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STUDY ON ARRHENIUS MODEL OF TC6 TITANIUM ALLOY

机译:TC6钛合金Arrhenius模型研究

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摘要

At the deformation temperature of 1 103-1 283 K, with strain rate of 0,01 - 10 S~(-1), and total strain of 0,7, the deformation behavior of TC6 titanium alloy was studied. The Arrhenius constitutive model is established by using stress -strain data when the strains of TC6 titanium alloy are 0,05, 0,1, 0,2, 0,3, 0,4, 0,5, 0,55, 0,6, and the accuracy of the model was verified. The results show that: the flow stress of TC6 titanium alloy increases as the strain rate increases and decreases as the deformation temperature increases; under different strains, the correlation coefficient (R) between the experimental value and the predicted value is greater than 98 %, and the average relative error (AARE) is lower than 10 %, which suggests that the established model has a higher prediction.
机译:在1 103-1283k的变形温度下,应变速率为0.01-10s〜(-1),并研究了TC6钛合金的变形行为。 当TC6钛合金的菌株为0.05,0.1,0,2,0,3,0,4,0,5,0,55,0时,通过使用应力-Strain数据建立Arrhenius构成型模型。 6,验证了模型的准确性。 结果表明:随着变形温度的增加,随着应变速率的增加,TC6钛合金的流量应变增加; 在不同的菌株下,实验值和预测值之间的相关系数(R)大于98%,并且平均相对误差(AARE)低于10%,这表明建立的模型具有更高的预测。

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