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Laser-assisted asymmetric incremental sheet forming of titanium sheet metal parts

机译:钛金属零件的激光辅助不对称增量板成形

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Asymmetric Incremental Sheet Forming (AISF) is a relatively new manufacturing process. In AISF, a CNC driven forming tool imposes a localized plastic deformation as it moves along the contour of the desired part. Thus, the final shape is obtained by a sequence of localized plastic deformations. AISF is suitable for small series production of sheet metal parts as needed in aeronautical and medical applications. Two main process limits restrict the range of application of AISF in these fields. These are the low geometrical accuracy of parts made from titanium alloys or high strength steels and, for titanium alloys, the limited formability at room temperature. In this paper a new concept for laser-assisted AISF is introduced including the required components. Furthermore, the CAX tools used for programming the NC path for the forming tool and the laser spot are illustrated. First experimental results show that the formability of the alloy Ti Grade 5 (TiAl6V4), which is usually used in aeronautic applications, can be increased.
机译:不对称增量板成型(AISF)是一种相对较新的制造工艺。在AISF中,CNC驱动的成型工具会沿着所需零件的轮廓移动,从而产生局部塑性变形。因此,通过一系列局部塑性变形获得最终形状。 AISF适用于航空和医疗应用中需要的小批量钣金零件生产。两个主要过程限制限制了AISF在这些领域中的应用范围。这是由钛合金或高强度钢制成的零件的几何精度低,并且对于钛合金而言,在室温下的成形性有限。本文介绍了一种激光辅助AISF的新概念,其中包括所需的组件。此外,还显示了用于对成型工具和激光点的NC路径进行编程的CAX工具。最初的实验结果表明,通常用于航空应用的5级钛合金(TiAl6V4)的可成形性可以提高。

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