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Estimation and Comparison of Welding Performances using MRA and GMDH in P-GMAW for SS 316L Material

机译:SS 316L材料P-GMAW中MRA和GMDH焊接性能的估算与比较

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The Pulsed Gas Metal Arc Welding (P-GMAW) process is used in high-technology industrial applications and it is one of the most significant arc welding processes. The quality, productivity and cost of welding will be affected by the P-GMAW welding input process parameters and are considered to the most important factors. It is necessary to determine the input and output relationship of the welding processes in order to understand and control the P-GMAW welding process parameters. P-GMAW is widely used process, especially in thin sheet metal industries. It offers an improvement in quality and productivity over regular Gas Metal Arc Welding (GMAW). The process enables stable spray transfer with low mean current and low net heat input. This paper describes the estimation and comparison of welding process parameters viz., current, gas flow rate and wire feed rate on ultimate tensile strength, yield strength, percentage of elongation and hardness. Experiments have been performed based on Taguchi's L_(27) standard orthogonal array. Estimation of welding performances have been carried out using sophisticated mathematical models viz., MRA and GMDH, and, compared. The GMDH algorithm is designed to learn the process by training the algorithm with the experimental data. Three different criterion functions, viz., regularity, unbiased and combined criterions were considered for estimation in GMDH. Different GMDH models can be obtained by varying the percentage of data in the training set and the best model can be selected from these, viz., 50%, 62.5% and 75%. Estimation and comparison of welding performances were carried out using MRA and GMDH techniques.
机译:脉冲气金属弧焊(P-GMAW)工艺用于高科技工业应用,是最重要的电弧焊接工艺之一。焊接的质量,生产率和成本将受到P-GMAW焊接输入过程参数的影响,并被认为是最重要的因素。有必要确定焊接过程的输入和输出关系,以便理解和控制P-GMAW焊接过程参数。 P-GMAW广泛使用工艺,尤其是薄薄的金属板。它提供了常规气体金属弧焊(GMAW)的质量和生产力提高。该过程使得具有低平均电流和低净热量输入的稳定喷射转移。本文介绍了焊接工艺参数Qiz的估计和比较。,电流,气体流速和钢丝进料速率对极限拉伸强度,屈服强度,伸长率百分比和硬度。基于Taguchi的L_(27)标准正交阵列进行了实验。使用复杂的数学模型viz来进行焊接性能的估计。,MRA和GMDH,以及比较。 GMDH算法旨在通过使用实验数据训练算法来学习该过程。三种不同的标准函数,viz,定期,无偏见和组合标准被认为是GMDH的估计。可以通过改变训练集中的数据百分比来获得不同的GMDH模型,最佳型号可以选自这些,即50%,62.5%和75%。使用MRA和GMDH技术进行焊接性能的估计和比较。

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