Novel Optimization of Friction Welding Parameters to Improve Mechanical Properties

P. P, D. Jebakani, Krishnaveni A
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Abstract

This paper explores the use of multi-criteria optimization to find better combination of parameters of friction welding process to provide better mechanical properties at the welded joints. This is achieved by developing a new hybrid methodology by integrating TOPSIS method and entropy measurement. TOPSIS method is used to find the order preference by similarity to ideal solution. Entropy method is used to find the weights of output responses. The mechanical strength of friction welded joints depends on several process parameters namely size of work piece, spindle speed, friction time, forging time, friction pressure, etc., Better combination of process parameters leads to quality joint, reduction of cost and wastages. Hybrid TOPSIS method was proposed to predict parameters that resulting superior mechanical properties. Specimen were produced with the predicted parameters and tested to confirm the superiority. Taguchi’s L9 orthogonal array is selected for conducting experiments. It is observed that friction time and spindle speed are the foremost factors but friction pressure influences less on mechanical strength.
新型摩擦焊接参数优化提高力学性能
本文探讨了采用多准则优化方法寻找摩擦焊接工艺参数的更好组合,以获得更好的焊接接头力学性能。这是通过将TOPSIS方法与熵测量相结合,开发一种新的混合方法来实现的。采用TOPSIS方法,通过与理想解的相似性来寻找排序偏好。采用熵值法求输出响应的权值。摩擦焊接接头的机械强度取决于几个工艺参数,即工件尺寸、主轴转速、摩擦时间、锻造时间、摩擦压力等,较好的工艺参数组合可以提高焊接接头的质量,降低成本和损耗。提出了混合TOPSIS方法来预测产生优异力学性能的参数。根据预测参数制作了试样,并进行了试验,验证了该方法的优越性。选择田口L9正交阵进行实验。结果表明,摩擦时间和主轴转速是影响机械强度的主要因素,而摩擦压力对机械强度的影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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