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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Effect of Out-of-Plane Stress on the Forming Limit Strain of Sheet Metals
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Effect of Out-of-Plane Stress on the Forming Limit Strain of Sheet Metals

机译:平面外应力对钣金成形极限应变的影响

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摘要

In press forming of sheet metals, the material sheet is usually subjected to very large plastic strain under in-plane stressing. Moreover, the sheet also very often is subjected to out-of-plane compressive force between tools such as the upper and lower dies, the blank holder and the die, and so forth. However, the forming limit strain of sheet metals has been investigated so far only for the plane stress state without the effect of such out-of-plane force both theoretically and experimentally. In this paper, it is clearly demonstrated theoretically that out-of-plane stress (even as small as one tenth of the yield stress) may notably raise the forming limit strain and thus it can be effectively utilized to avoid earlier fracture of the sheet in press forming. The classical Swift's or Hill's criterion of instability, Stoeren & Rice's condition together with the J2G plasticity constitutive equation (previously proposed by one of the authors, Gotoh) for localized necking, and the numerical simulation of plane-stress and plane-strain tension of a sheet by the finite-element method (FEM) are applied here to discuss this problem, all leading us to the same conclusion.
机译:在金属板的压力成型中,材料板通常在面内应力下承受很大的塑性应变。而且,片材也经常在诸如上模具和下模具,坯料保持器和模具等的工具之间经受平面外压缩力。然而,到目前为止,在理论上和实验上,仅在没有平面应力的情况下,仅针对平面应力状态研究了金属板的成形极限应变。在本文中,从理论上清楚地证明,面外应力(甚至小至屈服应力的十分之一)可能会显着提高成形极限应变,因此可以有效地利用它来避免板材过早断裂。冲压成型。经典的Swift或Hill失稳准则,Stoeren&Rice条件以及J2G可塑性本构方程(先前由一位作者Gotoh提出)用于局部颈缩,以及平面应力和平面应变拉力的数值模拟此处采用有限元方法(FEM)讨论此问题,所有这些都使我们得出相同的结论。

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