用田口法优化结构钢板气体金属弧焊工艺参数

Q4 Energy
Praveen Math, B. Praveen Kumar
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引用次数: 0

摘要

钢材焊接是当今最具争议的学术课题之一。对保护金属气焊技术对AISI1040钢焊接的影响进行了定性研究(MIG和TIG)。实验布局必须采用田口法。电弧电压、电弧电流、焊接速度、喷嘴工作距离、气体压力等都对焊接质量有影响。底板的厚度和底板的厚度都很重要。基于正交阵列的试验设计用于创建焊接件。为了确定焊接的成功程度,对其进行了一系列测试。方差分析用于评估数据的适用性。将计算结果作为各参数的贡献值,得到故障最小化的最优值。使用角光束测试检查焊接件,并使用超声波测试(UT)评估结果。被测试样中存在缺陷,如LOP、LOF、气孔和裂纹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Gas Metal Arc Welding Process Parameters on Structural Steel Plates by Taguchi Method.
Steel welding is one of the most contentious academic topics nowadays. Shielded metal gas welding techniques’ impact on the welding of AISI1040 steel have been qualitatively investigated (MIG and TIG). The experimental layout must be developed using the Taguchi approach. Arc voltage, arc current, welding speed, nozzle to work distance, and gas pressure have all been found to have an effect on weld quality. The backing plate’s thickness as well as the plate’s thickness both matter. A trial design based on an orthogonal array is used to create weldments. To determine how successfully the weldments were welded, a set of tests are performed on them. ANOVA is used to assess the suitability of the data. The computed result is used as a contribution from each parameter to obtain the optimum values for fault minimization. Weldments are examined using an angle beam test, and the outcomes are assessed using ultrasound testing (UT). The presence of faults in the tested specimens, such as LOP, LOF, Blowholes, and Cracks.
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来源期刊
Journal of Mines, Metals and Fuels
Journal of Mines, Metals and Fuels Energy-Fuel Technology
CiteScore
0.20
自引率
0.00%
发文量
101
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