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Optimization of Friction Stir Welding Tool Advance Speed via Monte-Carlo Simulation of the Friction Stir Welding Process

机译:通过搅拌摩擦焊接过程的蒙特卡罗模拟优化搅拌摩擦焊接工具的前进速度

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摘要

Recognition of the friction stir welding process is growing in the aeronautical and aero-space industries. To make the process more available to the structural fabrication industry (buildings and bridges), being able to model the process to determine the highest speed of advance possible that will not cause unwanted welding defects is desirable. A numerical solution to the transient two-dimensional heat diffusion equation for the friction stir welding process is presented. A non-linear heat generation term based on an arbitrary piecewise linear model of friction as a function of temperature is used. The solution is used to solve for the temperature distribution in the Al 6061-T6 work pieces. The finite difference solution of the non-linear problem is used to perform a Monte-Carlo simulation (MCS). A polynomial response surface (maximum welding temperature as a function of advancing and rotational speed) is constructed from the MCS results. The response surface is used to determine the optimum tool speed of advance and rotational speed. The exterior penalty method is used to find the highest speed of advance and the associated rotational speed of the tool for the FSW process considered. We show that good agreement with experimental optimization work is possible with this simplified model. Using our approach an optimal weld pitch of 0.52 mm/rev is obtained for 3.18 mm thick AA6061-T6 plate. Our method provides an estimate of the optimal welding parameters in less than 30 min of calculation time.
机译:搅拌摩擦焊接工艺在航空和航天工业中的认识正在增长。为了使该过程更可用于结构制造行业(建筑物和桥梁),希望能够对过程进行建模以确定可能不会导致不希望的焊接缺陷的最高推进速度。给出了搅拌摩擦焊接过程二维瞬态热扩散方程的数值解。使用基于摩擦的任意分段线性模型作为温度函数的非线性发热项。该解决方案用于解决Al 6061-T6工件中的温度分布。非线性问题的有限差分解决方案用于执行蒙特卡洛模拟(MCS)。根据MCS结果构造一个多项式响应面(最大焊接温度与前进速度和转速的关系)。响应面用于确定最佳的刀具前进速度和转速。外部惩罚方法用于为所考虑的FSW过程找到最高的进给速度和工具的关联转速。我们证明,使用此简化模型可以与实验优化工作保持良好的一致性。使用我们的方法,对于厚度为3.18 mm的Aa6061-T6钢板,最佳焊接间距为0.52 mm / rev。我们的方法可以在不到30分钟的计算时间内估算出最佳焊接参数。

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