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首页> 外文期刊>Journal of Materials Processing Technology >Effect of anisotropy on the deep-drawing of mild steel and dual-phase steel tailor-welded blanks
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Effect of anisotropy on the deep-drawing of mild steel and dual-phase steel tailor-welded blanks

机译:各向异性对低碳钢和双相钢拼焊板深冲的影响

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摘要

Tailor-welded blanks made of dissimilar, uniform or non-uniform thickness materials have potential applications in automobile industries. Compared to the base metal, the formability of tailor-welded blank is less due to the presence of weld area and strength mismatch between component blanks. Most sheet metals used to produce tailor-welded blanks have anisotropy induced during pre-processing stage due to large deformation. The orientation of the blank sheet rolling direction and the combination of the blank sheet materials has significant influence on the deformation behaviour. The effect of anisotropy in the tailor-welded blank and the orientation of blank sheets rolling direction during deep-drawing process are investigated in this study. Finite element analysis of deep-drawing mild steel and dual-phase steel tailor-welded blank models was carried out using research purpose FE code DD3IMP; to form a basis for tailor-welded blank design and development for a part. Anisotropy in the blank sheets has moderate influence and its contribution to increased material flow depends on the mechanical properties of the blank sheets. Appropriate combination of the blank sheets rolling direction orientation can significantly improve the formability of the tailor-welded blank in the deep-drawing of square cup.
机译:由厚度不同,均匀或不均匀的材料制成的拼焊毛坯在汽车工业中具有潜在的应用。与母材相比,拼焊板的可成形性由于焊接区域的存在和组件板之间的强度不匹配而降低。用于生产拼焊板的大多数钣金由于变形较大,在预处理阶段会产生各向异性。毛坯片轧制方向的方向以及毛坯片材料的组合对变形行为具有重大影响。本文研究了各向异性对拼焊板坯的影响以及拉深过程中板坯轧制方向的影响。使用研究目的FE代码DD3IMP对深冲低碳钢和双相钢拼焊毛坯模型进行了有限元分析。为零件的定制焊接坯料设计和开发奠定基础。坯料中的各向异性具有中等影响,其对增加材料流动的贡献取决于坯料的机械性能。毛坯片轧制方向定向的适当组合可以显着提高方形杯深冲中拼焊毛坯的可成形性。

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