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Optimization of friction stir welding process to maximize tensile strength of AA6061/ZrB2 in-situ composite butt joints

机译:优化摩擦搅拌焊接工艺以最大化AA6061 / ZrB 2 原位复合对接接头的拉伸强度

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摘要

A variety of ceramic particles is added to aluminum alloys to produce aluminum matrix composites (AMCs). Establishing the joining procedure for AMCs is an essential requirement prior to extending their applications. Friction stir welding (FSW) is an emerging solid state welding which eliminates all the defects associated with fusion welding of AMCs. An attempt has been made to friction stir weld AA6061/ ZrB2 in-situ composite. A four factor, five level central composite rotatable design has been used to minimize the number of experiments. The four factors considered are tool rotational speed, welding speed, axial force and weight percentage of ZrB2. A mathematical model has been developed incorporating the FSW process parameters to predict the ultimate tensile strength (UTS) and FS process is optimized using generalized reduced gradient method (GRG) to maximize the UTS. The effect of process parameters on UTS was analyzed. It was observed that the process parameters independently influence the UTS over the entire range studied in this work.
机译:将各种陶瓷颗粒添加到铝合金中以生产铝基复合材料(AMC)。建立AMC的加入程序是扩展其应用程序之前的基本要求。搅拌摩擦焊(FSW)是一种新兴的固态焊接,它消除了与AMC的熔焊相关的所有缺陷。尝试摩擦搅拌焊接AA6061 / ZrB 2 原位复合材料。四因子,五层中央复合材料可旋转设计已被用于最大程度地减少实验次数。考虑的四个因素是工具转速,焊接速度,轴向力和ZrB 2 的重量百分比。已开发出包含FSW工艺参数以预测极限抗拉强度(UTS)的数学模型,并且使用广义降梯度方法(GRG)优化了FS工艺以最大化UTS。分析了工艺参数对UTS的影响。据观察,在这项工作研究的整个范围内,工艺参数独立地影响UTS。

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