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Study of the transient temperature profiles induced by changes of the welding parameters during aluminum two plate arc butt-welding

机译:铝合金两板电弧焊接期间焊接参数变化引起的瞬态温度曲线研究

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The numerical study and calculation of transient temperatures developing during the arc-welding process of 6063 T5 aluminum plates is presented. The mathematical model is based on the differential energy conservation equation. The governing equation is solved via numerical simulation using the finite control volume method to obtain the three dimensional and transient temperature profiles induced during the welding process. The moving heat source is considered as represented by a centered Gaussian-Bell distribution, while the base material is assumed to be homogeneous and isotropic with temperature-dependent thermal properties. Radiation and convection are computed and introduced into the model through the boundary conditions as an empirical temperature-dependent correlation. Phase-change phenomenon is included as a discontinuity in the material specific heat. Computed results show the influence of the variation of the welding parameters such as the arc power and welding speed on the computed transient temperatures, penetration and process efficiency.
机译:提出了6063T5铝板弧焊过程中发育瞬态温度的数值研究和计算。数学模型基于差分节能方程。通过使用有限控制体积法通过数值模拟解决控制方程,以获得焊接过程中引起的三维和瞬态温度曲线。移动热源被认为是由居中的高斯 - 钟分布表示的,而基材被认为是具有温度依赖性热性质的均匀和各向同性。通过边界条件作为经验温度相关的相关性计算辐射和对流并将其引入模型中。将相变现象作为材料特异性热量中的不连续。计算结果显示了焊接参数的变化的影响,例如电弧电源和焊接速度在计算的瞬态温度下,穿透和工艺效率。

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