首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Thermal transport regimes and effects of prandtl number in molten pool transport in laser surface melting processes
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Thermal transport regimes and effects of prandtl number in molten pool transport in laser surface melting processes

机译:激光表面熔化过程中熔池传输中的热传输方式和普朗特数的影响

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摘要

The effects of Prandtl number of the molten metal in weld pool convection are studied based on a systematic scaling analysis. It is demonstrated that for a very small Prandtl number the weld pool morphology is predominantly determined by heat conduction whereas convection has a marginal effect on the molten pool morphology. By contrast, for relatively greater values of Prandtl number the convection pattern in the molten pool significantly affects the pool shape and size. The criteria, which demarcate these two regimes, are estimated by a detailed scaling argument. It is also shown from scaling analysis that turbulence in the molten pool affects momentum and thermal transport differently. Turbulence may also significantly affect the momentum transport of the pool whereas the thermal transport is marginally affected. A regime diagram is constructed based on scaling arguments where the above flow regimes are clearly indicated. In order to validate the scaling arguments on which the regime diagram is based, two three dimensional simulations are carried out for laser welding of iron (for Fe, Prandtl number in order of 0.1) and copper (for Cu, Prandtl number in the order of 0.01). It is found that in the case of Cu, the weld pool obtained from conduction solution is almost the same as the pool morphology obtained using laminar and turbulent transport models. By contrast, in the case of Fe, the weld pools obtained from laminar and turbulent transport models are significantly different from each other, and are also different from the pool obtained from the heat conduction solution.
机译:基于系统的尺度分析,研究了熔池对流中熔融金属的Prandtl数的影响。结果表明,对于非常小的Prandtl数,熔池的形貌主要由热传导决定,而对流对熔池的形貌影响很小。相反,对于相对较大的普朗特数,熔池中的对流模式会显着影响熔池的形状和大小。划定这两种制度的标准是由详细的比例论据估算的。结垢分析还表明,熔池中的湍流对动量和热传递的影响不同。湍流也可能显着影响水池的动量传输,而热传输受到的影响很小。基于比例论点构造状态图,其中清楚指示了上述流动状态。为了验证状态图所基于的缩放参数,对铁(对于Fe,Prandtl数按0.1的顺序)和对铜(对于Cu,Prandtl数按顺序的顺序)进行了二维三维模拟。 0.01)。发现在铜的情况下,从传导溶液获得的焊缝池几乎与使用层流和湍流传输模型获得的熔池形态相同。相比之下,在Fe的情况下,从层流和湍流传输模型获得的焊缝彼此显着不同,并且与从导热溶液获得的焊缝也不同。

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