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A Multi Scale Strategy for Simulation of Microstructural Evolutions in Friction Stir Welding of Duplex Titanium Alloy

机译:双相钛合金摩擦搅拌焊接微观结构演进模拟多规模策略

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摘要

A fully coupled thermo-mechanical model is established to simulate the temperature variations and the material deformations in friction stir welding (FSW) of Ti-6Al-4V. The extracted data are used for further simulation on microstructural evolutions. A multi scale model, which consists of the grain growth model in grain cluster scale and the phase transformation model in one grain scale, is proposed. The nuclei of α and β phases, the recrystallizations and the grain growths are systematically investigated. Comparisons with experimental data and experimental observations can validate the newly proposed microstructural evolution model for Ti-6Al-4V. Results indicate that the volume fractions of α and β phases can be directly determined by the cooling rates in FSW process. With the increase of the rotating speed, the volume fraction of α phase is increased and β phase decreased due to the increase of welding temperature. With the decrease of the translational speed, the volume fraction of α phase gets bigger and β phase smaller. The acicular α grain can be generated on the β grain boundaries and grows along direction on β substrate. The average length of α grain can be increased with longer cooling time and decreased with lower rotating speed or higher translational speed.
机译:建立完全耦合的热机械模型,以模拟Ti-6Al-4V的摩擦搅拌焊接(FSW)中的温度变化和材料变形。提取的数据用于微观结构演进的进一步模拟。提出了一种多尺度模型,其包括谷粒簇尺度的晶粒生长模型以及一种晶粒量表中的相变模型。系统地研究了α和β相,重结晶和晶粒生长的核。实验数据的比较和实验观察可以验证用于TI-6AL-4V的新提出的微观结构演进模型。结果表明,α和β相的体积分数可以通过FSW过程中的冷却速率直接确定。随着旋转速度的增加,由于焊接温度的增加,α相的体积分数增加,β相降低。随着平移速度的降低,α相的体积分数变得更大,β相位越小。可以在β晶界上产生针状α颗粒并在β底物上的方向生长。 α颗粒的平均长度可以随着较长的冷却时间而增加,并以较低的旋转速度或更高的平移速度降低。

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