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Overview of wear performance of aluminium matrix composites reinforced with ceramic materials under the influence of controllable variables

机译:可控变量影响下陶瓷材料增强铝基复合材料的磨损性能概述

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This paper summarizes the wear behaviour of Al-composites reinforced with ceramic materials. The influence of the mechanical parameters such as applied load, sliding velocity, sliding distance, temperature, and counterface hardness; and the material factors such as reinforcement type, size, shape and fraction, on the wear performance of Al-composites have been reviewed and discussed. It has been revealed that these parameters can influence the surface and subsurface behaviour of Al-composites during sliding wear conditions. It has also been observed that the ceramic reinforcements improve the wear resistance of the Al-composites under two-body abrasive or adhesive wear. However, the wear resistance of these composites is similar to the matrix alloy under intermediate load conditions due to three-body abrasive wear. Reduction in wear rate due to formation of oxide layers on the wear surface has also been reported in literature. Literature also reveals that the use of solid lubricant (Gr) particles and hard ceramic particles (SiC or alumina) as hybrid reinforcements can effectively improve the wear properties of the sliding system. The study indicates that the Al-composites especially the hybrid composite can be considered as an outstanding material for design of various automotive components, which require high strength and wear resistance. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:本文总结了陶瓷材料增强的铝复合材料的磨损性能。机械参数的影响,例如施加的载荷,滑动速度,滑动距离,温度和对接面硬度;综述并讨论了补强类型,尺寸,形状和分数等材料因素对铝基复合材料耐磨性能的影响。已经发现这些参数可以在滑动磨损条件下影响铝复合材料的表面和亚表面行为。还已经观察到,在两体磨料或粘合剂磨损下,陶瓷增强材料改善了铝复合材料的耐磨性。但是,由于三体磨料磨损,这些复合材料的耐磨性与中等负载条件下的基体合金相似。文献中还报道了由于在磨损表面上形成氧化物层而导致的磨损率降低。文献还显示,使用固体润滑剂(Gr)颗粒和硬质陶瓷颗粒(SiC或氧化铝)作为混合增强材料可以有效改善滑动系统的磨损性能。研究表明,铝复合材料,尤其是杂化复合材料,可以被视为设计各种要求高强度和耐磨性的汽车零部件的出色材料。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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