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Influence of the Surface State on the Adherence of the Coating: Case of an Alumina Coating Plasma Sprayed on SiC Composites

机译:表面状态对涂层粘附的影响:在SiC复合材料上喷涂氧化铝涂层等离子体的情况

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In thermal spraying, adherence between the coating and the substrate appears as the fundamental point. To favor a good interaction between both, it is often necessary to clean and prepare the substrate surface. Conventionally, solvents and sand blasting are applied to remove the contaminants and increase the surface roughness for a mechanical anchorage. However, according to the substrate nature (ceramic) or the substrate morphology, it can be prejudicial to apply a mechanical treatment because of peeling of the surface or a decrease in the global properties. Then, to obtain an appropriate preparation, several techniques can be investigated, such as water jet, ice blasting, and heat treatment; as well, laser ablation can be an interesting technology to prepare the substrate surface. The aim of this work was to study the modifications induced by 10 ns single or cumulative pulses of a Q-switched Nd:YAG near-infrared laser and its influence on the interface adhesion. The case of an alumina coating sprayed on a ceramic matrix composite (CMC) was studied. In these conditions, the laser treatment seems favorable from the adherence viewpoint according to the mechanical effect (induced by a conelike structure) and the chemical effect.
机译:在热喷涂中,涂层和基材之间的粘附表现为基本点。为了有利于两者之间的良好相互作用,通常需要清洁和制备基材表面。通常,施用溶剂和喷砂以除去污染物并增加机械锚固的表面粗糙度。然而,根据底物性质(陶瓷)或底物形态,可以消除由于表面的剥离或降低全球性质而施加机械处理。然后,为了获得适当的制剂,可以研究几种技术,例如水射流,冰爆发和热处理;同样,激光消融可以是制备基材表面的有趣技术。这项工作的目的是研究Q开关Nd:YAG近红外激光器的10 ns单或累积脉冲引起的修饰及其对界面粘附的影响。研究了喷涂在陶瓷基质复合物(CMC)上的氧化铝涂层的情况。在这些条件下,激光治疗根据粘附视点根据机械效果(由锥形结构引起)和化学效果。

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