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Laser heating and ablation at high repetition rate in thermal confinement regime

机译:在热限制条件下以高重复频率进行激光加热和烧蚀

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Laser heating and ablation of materials with low absorption and thermal conductivity (paint and cement) were under experimental and theoretical investigations. The experiments were made with a high repetition rate Q-switched Nd:YAG laser (10 kHz, 90 ns pulse duration and lambda = 532 nm). High repetition rate laser heating resulted in pulse per pulse heat accumulation. A theoretical model of laser heating was developed and demonstrated a good agreement between the experimental temperatures measured with the infrared pyrometer and the calculated ones. With the fixed wavelength and laser pulse duration, the ablation threshold fluence of paint was found to depend on the repetition rate and the number of applied pulses. With a high repetition rate, the threshold fluence decreased significantly when the number of applied pulses was increasing. The experimentally obtained thresholds were well described by the developed theoretical model. Some specific features of paint heating and ablation with high repetition rate lasers are discussed. (c) 2005 Elsevier B.V. All rights reserved.
机译:对具有低吸收率和热导率的材料(油漆和水泥)进行激光加热和烧蚀正在进行实验和理论研究。实验是使用高重复频率的Q开关Nd:YAG激光器(10 kHz,90 ns脉冲持续时间和λ= 532 nm)进行的。高重复频率的激光加热导致每个脉冲的热量累积。建立了激光加热的理论模型,并证明了用红外高温计测量的实验温度与计算的温度之间的良好一致性。在固定的波长和激光脉冲持续时间的情况下,发现涂料的烧蚀阈值通量取决于重复率和施加的脉冲数。在高重复频率下,当施加的脉冲数增加时,阈值注量会显着降低。实验得出的阈值已被发达的理论模型很好地描述了。讨论了使用高重复频率激光器进行涂料加热和烧蚀的一些特定功能。 (c)2005 Elsevier B.V.保留所有权利。

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