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Constitutive Equations for Describing the Hot Compressed Behavior of TC4–DT Titanium Alloy

机译:用于描述TC4-DT钛合金热压缩行为的组成方程

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Isothermal hot compression tests of TC4–DT titanium alloy were performed under temperatures of 1203–1293 K and strain rates of 0.001–10 s ?1 . The purpose of this study is to develop a new high-precision modified constitutive model that can describe the deformation behavior of TC4–DT titanium alloy. Both the modified strain-compensated Arrhenius-type equation and the modified Hensel–Spittel equation were established by revising the strain rate. The parameters in the above two modified constitutive equation were solved by combining regression analysis with iterative methods, which was used instead on the traditional linear regression methods. In addition, both the original strain-compensated Arrhenius-type equation and Hensel–Spittel equation were established to compare with the new modified constitutive equations. A comparison of the predicted values based on the four constitutive equations was performed via relative error, average absolute relative error (AARE) and the correlation coefficient (R). These results show the modified Arrhenius-type equation and the modified Hensel–Spittel equation is more accurate and efficient with a similar prediction accuracy. The AARE-value of the two modified constitutive equation is relatively low under various strain rates and their fluctuation is small as the strain rate changes.
机译:TC4-DT钛合金的等温热压缩试验在1203-1293K和0.001-10s的应变率的温度下进行。本研究的目的是开发一种新的高精度改性本构模型,可以描述TC4-DT钛合金的变形行为。通过修改应变速率建立改进的应变补偿Arhenius型方程和改进的Hensel-Spittel方程。通过将回归分析与迭代方法组合来解决了上述两个修改的本构体方程中的参数,这是在传统的线性回归方法上使用的。此外,建立了原始应变补偿的Arhenius型方程和Hensel-Spittel方程来与新的修改本构方程进行比较。通过相对误差,平均绝对相对误差(AARE)和相关系数(R)来执行基于四个组成型方程的预测值的比较。这些结果显示了改进的Arrhenius型方程,并且改进的Hensel-Spittel方程具有类似的预测精度更准确且有效。在各种应变速率下,两个改进的本构体方程的AARA值相对较低,并且它们的波动小,因为应变速率变化。

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