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首页> 外文期刊>Applied Physics. A, Materials Science & Processing >Convergence of electron kinetic, two-temperature, and one-temperature models for laser short-pulse heating
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Convergence of electron kinetic, two-temperature, and one-temperature models for laser short-pulse heating

机译:激光短脉冲加热的电子动力学,两温和一温模型的收敛

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The laser short-pulse heating of metallic work-pieces initiates the non-equilibrium heating in the surface vicinity of the substrate. The material response to the non-equilibrium heating cannot be predicted accurately by the one-temperature model. Consequently, new models pertinent to laser short-pulse heating are needed. In the present study, laser short-pulse heating of gold, copper, and lead is considered. The material responses to the laser short-pulse due to the electron kinetic theory and the two-temperature and the one-temperature models are examined in detail. The differences between the col-lisional and diffusional heating mechanisms are presented. The conditions for the convergence of conduction mechanisms are discussed. The electron kinetic theory, the two-temperature, and the one-temperature predictions are compared for three substrates. It is found that the electron kinetic theory predictions differ from the predictions of the one-temperature model in the surface vicinity of the substrate during the early heating duration. As the heating progresses, both models predict similar temperature profiles. The electron kinetic theory and the two-temperature model predictions are in good agreement.
机译:金属工件的激光短脉冲加热在基板的表面附近引发了不平衡加热。通过单温度模型无法准确预测材料对非平衡加热的响应。因此,需要与激光短脉冲加热有关的新模型。在本研究中,考虑了金,铜和铅的激光短脉冲加热。根据电子动力学理论以及两温和一温模型,详细研究了材料对激光短脉冲的响应。介绍了碰撞加热和扩散加热机理之间的差异。讨论了传导机制收敛的条件。比较了三种基板的电子动力学理论,两温和单温预测。发现在早期加热期间,电子动力学理论的预测与基板的表面附近的单温度模型的预测不同。随着加热的进行,两个模型都预测出相似的温度曲线。电子动力学理论与两温模型预测吻合良好。

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