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A coupled model of electromagnetic and heat on nanosecond-laser ablation of impurity-containing aluminum alloy

机译:纳秒激光烧蚀含杂质铝合金电磁和热的耦合模型

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In the emerging field of laser-driven inertial confinement fusion, Joule heating generated via electromagnetic heating of the metal frame is a critical issue. However, there are few reported models explaining thermal damage to the aluminum alloy. The aim of this study was to build a coupled model for electromagnetic radiation and heat conversion of an ultrashort laser pulse on an aluminum alloy based on Ohm's law. Additionally, the application SiO _(2) films on aluminum alloy to improve the laser-induced damage threshold (LIDT) were simulated, and the effects of metal impurities in the aluminum alloy were analyzed. A model examining the relation between electromagnetic radiation and heat for a nanosecond laser irradiating an aluminum alloy was developed using a coupled model equation. The results obtained using the finite difference time domain (FDTD) algorithm can provide a theoretical basis for future improvement of the aluminum alloy LIDT.
机译:在激光驱动的惯性监禁融合的新出现领域中,通过金属框架的电磁加热产生的焦耳加热是一个关键问题。然而,据说模型少数人解释了铝合金的热损坏。该研究的目的是建立基于欧姆法的铝合金上超短激光脉冲的电磁辐射和热转化的耦合模型。另外,模拟了铝合金上的应用SiO_(2)薄膜以改善激光诱导的损伤阈值(LIDT),分析了金属杂质在铝合金中的影响。使用耦合式式方程式开发了一种检查照射铝合金的纳秒激光的电磁辐射与热量之间的模型。使用有限差分时域(FDTD)算法获得的结果可以为未来改进铝合金LIDT提供理论依据。

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