A Parametric Study of the Quasi-Steady State Temperature Field by a Moving Heat Source for Surface Treating

N. Bianco, O. Manca
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Abstract

A three dimensional numerical analysis of a solid irradiated by a moving laser heat source in a quasi-steady state is carried out. The thermophysical properties of the material are considered to be temperature dependent. The dependence of the solution on the radiative and convective heat losses, the latter due to an impinging jet on the upper surface, is highlighted; the dependence of the temperature distribution on the Reynolds number of the jet is also presented. Different thicknesses and widths are shown to have discrepant influences on the induced thermal fields for a Gaussian laser source. The parametric analysis shows the thermal profiles to be strongly dependent on the jet Reynolds number. The thermal field is almost symmetric with respect to the spot center for a Peclet number equal to 0.1. The thermal penetration decreases as the Peclet number increases.
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移动热源对表面处理准稳态温度场的参数化研究
对运动激光热源照射固体的准稳态进行了三维数值分析。这种材料的热物理性质被认为与温度有关。强调了解与辐射热损失和对流热损失的关系,后者是由于上表面的撞击射流造成的;给出了温度分布与射流雷诺数的关系。不同的厚度和宽度对高斯激光源的诱导热场有不同的影响。参数分析表明,热廓线与射流雷诺数密切相关。当佩雷数等于0.1时,热场相对于光斑中心几乎是对称的。热侵彻率随佩莱特数的增加而减小。
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