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Laser radiation induced thermal effects on the interactions between the tangential airflow and aluminum alloy

机译:激光辐射引起的热效应对切向气流与铝合金之间的相互作用的影响

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The laser radiation induced thermal effects on the interactions between the tangential airflow and aluminum alloy are investigated numerically in this paper. A two dimensional model is developed for analysis of the evolutions of the temperature, stress and displacement of the flow and the aluminum alloy sheet at different flow speed through finite element method (FEM). It is found that in order to reach the same temperature in the aluminum alloy sheet, the input laser fluence needs to increase 4W/cm2 approximately, while the airflow speed increases one meter per second. Furthermore, in the situation of a thin aluminum alloy sheet irradiated by a large laser spot, the laser-induced thermal stress plays a leading role in the rupture of the sheet below the melting temperature. The airflow-induced shear stress and the pressure difference between the front and the rear surfaces of the sheet are minor effects compared to the thermal stress mentioned above. In addition, the bulge of the sheet induced by the laser heating would interact with the tangential airflow and lead to the formation of the downwind vortices, which may lead to a stronger shear stress. A vortex-induced oscillation appears when the Reynolds number of the airflow changes caused by the increase of the bulge height. And this vortex-induced oscillation would contribute to the damage of the aluminum sheet.
机译:数值研究了激光辐射引起的热效应对切向气流与铝合金之间相互作用的影响。建立了二维模型,通过有限元方法(FEM)分析了在不同流速下的流动和铝合金板的温度,应力和位移的演变。已经发现,为了在铝合金板中达到相同的温度,输入激光通量需要大约增加4W / cm2,而气流速度每秒增加一米。此外,在铝合金薄板被大的激光光斑照射的情况下,在低于熔融温度的情况下,激光诱导的热应力在板的破裂中起主要作用。与上述热应力相比,气流引起的剪切应力和片材的前,后表面之间的压力差影响较小。另外,由激光加热引起的板的隆起将与切向气流相互作用并导致顺风涡的形成,这可能导致较强的剪切应力。当气流的雷诺数由凸起高度的增加引起的变化时,会出现涡流引起的振荡。并且这种由涡流引起的振荡将有助于铝板的损坏。

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