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Effects of graphite and graphene spatial structure on the TiC crystal structure and the properties of composite coatings

机译:石墨和石墨烯空间结构对复合涂层TIC晶体结构的影响及其性能

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摘要

To investigate the uniqueness of graphene, compared with graphite, in the preparation of TiC reinforced composite coating, the composite coatings were obtained from Ni-Cr-Ti-graphene/graphite powder by laser cladding. The phase composition and microstructure of composite coatings are detected by X-ray diffraction (XRD) and scanning electron microscope (SEM) with energy dispersive spectrometry (EDS), respectively. The phase composition of the composite coatings both mainly consist of Ni-Cr-Fe, Ni3Ti, Cr2Ti and TiC. The research results indicate that the crystal structures of in-situ synthesized TiC in the composite coatings have great difference, in detail, TiC crystals in the graphene-coating and the graphite-coating are dominated by equiaxed and dendrite crystals, severally, which is due to the reaction of two-dimensional graphene with Ti has better diffusion kinetics than that of three-dimensional graphite under rapid solidification of molten pool. The maximum microhardness of graphene-coating is 1000.3 HV0.1, which is about 4 times as hard as the substrate. The composite coatings show significant improvement in hardness and wear resistance than the substrate. The graphene-coating possesses more uniform hardness distribution and better wear resistance than that of graphite-coating, which is benefited from the uniform distribution of TiC equiaxed crystals in the graphene-coating.
机译:为了研究石墨烯的唯一性,与石墨相比,在TiC增强复合涂层的制备中,通过激光包层从Ni-Cr-Ti-石墨烯/石墨粉末获得复合涂层。通过X射线衍射(XRD)和扫描电子显微镜(SEM)分别检测复合涂层的相组合物和微观结构,分别具有能量分散光谱(EDS)。复合涂层的相组合物均主要由Ni-Cr-Fe,Ni3Ti,Cr2Ti和Tic组成。该研究结果表明,复合涂层中原位合成的TiC的晶体结构具有很大的差异,详细介绍了石墨烯 - 涂层中的TiC晶体,并将石墨涂层主要由平均和树突晶体主导,因此是由于与Ti的二维石墨烯的反应具有更好的扩散动力学,而不是在熔池的快速凝固下的三维石墨。石墨烯 - 涂层的最大微硬度为1000.3 HV0.1,其为底物的硬度约为4倍。复合涂层显着改善了比基材的硬度和耐磨性。石墨烯 - 涂层具有比石墨涂层更均匀的硬度分布和更好的耐磨性,这受益于石墨烯 - 涂层中的TiC等轴晶体的均匀分布。

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