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首页> 外文期刊>Journal of Materials Engineering and Performance >Taguchi Optimization of Pulsed Current GTA Welding Parameters for Improved Corrosion Resistance of 5083 Aluminum Welds
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Taguchi Optimization of Pulsed Current GTA Welding Parameters for Improved Corrosion Resistance of 5083 Aluminum Welds

机译:Taguchi优化脉冲电流GTA焊接参数以提高5083铝焊缝的耐腐蚀性

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In this study, the Taguchi method was used as a design of experiment (DOE) technique to optimize the pulsed current gas tungsten arc welding (GTAW) parameters for improved pitting corrosion resistance of AA5083-H18 aluminum alloy welds. A L9 (3~4) orthogonal array of the Taguchi design was used, which involves nine experiments for four parameters: peak current (P), base current (B), percent pulse-on time (T), and pulse frequency (F) with three levels was used. Pitting corrosion resistance in 3.5 wt.% NaCl solution was evaluated by anodic polarization tests at room temperature and calculating the width of the passive region (ΔE_(pit)). Analysis of variance (ANOVA) was performed on the measured data and S/N (signal to noise) ratios. The "bigger is better" was selected as the quality characteristic (QC). The optimum conditions were found as 170 A, 85 A, 40%, and 6 Hz for P, B, T, and F factors, respectively. The study showed that the percent pulse-on time has the highest influence on the pitting corrosion resistance (50.48%) followed by pulse frequency (28.62%), peak current (11.05%) and base current (9.86%). The range of optimum ΔE_(pit) at optimum conditions with a confidence level of 90% was predicted to be between 174.81 and 177.74 mV_(SCE). Under optimum conditions, the confirmation test was carried out, and the experimental value of ΔE_(pit) of 176 mV_(SCE) was in agreement with the predicted value from the Taguchi model. In this regard, the model can be effectively used to predict the ΔE_(pit) of pulsed current gas tungsten arc welded joints.
机译:在这项研究中,使用Taguchi方法作为实验设计(DOE)技术来优化脉冲电流气体钨极电弧焊(GTAW)参数,以改善AA5083-H18铝合金焊缝的抗点蚀性能。使用Taguchi设计的L9(3〜4)正交阵列,它涉及9个实验,涉及四个参数:峰值电流(P),基极电流(B),脉冲接通时间百分比(T)和脉冲频率(F )使用三个级别。通过在室温下进行阳极极化测试并计算钝化区域的宽度(ΔE_(pit)),来评估3.5 wt。%NaCl溶液中的抗点蚀性能。对测得的数据和信噪比(S / N)进行方差分析(ANOVA)。选择“越大越好”作为质量特征(QC)。对于P,B,T和F因子,最佳条件分别为170 A,85 A,40%和6 Hz。研究表明,脉冲接通时间百分比对耐点蚀性具有最大影响(50.48%),其次是脉冲频率(28.62%),峰值电流(11.05%)和基极电流(9.86%)。在最佳条件下,置信水平为90%的最佳ΔE_(pit)范围预计在174.81和177.74 mV_(SCE)之间。在最佳条件下,进行了确认测试,ΔE_(pit)的实验值为176 mV_(SCE)与Taguchi模型的预测值一致。在这方面,该模型可以有效地用于预测脉冲电流气体钨极电弧焊接头的ΔE_(pit)。

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