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Obtaining and Characterization of Multicomponent Gradient Mutlilayer Carbide Coatings

机译:获得和表征多组分梯度笨蛋碳化物涂层

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摘要

Two new experimental devices, which allow obtaining both gradient multilayer composites and coatings of each of their layers separately are presented. Using them, a wide range of compositions of multicomponent carbide coatings is obtained. Among them there are three groups- (a) coatings with high Cr content (b) coatings with high Ti and C content (c) coatings with high mixing entropy and composition closer to equimolar. Group (a) is characterized by BCC lattice and elongated surface structures. Group (b) has an FCC lattice, and at a content of C>51 at. % there is a porous structure on the surface, which adversely affects the microhardness of the coatings. For group (c) mainly amorphous/nanocrystalline or FCC structure, slight surface roughness, and good microhardness values were found. Multilayer composites demonstrate the best mechanical properties - high adhesion and good microhardness (23-28 GPa).
机译:提出了两个新的实验装置,其允许分别获得每个层的梯度多层复合材料和涂层。使用它们,获得多种组成的多组分碳化物涂层。其中有三组 - (a)涂层具有高Cr含量(b)涂层,具有高Ti和C含量(c)涂层,具有高混合熵和组合物更接近等摩尔。组(a)的特征在于BCC晶格和细长的表面结构。组(B)具有FCC格,以及C> 51的含量。百分比表面上存在多孔结构,这对涂层的微硬度产生不利影响。对于组(c),主要是无定形/纳米晶体或FCC结构,轻微的表面粗糙度和良好的微硬度值。多层复合材料证明了最佳的机械性能 - 高附着力和良好的微硬度(23-28GPa)。

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