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On the topographic and energetic surface modifications induced by laser treatment of metallic substrates before plasma spraying

机译:在等离子喷涂之前,通过激光处理金属基材引起的形貌和高能表面改性

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摘要

Laser surface cleaning has been proven as a very suitable technique for the substitution of some surface preparation steps, such as wet cleaning and grit blasting. The mechanisms involved in short pulsed laser ablation include the absorption of the laser light and conversion into heat via collisional processes. Ejection of matter is achieved either by direct vaporization or hydrodynamical sputtering. This article aims at clarifying the laser-matter interaction mechanisms and effects on metallic materials for different surfaces initial roughness and laser beam energy densities. Both topographic and energetic modifications are investigated by SEM observations, roughness characterization and wettability measurements. Increasing fluences leads to a crater formation, which can cover the whole-irradiated area, but without any important contribution on surface roughness. Observed pattern can be correlated to the melting of the irradiated area and preferential absorption. Improvements of wetting can be observed after laser treatment despite the limitations of the sessile drop technique. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 39]
机译:激光表面清洁已被证明是替代某些表面准备步骤(例如湿法清洁和喷砂处理)的非常合适的技术。短脉冲激光烧蚀所涉及的机制包括吸收激光并通过碰撞过程将其转化为热量。物质的喷射可通过直接汽化或流体动力学溅射来实现。本文旨在阐明不同表面初始粗糙度和激光束能量密度下激光物质的相互作用机理及其对金属材料的影响。通过SEM观察,粗糙度表征和润湿性测量研究了地形和能量变化。通量的增加导致形成火山口,该火山口可以覆盖整个照射区域,但对表面粗糙度没有任何重要影响。观察到的图案可以与照射区域的熔化和优先吸收相关。尽管无柄滴落技术存在局限性,但在激光治疗后仍可观察到润湿性的改善。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:39]

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