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Dry sliding wear behaviour of aluminium/alumina/graphite hybrid metal matrix composites

机译:铝/氧化铝/石墨杂化金属基复合材料的干滑磨损行为

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Purpose – Recent trends in material science show a considerable interest in the manufacturing of metal matrix composites to meet the stringent demands of lightweight, high strength and corrosion resistance. Aluminium is the popular matrix metal currently in vogue that can be reinforced with ceramic materials such as particulates to meet the desired property. The purpose of this paper is to fabricate hybrid metal matrix composites to improve the dry sliding wear resistance and to study of the effect of sliding speed, load and reinforcement (alumina and graphite) on wear properties, as well as its contact friction. nnDesign/methodology/approach – The present study addresses the dry sliding wear behaviour of Al-Si10Mg alloy reinforced with 3, 6 and 9?wt% of alumina along with 3?wt% of graphite. Stir casting method was used to fabricate the composites. Mechanical properties such as hardness and tensile strength have been evaluated. A pin-on-disc wear test apparatus was used to evaluate the wear rate and coefficient of friction by varying the loads of 20, 30 and 40?N, sliding speeds of 1.5?m/s, 2.5?m/s and 3.5?m/s at a constant sliding distance of 2100?m. nnFindings – Mechanical properties of hybrid metal matrix composites (HMMCs) have shown significant improvement. The wear rate and coefficient of friction for alloy and composites decreased with increase in sliding speed and increased with increase in applied load. Temperature rise during wearing process for monolithic alloy was larger than that of HMMCs and Al/9% Al2O3/3% Gr composite showing the minimum temperature rise.The worn surfaces of the composites were investigated using scanning electron microscope. nnPractical implications – The paper shows that aluminium composites can improve strength and wear resistance. nnOriginality/value – HMMCs has proven to be useful in improving the dry sliding wear resistance.
机译:目的–材料科学的最新趋势表明,为了满足轻质,高强度和耐腐蚀的严格要求,金属基复合材料的生产引起了极大的兴趣。铝是当前流行的流行基质金属,可以用陶瓷材料(例如颗粒)增强铝以满足要求的性能。本文的目的是制造混合金属基复合材料,以改善干式滑动耐磨性,并研究滑动速度,载荷和增强(氧化铝和石墨)对磨损性能及其接触摩擦的影响。 nn设计/方法/方法–本研究解决了用3、6和9wt%的氧化铝以及3wt%的石墨增强的Al-Si10Mg合金的干式滑动磨损行为。采用搅拌铸造法制备复合材料。已经评估了机械性能,例如硬度和抗张强度。通过改变20、30和40?N的载荷,1.5?m / s,2.5?m / s和3.5?的滑动速度,使用销盘式磨损测试仪评估磨损率和摩擦系数。在恒定的2100?m滑动距离下达到m / s。 nnFindings –杂化金属基复合材料(HMMC)的机械性能已显示出显着改善。合金和复合材料的磨损率和摩擦系数随着滑动速度的增加而降低,并随着施加载荷的增加而增加。整体合金磨损过程中的温升大于HMMC和Al / 9%Al2O3 / 3%Gr复合材料的温升最小,采用扫描电子显微镜研究了复合材料的磨损表面。 nn实际意义–本文表明铝复合材料可以提高强度和耐磨性。 nnOriginality / value –事实证明,HMMC可用于改善耐干滑性能。

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