Experimental analysis on tribological behavior of Co/TiC/CaF2/Y2O3 composite coating developed by plasma transferred arc (PTA) cladding technique on AZ91D Mg alloy substrate

材料科学 摩擦学 包层(金属加工) 复合数 涂层 等离子体 复合材料 弧(几何) 冶金 物理 核物理学 机械工程 工程类
作者
Anil Kumar Das,Ravi Kumar
出处
期刊:Physica Scripta [IOP Publishing]
卷期号:99 (11): 115607-115607
标识
DOI:10.1088/1402-4896/ad8786
摘要

Abstract In this study, Co/TiC/CaF 2 /Y 2 O 3 composite coating was fabricated on AZ91D Mg alloy by plasma transferred arc cladding (PTA) technique. The composite coating was fabricated with parameters as PTA current of 40 A and scan speed of 150 mm/min. The coating powders consisted of Co (60 wt%) and Y 2 O 3 (1 wt%), with varying amounts of TiC (ranging from 34 wt% to 19 wt%) and CaF 2 (ranging from 5 wt% to 20 wt%). An investigation on the effect of TiC and CaF 2 content on the mechanical and wear performance of Co/TiC/CaF 2 /Y 2 O 3 composite coatings has been conducted. Characterization of the coatings such as microstructure, elemental analysis, and phase analysis were investigated by scanning electron microscopy (SEM) with energy dispersive x-ray spectroscopy (EDX), and x-ray diffraction (XRD) respectively. Results showed that the phase constituents in the coatings were TiC, CoO, CoTi, Co 2 Y 3 , YTiO 3 , CoYC, TiO 2 , and CaF 2 . The maximum average microhardness of the clad layer was about 1162HV 0.05 , while the average microhardness of AZ91D Mg alloy substrate was about 68HV 0.05 . Based on this study, it has been found that the coating has 17 times more hardness than the AZ91D Mg substrate. Also, it can be concluded that the coating has nearly 37 times higher wear resistance than the AZ91D Mg alloy substrate.

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