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Theoretical and numerical investigation of the impact of out-of-plane compressive stress on sheet metal formability

机译:平面外压缩应力影响对金属板材成形性的理论与数值研究

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In modern sheet metal forming processes, such as hydroforming and single point incremental forming, sheet metals are often subjected to out-of-plane compressive stresses in addition to traditional in-plane stresses. However, the effect of these out-of-plane stresses on the onset of plastic strain localization is not considered when classic necking criteria are used, as the latter are generally formulated based on the plane stress assumption. The main objective of the present investigation is to overcome this limitation by developing numerical tools and analytical relations that allow considering the influence of these compressive stresses on the prediction of localized necking. In the different tools developed, and for comparison purposes, finite strain versions of both the deformation theory of plasticity and the rigid-plastic flow theory are used to describe the mechanical behavior of the metal sheet. Furthermore, both the bifurcation theory and the initial imperfection approach are employed to predict the onset of strain localization. Various numerical predictions are reported to illustrate the effect of normal stress on the occurrence of localized necking in sheet metals. From these different results, it is clearly demonstrated that out-of-plane stresses may notably enhance sheet metal formability and, therefore, this property can be effectively used to avoid the initiation of early strain localization. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在现代金属板形成过程中,除了传统的面内应力之外,液体成录和单点增量成型,纸质通常通常经受平面外压缩应力。然而,当使用经典的颈缩标准时,不考虑这些平面外应力对塑性应变定位的发作的影响,因为在经典的缩颈标准时,由于后者通常基于平面应力假设。本研究的主要目的是通过开发数值工具和分析关系来克服这一限制,以考虑这些压缩应力对局部缩颈预测的影响。在开发的不同工具中,并且为了比较目的,可塑性变形理论的有限应变版本和刚性塑料流动理论的用来描述金属板的机械行为。此外,使用分叉理论和初始缺陷方法来预测应变局部化的发作。据报道,据报道了各种数值预测来说明正常应力对薄板金属中局部颈缩的发生的影响。从这些不同的结果,清楚地证明,外平面应力可以特别提高钣金成形性,因此可以有效地使用该性能来避免早应变局部的启动。 (c)2017 Elsevier Ltd.保留所有权利。

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