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Optimization of Friction Stir Weld Joint Quality Using a Meshfree Fully-Coupled Thermo-Mechanics Approach

机译:摩擦搅拌焊接接头质量的优化使用网布完全耦合热力学方法

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摘要

There is currently a need for an efficient numerical optimization strategy for the quality of friction stir welded (FSW) joints. However, due to the computational complexity of the multi-physics problem, process parameter optimization has been a goal that is out of reach of the current state-of-the-art simulation codes. In this work, we describe an advanced meshfree computational framework that can be used to determine numerically optimized process parameters while minimizing defects in the friction stir weld zone. The simulation code, SPHriction-3D, uses an innovative parallelization strategy on the graphics processing unit (GPU). This approach allows determination of optimal parameters faster than is possible with costly laboratory testing. The meshfree strategy is firstly outlined. Then, a novel metric is proposed that automatically evaluates the presence and severity of defects in the weld zone. Next, the code is validated against a set of experimental results for ½” AA6061-T6 butt joint FSW joints. Finally, the code is used to determine the optimal advancing speed and rpm while minimizing defect volume based on the proposed defect metric.
机译:目前需要一种有效的数字优化策略,用于摩擦搅拌焊接(FSW)接头的质量。然而,由于多物理问题的计算复杂性,过程参数优化一直是当前最先进的仿真代码的目标。在这项工作中,我们描述了一种先进的网格免费计算框架,可用于确定数字优化的工艺参数,同时最小化摩擦搅拌焊接区域中的缺陷。模拟代码,Sphriction-3D,在图形处理单元(GPU)上使用创新的并行化策略。这种方法允许在昂贵的实验室测试中快速确定最佳参数。最初概述了网上策略。然后,提出了一种新的度量,其自动评估焊接区中的缺陷的存在和严重程度。接下来,验证代码针对½“AA6061-T6对接联合接头的一组实验结果进行验证。最后,代码用于确定最佳推进速度和RPM,同时基于所提出的缺陷度量最小化缺陷卷。

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