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首页> 外文期刊>International Journal of Applied Engineering Research and Development >OPTIMIZATION & PREDICTION OF WELDING PARAMETERS AND BEAD GEOMETRY IN SUBMERGED ARC WELDING
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OPTIMIZATION & PREDICTION OF WELDING PARAMETERS AND BEAD GEOMETRY IN SUBMERGED ARC WELDING

机译:埋弧焊的焊接参数和焊缝几何形状的优化与预测

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摘要

In submerged arc welding (SAW), weld quality is greatly affected by the weld parameters such as welding current, welding speed; arc voltage and electrode stickout since they are closely related to the geometry of weld bead, a relationship which is thought to be complicated because of the non-linear characteristics. However, trial-and-error methods to determine optimal conditions incur considerable time and cost. In order to overcome these problems, non-traditional methods have been suggested. Bead-on-plate welds were carried out on mild steel plates using semi automatic SAW machine. Data were collected as per Taguchi's Design of Experiments and analysis of variance(ANOVA) was carried to establish input-output relationships of the process. By this relationship, an attempt was made to minimize weld bead width, a good indicator of bead geometry, using optimization procedures based on the ANN models to determine optimal weld parameters. The optimized values obtained from these techniques were compared with experimental results and presented.
机译:在埋弧焊(SAW)中,焊接质量受焊接参数(例如焊接电流,焊接速度)的影响很大。因为它们与焊缝的几何形状密切相关,所以电弧电压和电极的粘附性很强,由于非线性特性,这种关系被认为是复杂的。但是,确定最佳条件的反复试验方法会花费大量时间和成本。为了克服这些问题,已经提出了非传统方法。使用半自动SAW机在低碳钢板上进行珠焊。根据Taguchi的实验设计收集数据,并进行方差分析(ANOVA)以建立该过程的输入输出关系。通过这种关系,尝试使用基于ANN模型的优化程序来确定最佳焊缝参数,以最小化焊缝宽度(焊缝几何形状的良好指标)。从这些技术获得的优化值与实验结果进行比较并给出。

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