首页> 外文期刊>Journal of Thermal Spray Technology >Microstructures of Metallic NiCrBSi Coatings Manufactured via Hybrid Plasma Spray and In Situ Laser Remelting Process
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Microstructures of Metallic NiCrBSi Coatings Manufactured via Hybrid Plasma Spray and In Situ Laser Remelting Process

机译:等离子喷涂-原位激光重熔工艺制备的NiCrBSi金属涂层的组织

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This paper deals with coating alternatives to hard chromium plating. Thermal spraying is already used in industry, but results are not always satisfactory for reasons of porosity and microstructures. In this study, atmospheric plasma spraying (APS) and in situ laser irradiation by diode laser processes were combined to modify the structural characteristics of thick NiCrBSi alloy layers. The microstructure evolution was studied, and results show that in situ laser remelting induced the growth of a dendritic structure, which strongly decreased the porosity of as-sprayed coatings and increased the adhesion on the substrate. Moreover, no phase transition after laser treatment was observed. Lastly, a mechanical investigation demonstrated that the combination between plasma spray and in situ melting with a diode laser could result in very good mechanical properties. The increase of the laser incident power involved an increase of the mean contact pressure, along with coating hardness. The hybrid process appears to be a possible alternative to hard chromium plating, in order to protect mechanical parts, because of the improved mechanical properties of the NiCrBSi layer.
机译:本文介绍了替代硬铬镀层的涂层方法。热喷涂已经在工业中使用,但是由于孔隙率和微观结构的原因,结果并不总是令人满意的。在这项研究中,结合了大气等离子体喷涂(APS)和通过二极管激光工艺进行的原位激光辐照,以改变NiCrBSi厚合金层的结构特性。研究了显微组织的演变,结果表明,原位激光重熔诱导了树枝状结构的生长,这大大降低了喷涂涂层的孔隙率,并增加了在基材上的附着力。此外,未观察到激光处理后的相变。最后,机械研究表明,等离子喷涂和用二极管激光器原位熔化之间的结合可以产生非常好的机械性能。激光入射功率的增加涉及平均接触压力以及涂层硬度的增加。由于NiCrBSi层的机械性能提高,为了保护机械零件,混合工艺似乎可以替代硬铬镀层。

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