Microstructural, mechanical and tribological characterization of ZrB2 reinforced AZ31B surface coatings made by friction stir processing

材料科学 搅拌摩擦加工 摩擦学 镁合金 摩擦学 复合材料 复合数 极限抗拉强度 压痕硬度 合金 表面改性 分层(地质) 冶金 微观结构 古生物学 工程类 生物 构造学 俯冲 化学工程
作者
N. Babu,A. Megalingam
出处
期刊:Journal of Adhesion Science and Technology [Taylor & Francis]
卷期号:37 (2): 195-212 被引量:13
标识
DOI:10.1080/01694243.2022.2029093
摘要

Among the different surface modification techniques, Friction Stir Processing (FSP) is one of the promising techniques for magnesium materials. In the present work, an AZ31B magnesium alloy is reinforced with 3 wt.% micro-sized Zirconium diboride (ZrB2) particles through the Friction Stir Processing technique. The effect of tool passes (single pass and double pass) on microstructural, mechanical, and tribological properties were investigated. The microstructural study revealed that the average grain size of double-pass AZ31B/ZrB2 surface composite was reduced from 12 to 6 µm as compared to the AZ31B magnesium alloy. The microhardness test results revealed a 50% improvement in hardness in the double-pass AZ31B/ZrB2 surface composite than in the single-pass reinforced composite and base alloy. The tensile test result revealed a 19% improvement in the strength of the double-pass AZ31B/ZrB2 surface composite and 13.5% improvement in the strength of the single-pass AZ31B/ZrB2 surface composite in comparison to the base alloy. A ductile mode of fracture was observed in fractured tensile specimens. The friction and wear performance of base alloy and AZ31B/ZrB2 surface composites were evaluated using a pin-on-disc tribometer. Tribological behaviour exhibited that the wear rate of a double-pass AZ31B/ZrB2 surface composite was 60% lower than the base alloy. The coefficient of friction of the double-pass AZ31B/ZrB2 surface composite was 24% lower than the base alloy. SEM images of the worn surface revealed delamination, micro-cracks, and ploughing in AZ31B/ZrB2 surface composites.
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