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An overview of stabilizing deformation mechanisms in incremental sheet forming

机译:渐进片材成形中稳定变形机制的概述

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In incremental sheet forming (ISF) strains can be obtained well above the forming limit curve (FLC) that is applicable to common sheet forming operations like deep drawing and stretching. This paper presents an overview of mechanisms that have been suggested to explain the enhanced formability. The difference between fracture limit and necking limit in sheet metal forming is discussed. The necking limit represents a localized geometrical instability. Localized deformation is an essential characteristic of ISF and proposed mechanisms should stabilize the localization before it leads to fracture. In literature six mechanisms are mentioned in relation to ISF: contact stress; bending-under-tension; shear; cyclic straining; geometrical inability to grow and hydrostatic stress. The first three are able to localize deformation and all but the last, are found to be able to postpone unstable growth of a neck. Hydrostatic pressure may influence the final failure, but cannot explain stability above the FLC.
机译:在增量片材成型(ISF)中,可以获得远远高于成型极限曲线(FLC)的应变,而成型极限曲线适用于常见的片材成型操作,如深冲和拉伸。本文概述了已提出的机制,以解释增强的可成形性。讨论了钣金成形中断裂极限和颈缩极限之间的差异。颈缩极限表示局部几何不稳定性。局部变形是ISF的基本特征,建议的机制应在导致断裂之前稳定其位置。文献中提到了与ISF相关的六种机制:接触应力;接触应力;接触应力。拉弯剪循环应变几何上无法生长和静水压力。前三个能够定位变形,除了最后一个以外,其他三个都能够推迟颈部的不稳定生长。静水压力可能会影响最终失效,但不能解释FLC之上的稳定性。

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