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Formability limits by fracture in sheet metal forming

机译:钣金成形中断裂引起的可成形性极限

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The aim of this paper is twofold: first, to revisit the forming limit diagram (FLD) in the light of fundamental concepts of plasticity, damage and ductile fracture mechanics and, second, to propose a new experimental methodology to determine the formability limits by fracture in sheet metal forming. The first objective makes use of the theory of plasticity applied to proportional strain loading paths, under plane stress conditions, to analyze the fracture forming limit line (FFL) and to introduce the shear fracture forming limit line (SFFL). The second objective makes use of single point incremental forming (SPIF), torsion and plane shear tests to determine the experimental values of the in-plane strains at the onset of fracture. Results show that the proposed methodology provides an easy and efficient procedure to characterize the formability limits by fracture in sheet metal forming. In particular, the paper shows that the FFL determined by means of tensile and conventional sheet formability tests is identical to that determined from SPIF tests on conical and pyramidal truncated specimens. The new proposed approach is expected to have impact in the established methodologies to outline the formability limits on the basis of the forming limit curves (FLC's) at the onset of necking.
机译:本文的目的是双重的:首先,根据可塑性,损伤和延性断裂力学的基本概念重新审视成形极限图(FLD);其次,提出一种新的实验方法来确定断裂的可成形性极限在钣金成型中。第一个目标是利用在平面应力条件下应用于比例应变加载路径的可塑性理论来分析裂缝形成极限线(FFL)并引入剪切裂缝形成极限线(SFFL)。第二个目标是利用单点增量成形(SPIF),扭转和平面剪切试验来确定断裂开始时面内应变的实验值。结果表明,所提出的方法提供了一种简单有效的方法,可通过钣金成形中的断裂来表征可成形性极限。尤其是,该论文表明,通过拉伸和常规板材可成形性测试确定的FFL与根据SPIF对圆锥形和金字塔形截断样本的测试确定的FFL相同。预期新提议的方法将对建立的方法产生影响,该方法基于颈缩开始时的成形极限曲线(FLC)来概述成形极限。

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