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Constitutive Equations, Processing Maps, and Microstructures of Pb-Mg-Al-B-0.4Y Alloy under Hot Compression

机译:在热压缩下PB-Mg-Al-B-0.4Y合金的本构方程,处理映射和微观结构

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摘要

Hot compression behaviors of Pb-Mg-Al-B-0.4Y alloy under strain rate of 0.001-1?s?1 and temperature of 493-613?K were performed by employing hot compressing tests. According to the experimental stress–strain curves, as the strain increases, the flow stress increases firstly, then reaches the peak stress, and finally decreases to a steady state. Constitutive equations in traditional Arrhenius model and improved Arrhenius model in multi-linear regression were used to predict the flow stress of Pb-Mg-Al-B-0.4Y alloy. The values of MARE and RMSE in the traditional Arrhenius model are 11.780 and 21.169%, respectively, which are larger than 7.227 and 7.447% of the improved Arrhenius model, indicating that the predicted accuracy of the improved Arrhenius model is more accurate. The hot processing maps under the experimental conditions were established. Based on processing maps and microstructure observation, the optimum processing parameters are 0.001?s?1?≤?ε˙documentclass[12pt]{minimal}usepackage{amsmath}usepackage{wasysym}usepackage{amsfonts}usepackage{amssymb}usepackage{amsbsy}usepackage{mathrsfs}usepackage{upgreek}setlength{oddsidemargin}{-69pt}egin{document}$$dot{arepsilon }$$end{document}?≤?0.01?s?1 and 587?K?≤?T?≤?613?K.
机译:PB-Mg-Al-B-0.4Y合金的热压缩行为在0.001-1Ω·s≤1.1.1和493-613Ω·k的温度下进行,采用热压缩试验进行。根据实验性应力 - 应变曲线,随着应变增加,流量应力首先增加,然后达到峰值应力,并且最终降低到稳定状态。多线性回归中的传统阿伦乌斯模型中的构成方程和改进的arrhenius模型预测Pb-mg-al-b-0.4y合金的流量应力。传统的Arhenius模型中的母马和RMSE的价值分别为11.780和21.169%,分别大于7.227和7.447%的改进的Arhenius模型,表明改进的Arhenius模型的预测精度更准确。建立了实验条件下的热处理图。基于处理地图和微观结构观察,最佳处理参数为0.001Ω·s?1?≤≤εό DocumentClass [12pt] {minimal} usepackage {ammath} usepackage {kyysym} usepackage {amsfonts} usepackage {amssymb} usepackage {amsbsy} usepackage {mathrsfs} usepackage {supmeek} setLength { oddsidemargin} { - 69pt} begin {document} $$ dot { varepsilon} $$ end {document}?≤≤0.01≤s≤1和587?k?≤≤≤≤≤≤≤≤x≤x。

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