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首页> 外文期刊>International Journal of Microstructure and Materials Properties >Laser melt injection of ceramic particles in metals: processing, microstructure and properties
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Laser melt injection of ceramic particles in metals: processing, microstructure and properties

机译:激光熔融注入金属中的陶瓷颗粒:加工,显微组织和性能

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The objective of this paper is to present an overview of the possibilities of the laser melt injection (LMI) methodology to enhance the surface of light-weighted metals by adding hard ceramic particles in the top layer, with the aim to enhance the wear resistance and to increase the hardness. In particular, the LMI process and the resulted microstructures are exemplified on two material systems, i.e., SiC particles in Al and WC particles in Ti-6A1-4V. The microstructural response on loading of both systems is studied by in situ deformation tests and the microstructure is analysed in detail by advanced microscopy techniques such as scanning electron microscopy (SEM), transmission electron microscopy (TEM) and orientation imaging microscopy (OIM). It is shown that the LMI method is a suitable technique to create a MMC layers on metal substrates. The formation of reaction layers between the particles and the matrix may have a positive contribution on the bond strength between the particles and the matrix. However, the amount of reaction products in the matrix of the coatings should be minimised to improve the properties of the MMC layers.
机译:本文的目的是概述通过在顶层添加硬质陶瓷颗粒来增强轻量化金属表面的激光熔体注入(LMI)方法的可能性,以提高耐磨性和耐磨性。增加硬度。特别地,在两种材料系统上例示了LMI工艺和所得的微结构,即Al中的SiC颗粒和Ti-6A1-4V中的WC颗粒。通过原位变形测试研究了两个系统在载荷下的微观结构响应,并通过先进的显微镜技术(例如扫描电子显微镜(SEM),透射电子显微镜(TEM)和取向成像显微镜(OIM))对微观结构进行了详细分析。结果表明,LMI方法是在金属基板上创建MMC层的合适技术。颗粒与基质之间的反应层的形成可对颗粒与基质之间的结合强度具有积极的贡献。但是,应使涂层基质中反应产物的量最小化,以改善MMC层的性能。

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