材料科学
搅拌摩擦加工
复合材料
镁
压痕硬度
复合数
弹性模量
基质(化学分析)
模数
纳米-
腐蚀
冶金
微观结构
作者
Amardeep Singh Kang,Ravinder Pal Singh,Shivali Singla
标识
DOI:10.1088/2631-8695/ad4196
摘要
Abstract Magnesium matrix surface composites have been garnering attention due to their superior mechanical and corrosion resistance properties. An idea of facile fabrication of surface composite composed of nano-SiC reinforced WE43 matrix through friction stir processing was explored in this study. Also, the effects of tool geometries, tool rotations, and tool feeds on resultant properties were comprehensively investigated. Uniform dispersion of SiC nanoparticles within stir zone was evident. Square tool demonstrated the most promising results. Processing at 1700 rev min −1 and 60 mm min −1 with a square tool produced finest grains in surface composites exhibited exceptional microhardness (180.8 H V ), nanohardness (1.867 GPa), elastic modulus (41.69 GPa), and wear resistance (0.0254 mm 3 min −1 ). Besides it, WE43 substrates also exhibited superior mechanical properties when processed with a square tool at 800 rev min −1 and 60 mm min −1 . This research opens up new possibilities for the development of reliable magnesium matrix surface composites for multifunctional applications.
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