入口包括通孔(8),待加工的工件(3)能够沿其轴向被引导到该通孔中。 旋转部件(14)可以以电动机的方式围绕通孔(8)的轴线旋转,引导其上的保持臂(16),该固定臂(16)在其自由端上承载切割焊枪(17) 。 所述保持臂(16)固定在所述旋转部件(14)上,并以如下方式实现:切割或焊接炬(17)相对于通孔(8)的轴线径向地移动, 相对于工件(3)的表面的角位置。 与用于在通孔(8)的轴向方向上执行工件(3)和切割或焊接炬(17)之间的相对移动的装置(20)一起,切割和焊接的移动 割枪(17)以可控的方式被引导,由此它不仅遵循预定线,而且还可以在整个运动期间相对于工件(3)的表面相对于各种位置定向。