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Experimental study of hole-flanging by single-stage incremental sheet forming

机译:单级增量板成形翻边的实验研究

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Recent studies show the capability of single-point incremental forming to successfully perform hole flanging operations using multi-stage strategies. However, multi-stage strategies are time-consuming and, according to the geometrical and surface constraints of the part, the number of stages for obtaining a fully functional piece should be minimized. The aim of this work is to investigate the ability of the SPIF process to perform hole-flanges in a single stage, contributing to a better understanding of the formability of the sheet in this demanding situation. To this end, a series of experimental tests with 7075-O aluminium alloy sheets is performed. Three different tool radii are used to study the bending effect on failure. For the higher tool radius, an incipient postponed necking is observed in the wall of the flange, followed by ductile fracture; otherwise, necking is completely inhibited. The physical mechanisms controlling sheet failure during the process are analysed and discussed. Finally, the beneficial effects of the spindle speed on the thickness profile, surface roughness and forming force are also investigated. (C) 2016 Elsevier B.V. All rights reserved.
机译:最近的研究表明,单点增量成形能够使用多阶段策略成功执行孔翻边操作。但是,多阶段策略非常耗时,并且根据零件的几何形状和表面约束,应该最大程度地减少获得完整功能部件的阶段数。这项工作的目的是研究SPIF工艺在单个阶段执行孔法兰的能力,从而有助于更好地了解这种苛刻情况下板材的可成形性。为此,对7075-O铝合金板进行了一系列实验测试。使用三种不同的工具半径来研究弯曲对失效的影响。对于较大的刀具半径,在法兰壁上观察到了开始的延迟缩颈,随后发生了延性断裂。否则,颈缩被完全抑制。分析和讨论了控制过程中板材故障的物理机制。最后,还研究了主轴转速对厚度轮廓,表面粗糙度和成形力的有益影响。 (C)2016 Elsevier B.V.保留所有权利。

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