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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Reduction of Undercuts in Fillet Welded Joints Using Taguchi Optimization Method
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Reduction of Undercuts in Fillet Welded Joints Using Taguchi Optimization Method

机译:使用Taguchi优化方法减少角焊缝的咬边

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This project work focuses on the reduction of weld undercuts using the Taguchi method. The phenomenon of weld undercuts constitutes a major problem for the welding industry. When undercuts occur, and particularly when such cuts are deep, it has a negative impact on the weld as it lowers the integrity and quality of the weldment. Therefore, efforts are made globally to reduce the depth of such weld undercuts to the barest minimum. Several optimization methods have been adopted; however, in this study, the Taguchi method is applied. “The smaller the better components” of the Taguchi method is applied. From the results obtained from applying this Taguchi method, the optimum process parameters obtained are A2-B1-C2, which are a voltage of 20 V, a current of 180 A, and a welding speed of 130 mm/s, required to form an undercut of 0.03 mm. Whereas the existing process parameters used by the company are A1-B3-C, which make an undercut to a depth of 0.09 mm. It is concluded that the use of Taguchi method has been able to reduce the depth of undercut as shown in this study. A step-by-step approach is presented in the study.
机译:该项目的工作重点是使用田口方法减少焊接咬边。焊接咬边现象是焊接行业的主要问题。当发生咬边时,尤其是当切口较深时,会对焊缝产生不利影响,因为它会降低焊缝的完整性和质量。因此,全球都在努力将这种焊接底切的深度减小到最小。已经采用了几种优化方法。然而,在这项研究中,采用了田口法。使用田口方法的“成分越小越好”。从使用Taguchi方法获得的结果来看,获得的最佳工艺参数为A2-B1-C2,即20 V的电压,180 A的电流和130 mm / s的焊接速度,以形成铝箔。底切0.03毫米。该公司使用的现有工艺参数是A1-B3-C,可对0.09毫米的深度进行底切。结论是,如本研究所示,使用Taguchi方法已能够减小底切深度。研究中提出了分步实施的方法。

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