Evaluation of the effect of strontium and tungsten carbide on the microstructure evolution, tribological and mechanical behaviour of Al-Zn-Mg-Cu-5Sr-WC metal matrix composite

IF 0.7 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of metals, materials and minerals Pub Date : 2024-06-04 DOI:10.55713/jmmm.v34i2.1793
Jeffin Johnson, Rosari Raja
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Abstract

The present study focused on the experimental investigation of the metallurgical, tribological, and mechanical behavior of the developed Al-Zn-Mg-Cu-Sr-WC (Al7075-Sr-WC) metal matrix composite. The effect of the reinforcements such as strontium and tungsten carbide (WC) along with a 2 wt% magnesium as the wetting agent during the stir casting of the synthesized aluminum metal matrix composite (MMC) was investigated by varying the weight percentages. The microstructure examination was characterized using field emission scanning electron microscopy (FE-SEM), scanning electron microscopy (SEM), X-ray diffraction (XRD), and energy dispersive spectroscopy (EDS) techniques. Wear analysis and mechanical testing were conducted to study the effect of WC particles in the matrix phase by examining their wear rate, tensile strength, proof strength, and hardness values. From the mechanical and tribological tests, it was observed that there was an increase of 55% in hardness and 43% in tensile strength, along with a 31% reduction in wear rate. The secondary phases revealed from XRD analysis lead to more hardness along the refined grain boundaries. The tensile strength of the composite initially increased with a 3 wt% of WC and 5 wt% strontium due to hindrance to the dislocation movement but decreased with more reinforcement particles caused by brittleness. The hard WC particles presence has reduced the wear rate significantly due to its resistance towards abrasive wear and lubricating effect. The unique combination of a grain refiner and a binder helped develop a novel composite with superior characteristics that could replace many aerospace components made up of Al7075 alloy.
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评估锶和碳化钨对 Al-Zn-Mg-Cu-5Sr-WC 金属基复合材料的微观结构演变、摩擦学和力学性能的影响
本研究的重点是对所开发的铝-锌-镁-铜-锶-碳化钨(Al7075-Sr-WC)金属基复合材料的冶金学、摩擦学和力学行为进行实验研究。在合成铝金属基复合材料(MMC)的搅拌铸造过程中,通过改变锶和碳化钨(WC)等增强剂以及 2 wt%的镁作为润湿剂的重量百分比,研究了它们的影响。使用场发射扫描电子显微镜(FE-SEM)、扫描电子显微镜(SEM)、X 射线衍射(XRD)和能量色散光谱(EDS)技术对微观结构进行了表征。为了研究基体相中 WC 颗粒的影响,还进行了磨损分析和机械测试,检测其磨损率、抗拉强度、抗压强度和硬度值。从机械和摩擦学测试中可以看出,硬度提高了 55%,抗拉强度提高了 43%,磨损率降低了 31%。通过 XRD 分析发现的次生相使细化晶界处的硬度更高。由于位错运动受到阻碍,复合材料的拉伸强度最初在 3 wt% 的碳化钨和 5 wt% 的锶的作用下有所提高,但随着强化颗粒的增加,拉伸强度因脆性而降低。硬质碳化钨颗粒具有抗磨损和润滑作用,因此大大降低了磨损率。晶粒细化剂和粘合剂的独特组合有助于开发出一种具有优异特性的新型复合材料,它可以取代许多由 Al7075 合金制成的航空航天部件。
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来源期刊
Journal of metals, materials and minerals
Journal of metals, materials and minerals MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
11.10%
发文量
0
期刊介绍: Journal of Metals, Materials and Minerals (JMMM) is a double-blind peer-reviewed international journal published 4 issues per year (starting from 2019), in March, June, September, and December, aims at disseminating advanced knowledge in the fields to academia, professionals and industrialists. JMMM publishes original research articles as well as review articles related to research and development in science, technology and engineering of metals, materials and minerals, including composite & hybrid materials, concrete and cement-based systems, ceramics, glass, refractory, semiconductors, polymeric & polymer-based materials, conventional & technical textiles, nanomaterials, thin films, biomaterials, and functional materials.
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