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首页> 外文期刊>Journal of Thermal Spray Technology >Pre-/During-/Post-Laser Processes to Enhance the Adhesion and Mechanical Properties of Thermal-Sprayed Coatings with a Reduced Environmental Impact
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Pre-/During-/Post-Laser Processes to Enhance the Adhesion and Mechanical Properties of Thermal-Sprayed Coatings with a Reduced Environmental Impact

机译:激光前/激光中/激光后工艺可增强热喷涂涂料的附着力和机械性能,同时减少对环境的影响

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摘要

Lasers have been used to improve the ultimate performance of thermal spray coatings for specific applications, but the full potential of additional laser treatments must be further explored. Laser treatments (auxiliary processes) can be applied before, during or after thermal spraying (main process), leading to a wide range of coating improvements (microstructure, adhesion, etc.). The aim of this review is to introduce the most significant laser treatments for thermal spray applications. The potential improvements for thermal spray coatings are illustrated by a selection of representative research cases. Laser pretreatments (ablation and texturing) promote coating/substrate adhesion and are suitable to prepare the surface of sensitive substrates such as aluminum, titanium, or magnesium alloys. The use of these techniques, which leads to several benefits such as surfaces free of grit-particle inclusions, directly improves the quality of coatings. Laser treatments applied simultaneously during the spraying process deeply modify the coatings microstructure. These hybrid technologies allow in situ laser melting of coatings, resulting in improved mechanical properties and enhanced wear and corrosion behaviors. Finally, laser posttreatments can improve coatings density and adhesion, and also induce phase transformations and structure refinement. As a summary, laser treatments seem particularly promising for improving the thermal spray coating microstructure and the coating/substrate adhesion. In addition, they offer a more environmentally friendly alternative to the conventional surface preparation treatments.
机译:激光已被用于改善特定应用的热喷涂涂层的最终性能,但是必须进一步探索其他激光处理的全部潜力。可以在热喷涂(主工艺)之前,之中或之后进行激光处理(辅助工艺),从而实现广泛的涂层改进(微观结构,附着力等)。本文的目的是介绍用于热喷涂应用的最重要的激光处理方法。一系列代表性的研究案例说明了热喷涂涂层的潜在改进。激光预处理(烧蚀和纹理化)可提高涂层/基材的附着力,适用于制备敏感基材(如铝,钛或镁合金)的表面。这些技术的使用带来了许多好处,例如表面没有砂粒夹杂物,直接改善了涂层的质量。在喷涂过程中同时进行的激光处理会深刻改变涂层的微观结构。这些混合技术允许原位激光熔化涂层,从而改善机械性能并增强磨损和腐蚀性能。最后,激光后处理可以提高涂层密度和附着力,还可以引起相变和结构改善。综上所述,激光处理对于改善热喷涂涂层的微观结构和涂层/基材的附着力似乎特别有希望。此外,它们提供了比传统表面处理更环保的选择。

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