首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical modeling of scanning laser-induced melting, vaporization and resolidification in metals subjected to time-dependent heat flux inputs
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Numerical modeling of scanning laser-induced melting, vaporization and resolidification in metals subjected to time-dependent heat flux inputs

机译:随时间变化的热通量输入,扫描激光诱导金属熔化,汽化和再凝固的数值模型

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摘要

We present a 1-D heat transfer, melting, vaporization and resolidification model describing the interaction of a scanning continuous-wave laser with a metal surface wherein the beam power is rapidly time-varying. The effects of processing parameters on process variables for linear ramp and quadratic heat flux inputs are investigated numerically by varying beam diameters, scan speeds and substrate temperatures. Relations are derived for the times to initiate melting, to initiate vaporization, to reach maximum melting depth, for melting-resolidification, and for maximum melting and vaporization depths. Surface temperatures for both heat flux inputs are compared with approximate closed form solutions.
机译:我们提出了一种一维传热,熔化,汽化和再凝固模型,该模型描述了扫描连续波激光与金属表面的相互作用,其中光束功率迅速随时间变化。通过改变光束直径,扫描速度和基板温度,以数值方式研究了工艺参数对线性斜坡和二次热通量输入的工艺变量的影响。得出以下关系:引发熔化,引发汽化,达到最大熔解深度,熔解再凝固以及最大熔解和汽化深度的时间。将两种热通量输入的表面温度与近似封闭形式的溶液进行比较。

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