{"title":"Wear Behaviour of Aluminium Matrix Hybrid Composites: A Review","authors":"Shivdev Singh","doi":"10.24321/2454.8650.201903","DOIUrl":null,"url":null,"abstract":"This review focus on the effect of reinforcement and different manufacturing techniques on wear and mechanical properties aluminium matrix composites and hybrid composites. These materials have capacity to satisfying the demands of advanced engineering materials applications. These difficulties are satisfied due to improved mechanical properties, conventional processing technique and reducing fabrication cost of aluminium composites. In powder metallurgy, the crucial issue is the selection of sizes of the matrix and reinforcement powders, whereas a major challenge in liquid metallurgy is wettability between the reinforcement particles and molten alloy. The addition of Al2O3 particles in matrix increases the mechanical strength and wear resistance of composites. However, incorporation of these particles can reduce the wear performance of Al composites under severe conditions. The addition of graphite particles helps in the formation of a thick layer on the wear surface. It was found that the mechanical and wear properties of the single reinforcement composites are better as compared to pure aluminium and aluminium alloys regardless of the aluminium matrix composites fabrication technique. Further, it was also established that most of the hybrid composites demonstrate better mechanical and tribological properties as compared to single reinforcement composites. \nHow to cite this article:Singh S, Gupta A, Sharma. Wear Behaviour of Aluminium Matrix Hybrid Composites: A Review. J Adv Res Mech Engi Tech 2019; 6(1&2): 13-22.","PeriodicalId":266032,"journal":{"name":"Journal of Advanced Research in Mechanical Engineering and Technology","volume":"1 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-09-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Advanced Research in Mechanical Engineering and Technology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.24321/2454.8650.201903","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
This review focus on the effect of reinforcement and different manufacturing techniques on wear and mechanical properties aluminium matrix composites and hybrid composites. These materials have capacity to satisfying the demands of advanced engineering materials applications. These difficulties are satisfied due to improved mechanical properties, conventional processing technique and reducing fabrication cost of aluminium composites. In powder metallurgy, the crucial issue is the selection of sizes of the matrix and reinforcement powders, whereas a major challenge in liquid metallurgy is wettability between the reinforcement particles and molten alloy. The addition of Al2O3 particles in matrix increases the mechanical strength and wear resistance of composites. However, incorporation of these particles can reduce the wear performance of Al composites under severe conditions. The addition of graphite particles helps in the formation of a thick layer on the wear surface. It was found that the mechanical and wear properties of the single reinforcement composites are better as compared to pure aluminium and aluminium alloys regardless of the aluminium matrix composites fabrication technique. Further, it was also established that most of the hybrid composites demonstrate better mechanical and tribological properties as compared to single reinforcement composites.
How to cite this article:Singh S, Gupta A, Sharma. Wear Behaviour of Aluminium Matrix Hybrid Composites: A Review. J Adv Res Mech Engi Tech 2019; 6(1&2): 13-22.
本文综述了增强剂和不同的制造工艺对铝基复合材料和混杂复合材料的磨损和力学性能的影响。这些材料有能力满足先进工程材料应用的要求。由于铝复合材料力学性能的提高、传统的加工工艺和制造成本的降低,这些困难都得到了解决。在粉末冶金中,关键问题是选择基体和增强粉末的尺寸,而在液体冶金中,主要挑战是增强颗粒和熔融合金之间的润湿性。基体中Al2O3颗粒的加入提高了复合材料的机械强度和耐磨性。然而,这些颗粒的掺入会降低Al复合材料在恶劣条件下的磨损性能。石墨颗粒的加入有助于在磨损表面形成厚层。结果表明,无论铝基复合材料的制备工艺如何,单增强复合材料的力学性能和磨损性能都优于纯铝和铝合金。此外,与单一增强复合材料相比,大多数混杂复合材料具有更好的力学和摩擦学性能。如何引用本文:Singh S, Gupta A, Sharma。铝基混杂复合材料的磨损性能研究进展机械工程学报(英文版);6(1、2点):13-22。