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首页> 外文期刊>Journal of Manufacturing Processes >Mathematical modeling of effect of polarity on weld bead geometry in submerged arc welding
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Mathematical modeling of effect of polarity on weld bead geometry in submerged arc welding

机译:埋弧焊中极性对焊缝几何形状影响的数学模型

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摘要

Weld bead geometry parameters are significantly affected by polarity as it affects the extent of heat generated at electrode wire and work in the welding process which further influences the mechanical and metallurgical properties. Essential requirement of a welding process is to obtain a weld joint with desired weld bead parameters and mechanical properties. In present study mathematical models have been developed to evaluate the effect of polarity on weld bead geometry in submerged arc welding. Response surface methodology has been used for predicting the critical dimension of weld bead geometry and shape relationships at straight polarity and reverse polarity. The developed models have been checked for adequacy and significance by F-test and t-test. Effect of polarity on the response parameters are presented graphically which not only leads to prediction of weld bead geometry and shape relationships but also assisted to achieve the control over weld quality by selecting the appropriate process parameters.
机译:焊缝几何参数受极性的影响很大,因为它会影响电极丝上产生的热量以及在焊接过程中产生的热量,从而进一步影响机械和冶金性能。焊接过程的基本要求是获得具有所需焊缝参数和机械性能的焊接接头。在当前的研究中,已经开发出数学模型来评估极性对埋弧焊中焊缝几何形状的影响。响应面方法已用于预测焊缝几何形状的临界尺寸以及在正极性和反极性时的形状关系。通过F检验和t检验检查了开发模型的充分性和重要性。以图形方式显示了极性对响应参数的影响,这不仅可以预测焊缝的几何形状和形状关系,而且还可以通过选择适当的工艺参数来帮助实现对焊接质量的控制。

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