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Preface of the 'Symposium on Process Metallurgy Technique Development'

机译:“工艺冶金技术发展研讨会”前言

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A process metallurgy technique consists of the analysis technologies, such as the multi-scale finite element analysis and the experimental ones, and the synthesis technologies, such as the linear and non-linear optimization one and NOGUCHI methos, to design a new material ( sheet and bulk materials, which have features of high strength and formability. Both numerical and experimental approach is accepted to contribute "Development of a new process metallurgy technique." We demonstrated the example a high formability sheet metal generation. At first, our dynamic-explicit crystallographic homogenized elasto/viscoplastic finite element (two-scale FE) code was applied to analyze the asymmetric rolling (ASR) sheet deformation and optimized ASR process to generate a high formability sheet metal by employing NOFUCHI method and the response surface method. A texture evolution of ASR sheet metal under an optimum process condition was compared with the experimental results, and the availability of our design code was confirmed. An initial texture for the symmetrical warm rolling was optimized to generate a better formability and higher strength sheet metal. Consequently, the two-scale FE code combined with the optimization algorithm was verified as a comprehensive tool in the process metallurgy design to predict plastic induced texture evolutions and optimize a rolling process and an initial texture for a high formability sheet generation.
机译:工艺冶金技术由多尺度有限元分析和实验分析等分析技术,以及线性和非线性优化方法一一和野口法等合成技术组成,以设计一种新的材料(薄板)。以及具有高强度和可成型性的散装材料。数值和实验方法均被接受,为“新工艺冶金技术的发展”做出了贡献。我们以高可成型性钣金为例进行了演示。采用晶体学均匀化的弹塑性/粘塑性有限元(二维FE)代码,通过NOFUCHI法和响应面法分析了不对称轧制(ASR)板材的变形并优化了ASR工艺,以生产出高成形性的板材。将最佳工艺条件下的ASR钣金与实验结果进行比较,我们的设计代码已被确认。优化了对称热轧的初始织构,以生成更好的可成型性和更高强度的钣金。因此,两步有限元代码与优化算法相结合,被证明是工艺冶金设计中的综合工具,可预测塑性引起的织构演变,并优化轧制过程和初始织构以生成高可成形性板材。

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