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Finite element modelling for temperature, stresses and strains calculation in linear friction welding of TB9 titanium alloy

机译:TB9钛合金线性摩擦焊接温度,应力和应变计算的有限元建模

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In the present paper, finite element method (FEM) simulation of linear friction welding (LFW) TB9 titanium alloy was carried out using ABAQUS software. The constitutive model of TB9 alloy was established using Johnson-Cook constitutive equations, and then a two-dimensional (2D) coupled thermo-mechanical model was established to simulate the temperature, the Mises stress and the equivalent plastic strain fields of TB9 during LFW process. The axial shortening and macroscopic morphology of the linear friction welded joint were obtained by simulation results and verified by experiments. Finally, by consideration of the temperature fields of the simulated welded joint, the authors experimentally investigated the microstructure of the actual welded joint.
机译:本文利用ABAQUS软件进行了线性摩擦焊接(LFW)TB9钛合金的有限元模拟。利用Johnson-Cook本构方程建立TB9合金的本构模型,然后建立二维(2D)耦合热力学模型,以模拟LFW过程中TB9的温度,Mises应力和等效塑性应变场。 。通过仿真结果得到了线性摩擦焊接接头的轴向缩短和宏观形态,并通过实验进行了验证。最后,考虑到模拟焊接接头的温度场,作者通过实验研究了实际焊接接头的微观结构。

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