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Revisiting single-point incremental forming and formability/failure diagrams by means of finite elements and experimentation

机译:通过有限元和实验再探单点增量成形和可成形性/故障图

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In a previously published work, the current authors presented an analytical framework, built upon the combined utilization of membrane analysis and ductile damage mechanics, that is capable of modelling the fundamentals of single-point incremental forming (SPIF) of metallic sheets. The analytical framework accounts for the influence of major process parameters and their mutual interaction to be studied both qualitatively and quantitatively. It enables the conclusion to be drawn that the probable mode of material failure in SPIF is consistent with stretching, rather than shearing being the governing mode of deformation. The study of the morphology of the cracks combined with the experimentally observed suppression of neck formation enabled the authors to conclude that traditional forming limit curves are inapplicable for describing failure. Instead, fracture forming limit curves should be employed to evaluate the overall formability of the process. The aim of this paper is twofold: (a) to compare the mechanics of deformation of SPIF, namely the distribution of stresses and strains derived from the analytical framework with numerical estimates provided by finite element modelling; and (b) to compare the forming limits determined by the analytical framework with experimental values. It is shown that agreement between analytical, finite element, and experimental results is good, implying that the previously proposed analytical framework can be utilized to explain the mechanics of deformation and the forming limits of SPIF.
机译:在先前发表的工作中,当前作者提出了一个基于膜分析和延性损伤力学的综合利用的分析框架,该框架能够对金属薄板的单点增量成形(SPIF)的基本原理进行建模。该分析框架考虑了主要工艺参数及其相互影响的影响,需要对其进行定性和定量研究。它可以得出结论:SPIF中材料破坏的可能模式与拉伸一致,而不是剪切是变形的主导模式。通过对裂纹的形态进行研究并结合实验观察到的对颈部形成的抑制,作者可以得出结论,传统的成型极限曲线不适用于描述破坏。取而代之的是,应采用裂缝形成极限曲线来评估工艺的整体可成形性。本文的目的是双重的:(a)比较SPIF的变形机理,即分析框架产生的应力和应变分布与有限元建模提供的数值估计。 (b)将分析框架确定的成形极限与实验值进行比较。结果表明,解析,有限元和实验结果之间的一致性很好,这表明先前提出的解析框架可以用来解释变形的力学和SPIF的形成极限。

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