首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >On the use of effective limit strains to evaluate the forming severity of sheet metal parts after nonlinear loading
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On the use of effective limit strains to evaluate the forming severity of sheet metal parts after nonlinear loading

机译:关于使用有效极限应变评估非线性载荷后钣金零件的成形严重性

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摘要

The conventional forming limit curve (FLC) is significantly strain path-dependent and therefore is not valid for formability evaluation of sheet metal parts that undergo nonlinear loading paths during the forming process. The stress-based forming limit curve (SFLC) is path-independent for all but very large prestrains and is a promising tool for formability evaluation. The SFLC is an ideal failure criterion for virtual forming simulations but it cannot be easily used on the shop floor as there is no straightforward experimental method to measure stresses in stamped parts. This paper presents a theoretical basis for predicting the effective limit strain curve (ELSC) using the Marciniak and Kuczynski (MK) analysis (Int J Mech Sci 9:609-620, 1967, Int J Mech Sci 15:789-805, 1973). Since the in-plane strain components are sufficient to calculate the effective strain, the ELSC can easily be determined from strains measured in the stamping plant, and therefore it is a better alternative to the SFLC for formability evaluation. This model was validated using experimental data for AISI-1012 steel (Molaei 1999) and AA-2008-T4 aluminum alloys Graf and Hosford (Metall Trans 24A:2503-2512, 1993). Predicted results showed that, similar to SFLC, the ELSC remains practically unchanged for a significant range of prestrain values under various bilinear loading paths, but some strain-path dependence can be observed for significant magnitudes of the effective prestrain (ε_e≥0.37 for AISI-1012 steel and ε_e≥0.25 for AA-2008-T4 aluminum).
机译:常规成形极限曲线(FLC)很大程度上取决于应变路径,因此对于在成形过程中经历非线性加载路径的钣金零件的成形性评估无效。基于应力的成形极限曲线(SFLC)除非常大的预应变外,与所有路径无关,并且是评估成形性的有前途的工具。 SFLC是用于虚拟成型仿真的理想破坏准则,但由于没有直接的实验方法可以测量冲压零件中的应力,因此SFLC很难在车间使用。本文提供了使用Marciniak和Kuczynski(MK)分析预测有效极限应变曲线(ELSC)的理论基础(Int J Mech Sci 9:609-620,1967,Int J Mech Sci 15:789-805,1973) 。由于面内应变分量足以计算有效应变,因此可以很容易地从冲压工厂中测得的应变中确定ELSC,因此,它是SFLC更好的可成形性评估替代方案。使用AISI-1012钢(Molaei 1999)以及AA-2008-T4铝合金Graf和Hosford(Metall Trans 24A:2503-2512,1993)的实验数据验证了该模型。预测结果表明,与SFLC相似,在各种双线性载荷路径下,ELSC在很大范围的预应变值上实际上保持不变,但是对于有效的预应变的显着量级,可以观察到一些应变路径依赖性(对于AISI- 1012钢,对于AA-2008-T4铝,ε_e≥0.25)。

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