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Finite element modelling of the inertia friction welding process between dissimilar materials

机译:不同材料惯性摩擦焊接过程的有限元建模

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The present study concerns the development and experimental validation of a finite element code to simulate the inertia friction welding (IFW) process. The mechanical equations take into account, among others, the physics in terms of inertia, forces and friction. They are solved for velocity and pressure through the P1~+/P1 formulation. Due to the rotational movement of the workpiece, a third nodal unknown V_θ, the rotational velocity, is added to the variables V_r and V_z. The thermal calculation influences the rheological and tribological parameters and is coupled to the mechanical solution. Powerful contact algorithm and automatic remeshing are implemented to model the flash formation at the joint interface, its self-contact with the workpiece and the multi-body contact between dissimilar materials. A novel formulation for the friction law is implemented to suitably represent the physical phenomena in IFW. A residual stress analysis is carried out.
机译:本研究涉及有限元代码的开发和实验验证,以模拟惯性摩擦焊接(IFW)过程。机械方程在惯性,力和摩擦方面考虑了物理学。它们通过P1〜+ / P1配方解决了速度和压力。由于工件的旋转运动,第三个节点未知V_θ,旋转速度被添加到变量V_R和V_Z。热量计算影响流变和摩擦学参数,并耦合到机械溶液。强大的接触算法和自动倒闭被实施为在联合界面进行闪光形成,其与工件的自接触和不同材料之间的多体接触。对摩擦法进行了一种新型制剂,以适当地代表IFW中的物理现象。进行残余应力分析。

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