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Material flow control in plunge micro rotary swaging

机译:切入式微型旋锻中的物料流控制

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In rotary swaging, the material flow is not fully controlled by closure of the forming dies. This is especially noticeable in plunge rotary swaging of rod, where the workpiece is positioned into the forming zone und processed locally. As result, an uncontrolled elongation of the workpiece in axial direction takes place and an axial position shift of the workpiece relative to the dies occurs. This is a special challenge in production of linked micro parts, where single parts are interconnected in order to enable the handling as a strip and thereby a roll-to-roll production. The axial shift influences not only the subsequent positioning of neighbouring parts, but also the final geometry of the currently processed part. The presented investigation analyses the material flow during plunge micro rotary swaging on basis of in-process measurements of the workpiece shift on both sides of the forming zone as well as with the help of contour measurements of the processed parts. It is shown that the measured shift is strongly influenced by the workpiece clamping and fixation and that it can be controlled by applying low axial forces to the workpiece on one or both sides of the forming zone. Further, the geometry of the workpiece can be affected by these measures.
机译:在旋转型锻中,材料的流动不能完全通过关闭成型模具来控制。这在杆的插入式旋转型锻中尤为明显,在这种情况下,工件被放入成型区域并进行了局部加工。结果,发生了工件在轴向上的不受控制的伸长,并且发生了工件相对于模具的轴向位置偏移。这在链接的微型零件的生产中是一个特殊的挑战,在该零件中,单个零件相互连接以便能够作为带材进行处理,从而进行卷对卷生产。轴向偏移不仅影响相邻零件的后续定位,还影响当前加工零件的最终几何形状。所进行的研究基于在成形区域两侧的工件偏移的过程中测量以及在加工零件的轮廓测量的基础上,对切入式微旋转锻造过程中的材料流进行了分析。结果表明,测得的位移受工件夹紧和固定的强烈影响,并且可以通过在成形区域的一侧或两侧对工件施加较小的轴向力来控制它。此外,工件的几何形状会受到这些措施的影响。

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