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Comparison of mechanisms and effects of Nd : YAG and CO2 laser cleaning of titanium alloys

机译:钛合金Nd:YAG和CO2激光清洗机理与效果比较。

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The paper compares laser cleaning trials performed using a Q-switched Nd:YAG laser, lambda = 1.064 mu m and a continuous wave (CW) CO2 laser, lambda = 10.6 mu m, applied to aerospace-grade, contaminated titanium alloys. The mechanisms for cleaning using each laser system are modelled to determine the mode and extent of contaminant removal. The model results are then compared with the surface chemistry and micro-structural results from the cleaning trials performed. The results show the dominant cleaning process for Nd:YAG cleaning to be by evaporation of the contaminant via conduction through surface heating, while for CO2 laser cleaning the small fraction of the beam coupling directly with the contaminant is sufficient for direct heating and selective evaporation. The results for experimental cleaning, electron beam (EB) welding and diffusion bonding align well with the model, particularly when secondary reactions are taken into account. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文比较了使用Q开关Nd:YAG激光器(λ= 1.064微米)和连续波(CW)CO2激光器(λ= 10.6微米)进行的激光清洁试验,该激光器用于航空级污染的钛合金。对使用每个激光系统进行清洁的机制进行建模,以确定污染物去除的方式和程度。然后将模型结果与进行的清洁试验的表面化学和微观结构结果进行比较。结果表明,Nd:YAG清洁的主要清洁过程是通过表面加热传导的污染物蒸发,而对于CO2激光清洁,直接与污染物耦合的小束光束足以直接加热和选择性蒸发。实验清洗,电子束(EB)焊接和扩散键合的结果与模型吻合良好,尤其是考虑到次要反应时。 (c)2005 Elsevier B.V.保留所有权利。

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