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    • 72. 发明授权
    • Friction-welding device
    • 摩擦焊接装置
    • US08002162B2
    • 2011-08-23
    • US10538519
    • 2003-11-26
    • Erwin BayerBoris GrohmannFrank HermlePeter Jaenker
    • Erwin BayerBoris GrohmannFrank HermlePeter Jaenker
    • B23K20/12
    • B23K20/1205B23K20/129B23K2101/001
    • A friction-welding device for the integral joining of components, having an oscillator, which generates a periodic movement of a component and a welding surface provided thereon relative to another, static component and a welding surface provided thereon, with directions of movement parallel to the welding surfaces, having a compression device which presses the welding surfaces together, and a cartridge which accommodates the moved component. The oscillator includes two or a greater, even number of piezoactuators, which are arranged in pairs on a line of application and are able to be prestressed with respect to the cartridge from opposite sides under pressure generation and are able to be moved in a synchronous, oscillating manner together therewith and the component.
    • 一种用于整体接合具有振荡器的部件的摩擦焊接装置,其产生相对于另一个静电部件和设置在其上的焊接表面的部件和其上设置的焊接表面的周期性运动,其中移动方向平行于 焊接表面,具有将焊接表面压在一起的压缩装置和容纳移动部件的盒。 振荡器包括两个或更多个偶数个压电致动器,它们在一条应用线上成对布置,并且能够在压力产生下从相对侧相对于盒预加应力,并且能够以同步, 与其一起振荡的方式和组件。
    • 73. 发明申请
    • METHOD FOR MACHINING A METAL COMPONENT
    • 用于加工金属部件的方法
    • US20110186442A1
    • 2011-08-04
    • US12747903
    • 2008-12-05
    • Erwin BayerMartin BussmannAlbin Platz
    • Erwin BayerMartin BussmannAlbin Platz
    • B23H3/00
    • B23H9/10B23H3/00B23K10/00F05B2230/101
    • The invention concerns a method for the machining of a metallic structural component, particularly a structural component of a gas turbine, by means of finishing with a pulsed electrochemical ablation process, whereby the structural component features a pre-contour, to be finished, with different over-measures. The method is characterized by the following processing steps: a) determination of the different over-measures of the pre-contour, and b) bilateral and simultaneous finishing by means of a simultaneous feed of respectively at least one electrode disposed on different sides of the structural component, whereby the feed velocity of the electrode in the area of the largest over-measure of the pre-contour is higher than the feed velocity in the area of the smaller over-measure of the pre-contour.
    • 本发明涉及通过用脉冲电化学消融过程进行精加工来加工金属结构部件,特别是燃气轮机的结构部件的方法,由此结构部件具有预先轮廓,待完成,具有不同的 过度措施。 该方法的特征在于以下处理步骤:a)确定预轮廓的不同过度测量,以及b)通过同时进给分别设置在不同侧面上的至少一个电极的双向和同步精加工 结构部件,由此在预轮廓的最大过度测量区域中电极的进给速度高于预轮廓的较小过度测量区域中的进给速度。