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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Formulation of surface temperature for laser evaporative pulse heating: the time exponentially decaying pulse case
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Formulation of surface temperature for laser evaporative pulse heating: the time exponentially decaying pulse case

机译:用于激光蒸发脉冲加热的表面温度的公式化:时间呈指数衰减的脉冲情况

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摘要

Modelling of the laser heating process is fruitful, since it enhances the understanding of the physical processes involved and minimizes the experimental cost. In the present study, an analytical solution for the temperature distribution inside the solid substrate is obtained using a Laplace transform method. A time exponentially decaying laser pulse profile is introduced in the analysis. The phase change process and recession velocity are accommodated to account for the evaporation at the surface. The closed-form solution obtained is compared with the analytical solution obtained previously for a conduction limited heating case. It is found that the closed-form solution obtained from the present study reduces to a previously obtained analytical solution when the pulse parameter, β{sup}*, is set to zero in the closed-form solution. Temperature predictions from simulations agree well with the results obtained from the closed-form solution.
机译:激光加热过程的建模是富有成果的,因为它增强了对所涉及的物理过程的理解,并最大程度地降低了实验成本。在本研究中,使用拉普拉斯变换方法获得了固体基质内部温度分布的分析解决方案。在分析中引入了时间指数衰减的激光脉冲轮廓。适应相变过程和后退速度以解决表面的蒸发。将获得的封闭溶液与先前在传导受限的加热情况下获得的分析溶液进行比较。发现当脉冲参数β{sup} *在封闭形式的溶液中设置为零时,从本研究中获得的封闭形式的溶液减少为先前获得的分析溶液。模拟的温度预测与从封闭形式的解决方案获得的结果非常吻合。

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