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首页> 外文期刊>Lasers in engineering >Finite Element Analysis of Temperature Distribution During the Laser 265 Heating of a Metal in a Liquid Medium: As Applied to the Specific Case of Laser Electrochemical Etching
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Finite Element Analysis of Temperature Distribution During the Laser 265 Heating of a Metal in a Liquid Medium: As Applied to the Specific Case of Laser Electrochemical Etching

机译:在液态介质中对金属进行激光265加热时温度分布的有限元分析:应用于激光电化学蚀刻的特定情况

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摘要

To understand fully the mechanism of laser electrochemical etching of metal, it is necessary to describe the temperature field induced by the laser heating within an appropriate liquid medium. For solving the complex problem of the laser heating a metal immersed in a liquid, the thermal phenomena adjacent to the metal-liquid interface were numerically investigated by means of irradiating a stainless steel sample with an 808 nm semiconductor laser (high power diode laser (HPDL)) beam immersed in distilled water and an electrolyte solution. A commercial finite element analysis (FEA) code (ABAQUS) was used to directly solve and model the temperature distribution on the surface of the stainless steel during semiconductor laser heating in distilled water. The experimental results confirmed the simulation trend. It was found from both the experimental work and the FEA simulation that the rise in temperature over the entire surface of the stainless steel affected by interaction with the HPDL laser beam was low; however, large temperature gradients in the HPDL-irradiated micro-zone were observed.
机译:为了充分理解金属的激光电化学蚀刻机理,有必要描述在适当的液体介质中由激光加热引起的温度场。为了解决激光加热浸入液体中的金属这一复杂问题,通过用808 nm半导体激光器(高功率二极管激光器(HPDL)辐照不锈钢样品,对与金属-液体界面相邻的热现象进行了数值研究。 ))将光束浸入蒸馏水和电解质溶液中。商业有限元分析(FEA)代码(ABAQUS)用于直接求解和建模在蒸馏水中的半导体激光加热过程中不锈钢表面的温度分布。实验结果证实了模拟趋势。从实验工作和有限元分析中都发现,与HPDL激光束相互作用影响的不锈钢整个表面的温度升高很低。但是,在HPDL辐照的微区中观察到较大的温度梯度。

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