style='font-family:Verdana;'>θ style='font-family:Verdana;'> created'/> A Finite Element Model to Investigate the Impact of Torch Angle on an Autogenous TIG Welding Process
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A Finite Element Model to Investigate the Impact of Torch Angle on an Autogenous TIG Welding Process

机译:一种有限元模型,以研究割炬角对自动TIG焊接过程的影响

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A numerical modelling activity was completed to explore the impact that the angle style="font-family:Verdana;">θ style="font-family:Verdana;"> created by the torch from the vertical had upon the thermal and mechanical predictions for a T-joint autogenous TIG welded component. A parametric system of 9 models was set-up to simulate the effects of varying the angle style="font-family:Verdana;">θ style="font-family:Verdana;"> by a small, potentially unnoticeable amount to a manual operator. The variations ranged from -8 style="white-space:nowrap;">° to +8 style="white-space:nowrap;">° away from a nominal default position of torch. The numerical models were created and computed using specialist welding simulation software Sysweld, and pre/post-processing software Visual Environment (both owned by ESI Group). The resulting weakly-coupled thermal and mechanical analyses illustrated a small deflection of angle that the weld bead was penetrating in to the T-joint, consistent with the variation in torch angle, and a negligible variation in peak temperature of 1.8%. The mechanical results however demonstrated a more significant output, namely that the distortion observed upon the vertical plate within the T-joint was predicted to increase by over 50% as result of this small shift in the welding torch angle. However, other mechanical predictions for plastic strain, Von Mises residual stress and distortion on the horizontal plate, were all suggesting only very minor sensitivity (typically less than 5%) to the torch angle variation. However, the predictions for vertical plate distortions demonstrate how difficult a manual TIG operation can be to perform with sufficient process control and repeatability, due to the significant impact that human operator-induced variation has upon some of the mechanical outputs.
机译:完成了数值建模活动以探索角度 style =“font-family:verdana;”>θ <跨度样式=“font-family:verdana;”>由垂直武器创建的火炬创建,对T关节自动tig焊接组件的热电和机械预测。9型号的参数系统是设置以模拟变化角度 style =“font-family:verdana;”>θ>θ style =“font-family:verdana;”>对手动操作员的小,潜在不明显的金额。变型范围从-8 style =“白色空间:nowrap;”>°到+8 style =“白色空间:nowrap;”>°远离名义默认值火炬的位置。使用专业焊接仿真软件Sysweld和Pre /后处理软件视觉环境(既由ESI组拥有)创建和计算数值模型。由此产生的弱耦合热和机械分析示出了焊珠渗透到T关节的角度小的偏转,与焊炬角度的变化一致,峰值温度的可忽略变化为1.8%。然而,机械结果证明了更明显的输出,即在T关节内观察到的垂直板观察到的失真,因为在焊炬角度的这种小偏移的结果时,在焊炬角度的情况下增加超过50%。然而,塑料应变的其他机械预测,von在水平板上的残余应力和变形,均表明仅对割炬角度变化非常轻微的敏感性(通常小于5%)。然而,垂直板扭曲的预测表明,由于人体操作员引起的变化对某些机械输出的显着影响,手动TIG操作可以具有足够的过程控制和可重复性,表现出手动TIG操作的难度。

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