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A Modified Double Multiple Nonlinear Regression Constitutive Equation for Modeling and Prediction of High Temperature Flow Behavior of BFe10-1-2 Alloy

机译:BFe10-1-2合金高温流动行为建模与预测的修正双倍多元非线性回归本构方程

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摘要

Constitutive analysis for hot working of BFe10-1-2 alloy was carried out by using experimental stress-strain data from isothermal hot compression tests, in a wide range of temperature of 1,023 similar to 1,273 K, and strain rate range of 0.001 similar to 10 s(-1). A constitutive equation based on modified double multiple nonlinear regression was proposed considering the independent effects of strain, strain rate, temperature and their interrelation. The predicted flow stress data calculated from the developed equation was compared with the experimental data. Correlation coefficient (R), average absolute relative error (AARE) and relative errors were introduced to verify the validity of the developed constitutive equation. Subsequently, a comparative study was made on the capability of strain-compensated Arrhenius-type constitutive model. The results showed that the developed constitutive equation based on modified double multiple nonlinear regression could predict flow stress of BFe10-1-2 alloy with good correlation and generalization.
机译:利用等温热压缩试验的实验应力-应变数据,在1,023 K(1,273 K)的宽温度范围内,0.001 (10 s(-1)的应变速率范围,对BFe10-1-2合金进行了热加工本构分析。提出了一种考虑应变、应变率、温度及其相互关系的独立效应的修正双倍倍多非线性回归的本构方程。将所制定方程计算出的预测流动应力数据与实验数据进行了比较。引入相关系数(R)、平均绝对相对误差(AARE)和相对误差来验证所建立的本构方程的有效性。随后,对应变补偿Arrhenius型本构模型的能力进行了对比研究。结果表明,基于修正双倍多元非线性回归的本构方程能够预测BFe10-1-2合金的流动应力,具有较好的相关性和推广性。

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