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On the Geometric Accuracy in Shallow Sloped Parts in Single Point Incremental Forming

机译:单点增量成形浅倾斜零件的几何精度

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Incremental sheet forming is a versatile manufacturing technology for small series production. This technique is, however, still challenged by limited accuracy. In incremental forming, each shape comes with its unique complexity and typical geometrical deviations. In this work, the applicability of FE modeling for the prediction of geometric inaccuracies in a shallow wall angle cone has been studied. Typical geometric inaccuracies for shallow sloped parts have been investigated both experimentally and by means of simulation. The evolution of underforming of the cone base as well as overforming of the cone wall during SPIF forming of a truncated cone have been analyzed. Based on the evaluation of the contact zone between the tool and the sheet, it has been concluded that an extended deformation of the sheet outside the tool contact zone is responsible for the overforming of the wall.
机译:增量片材成型是一种用于小批量生产的通用制造技术。然而,该技术仍然受到有限精度的挑战。在渐进成形中,每种形状都有其独特的复杂性和典型的几何偏差。在这项工作中,研究了有限元建模在预测浅壁角锥中几何误差方面的适用性。已经通过实验和模拟的方法研究了浅倾斜零件的典型几何误差。分析了截头圆锥形SPIF成形过程中锥底变形以及锥壁变形的演变过程。基于对工具与板之间的接触区域的评估,得出的结论是,板在工具接触区域之外的扩展变形是壁的过度成型的原因。

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