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Influence of Pre-forming on the Forming Limit Diagram of Aluminum and Steel Sheets

机译:预成型对铝和钢板成形极限图的影响

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This paper presents a method for the experimental determination of forming limit diagrams under non linear strain paths. The method consists in pre-forming the sheets under two different strain conditions: uniaxial and biaxial, and then stretching the samples, cut out of the preformed sheets, using a Nakajima testing setup. The optical deformation measurement system used for the process analysis (ARAMIS, Company GOM) allows to record and to analyze the strain distribution very precisely with respect to both time and space. As a reference also the FLDs of the investigated grades (the deep drawing steel DC04, the dual phase steel DP450 and the aluminum alloy AA5754) in as-received conditions were determined. The results show as expected an influence of the pre-forming conditions on the forming limit of the materials, with an increased formability in the case of biaxial stretching after uniaxial pre-forming and a reduced formability for uniaxial load after biaxial stretching if compared to the case of linear strain paths. These effects can be observed for all the investigated materials and can be also described in terms of a shifting of the FLD, which is related to the art and magnitude of the pre-deformation.
机译:本文提出了一种在非线性应变路径下实验确定极限图的方法。该方法包括在两个不同的应变条件下对板材进行预成型:单轴和双轴,然后拉伸样品,使用中岛测试设备将其切下。用于过程分析的光学变形测量系统(ARAMIS,公司GOM)可以非常精确地记录和分析相对于时间和空间的应变分布。作为参考,还确定了在接收条件下所研究牌号(深冲钢DC04,双相钢DP450和铝合金AA5754)的FLD。结果表明,预成型条件对材料成型极限的影响符合预期,与单轴拉伸相比,在单轴预成型后进行双轴拉伸时可成型性提高,而在双轴拉伸后对单轴载荷的成型性降低。线性应变路径的情况。对于所有研究的材料,都可以观察到这些效果,并且还可以根据FLD的位移来描述,这与预变形的技术和大小有关。

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