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Sheet necking prediction in forming limit diagrams with the anisotropy influence incorporation

机译:纸张缩放预测与各向异性影响掺入的限制图

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A well-known method of materials formability description is the Forming Limit Diagram (FLD). In FLDs/FLC (Forming Limit Curve) a plot of major and minor principal strains in the plane of deformed sheet where necking takes place is represented. The current paper is dealing with anisotropy influence on FLC. This effect is going to be studied with the use of mild steel DC01. Hills anisotropic criterion is considered here and for its application experimental investigation has to be carried out in order to provide input data for the model applied. Uniaxial tensile tests were performed for basic characterisation of sheet samples with the use of contact-less measuring devices. In order to assess the anisotropy experimentally, the specimens were extracted and tested in Rolling Direction (RD), Transverse Direction (TD) and 45° Skew Direction (SD) for the Lankford ratios determination. Detailed stress state description of the material investigated was carried out with the use the stress triaxiality and Lode angle parameter. Therefore, transformations from conventional space into stress state provide a profound insight into the necking phenomenon. According to the experimental and numerical results it was found that it is necessary to take anisotropy effects into account for the material investigated.
机译:众所周知的材料方法描述是形成限位图(FLD)。在FLD / FLC(形成极限曲线)中,表示缩颈的变形片材平面中的主要和次要主体株的曲线图。目前的论文正在处理对FLC的各向异性影响。使用轻度钢DC01将研究这种效果。这里考虑了丘陵各向异性标准,并且对于其应用实验研究必须进行,以便为所应用的模型提供输入数据。使用接触的测量装置进行单轴拉伸试验,用于纸张样品的基本表征。为了通过实验评估各向异性,为了Lankford比率,在滚动方向(Rd),横向(Td)和45°偏斜方向(SD)中提取并测试样品。详细的应力状态描述所研究的材料进行了使用应力三轴性和透泽角参数进行。因此,传统空间转化为应力状态为颈颈现象提供了深刻的洞察力。根据实验性和数值结果,发现有必要考虑到所研究的材料的各向异性效应。

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