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首页> 外文期刊>Journal of Advanced Manufacturing Technology >Modelling of Gas Metal Arc Welding Process on Angular Distortion of T Joint
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Modelling of Gas Metal Arc Welding Process on Angular Distortion of T Joint

机译:T形接头角变形的气体保护弧焊工艺建模。

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Gas Metal Arc Welding (GMAW) is one of the widely used joining technologies in metal fabrication. The quality of a joint is greatly influenced by the selection of GMAW process parameter settings. One of the quality issues faced in welding is angular distortion. This research focused on angular distortion issues due to welding that happened in a local car chassis manufacturing company. The distortion resulted in high reject and rework rate. Conventional approach to optimize the welding process parameter in solving this issue has yet to result in significant improvement. The aims of this work is to study the influence of welding speed, welding angle, welding current and the resultant angular distortion using Response Surface Methodology (RSM) approach. The experiment was carried out using robotic welding manipulator AVII V6, OTC DAIHEN. Deposition of fillet weld on T joint arrangement was performed on test piece made of low carbon steel SAPH S45C. The angular distortion was measured using Olympus STM stereo measuring microscope and the data analysis was carried out using Design Expert version 8.0.7. The result indicated that interaction between welding angle and speed is the most significant factors that influence the angular distortion and the relationship between the evaluated input parameters and the angular distortion can be modeled using 2Factor Interaction model.
机译:气体金属电弧焊(GMAW)是金属制造中广泛使用的连接技术之一。接头的质量在很大程度上取决于GMAW工艺参数设置的选择。焊接面临的质量问题之一是角度畸变。这项研究的重点是由于当地汽车底盘制造公司发生的焊接导致的角度变形问题。变形导致高废品率和返工率。解决该问题的优化焊接工艺参数的常规方法尚未产生重大改进。这项工作的目的是使用响应表面方法(RSM)方法研究焊接速度,焊接角度,焊接电流以及由此产生的角度畸变的影响。实验是使用OTC DAIHEN的机器人焊接机械手AVII V6进行的。在低碳钢SAPH S45C制成的试件上进行T型接头布置的角焊缝的沉积。使用Olympus STM立体测量显微镜测量角度畸变,并使用Design Expert版本8.0.7进行数据分析。结果表明,焊接角度和速度之间的相互作用是影响角度畸变的最重要因素,可以使用2Factor相互作用模型对评估的输入参数与角度畸变之间的关系进行建模。

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