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Investigations of the effect of strain path changes on forming limit curves using an in-plane biaxial tensile test

机译:使用面内双轴拉伸试验研究应变路径变化对成形极限曲线的影响

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摘要

Optimization of sheet metal forming processes requires a very good knowledge of material forming ability, more especially for aluminum alloys which generally exhibit a poor formability at ambient temperature. During the forming of industrial parts, very complex strain paths are usually observed and can affect the formability of the sheet. In this work, in order to investigate strain path effects on formability, an innovative one-step procedure is proposed to control the strain path changes with a single test, without unloading. The test is based on the use of a cruciform shape loaded with a planar biaxial tensile device. Strain path is controlled by the displacements in the two main directions of the cruciform specimen. For a given non-linear strain path type, experimental forming limit points are greatly influenced by the level of prestrain which can either improve or reduce formability. The same tendency is observed when using a predictive tool based on a finite element model of the same cruciform shape and a rather good correlation is observed between experimental and numerical results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:钣金成形工艺的优化需要非常了解材料的成形能力,尤其是对于在环境温度下通常表现出较差的成形性的铝合金。在工业零件的成型过程中,通常会观察到非常复杂的应变路径,并且会影响板材的可成型性。在这项工作中,为了研究应变路径对可成形性的影响,提出了一种创新的单步程序,可以通过一次测试来控制应变路径的变化,而无需卸载。该测试基于使用装有平面双轴拉伸装置的十字形形状。应变路径由十字形试样在两个主要方向上的位移控制。对于给定的非线性应变路径类型,实验成形极限点受预应变水平的影响很大,预应变水平可以提高或降低可成形性。当使用基于相同十字形形状的有限元模型的预测工具时,会观察到相同的趋势,并且在实验和数值结果之间观察到相当好的相关性。 (C)2015 Elsevier Ltd.保留所有权利。

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