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Multi-Objective Process Optimization of Pulsed Plasma Arc Welding SS400 Steel Pipe with Foamed Aluminum Liner

机译:泡沫铝衬板脉冲等离子弧焊SS400钢管的多目标工艺优化

摘要

[[abstract]]Principal component analysis (PCA) coupled with Taguchi methods are employed in the study for developing multiple quality characteristics optimization of pulsed plasma arc welding SS400 steel pipe with foamed aluminum liner (SPFAL). The quality characteristics investigated are the micro-hardness, the compression strength, and the bending strength of the weldments. Eight control factors selected are the tip aperture (Factor A), plasma base current (Factor B), plasma pulse current (Factor C), duty cycle (Factor D), pulse frequency (Factor E), shielding gas (Factor F), plasma gas (Factor G), and welding velocity (Factor H), respectively. It is shown by the experimental results that the optimal parameter combination of the pulsed plasma arc welding process is A1 (tip aperture: Ø1.5mm), B3 (plasma base current: 30A), C3 (plasma pulse current: 100A), D2 (duty cycle: 50%), E3 (pulse frequency: 300Hz), F2 (shielding gas: 14L/min), G3 (plasma gas: 0.4L/min), and H2 (welding velocity: 4RPM). Moreover, it is ascertained from the analysis of variance (ANOVA) results that plasma base current (B), plasma pulse current (C), duty cycle (D), and welding velocity (H) are the most important control factors in the process design, and thus strict control must be applied to them. They account for 75.02% of the total variance. The experimental results likewise show that the best process design could indeed enhance the multiple quality characteristics of the pulsed plasma arc welded SPFAL as 3020kgf of the bending strength, 13650kgf of the compression strength, and 180.4Hv of the hardness, respectively.
机译:[[摘要]]主成分分析(PCA)与田口方法相结合,用于研究带有泡沫铝衬套(SPFAL)的脉冲等离子弧焊接SS400钢管的多种质量特性优化。研究的质量特性是焊件的显微硬度,压缩强度和弯曲强度。选择的八个控制因子是尖端孔径(因子A),等离子基极电流(因子B),等离子脉冲电流(因子C),占空比(因子D),脉冲频率(因子E),保护气体(因子F),等离子气体(因子G)和焊接速度(因子H)。实验结果表明,脉冲等离子弧焊工艺的最佳参数组合为:A1(尖端孔径:Ø1.5mm),B3(等离子体基极电流:30A),C3(等离子体脉冲电流:100A),D2(占空比:50%),E3(脉冲频率:300Hz),F2(保护气体:14L / min),G3(等离子气体:0.4L / min)和H2(焊接速度:4RPM)。此外,从方差分析(ANOVA)结果确定,等离子体基本电流(B),等离子体脉冲电流(C),占空比(D)和焊接速度(H)是该过程中最重要的控制因素设计,因此必须对其进行严格控制。他们占总差异的75.02%。实验结果同样表明,最佳工艺设计确实可以增强脉冲等离子弧焊接SPFAL的多重质量特性,其弯曲强度分别为3020kgf,抗压强度13650kgf和180.4Hv。

著录项

  • 作者

    SHIH Jing-Shiang; 曾義豐;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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