Development of Hybrid Composites Based On A New Quaternary Mg Alloy

dc.contributor.guideSivapragash M
dc.coverage.spatialDevelopment of Hybrid Composites Based On A New Quaternary Mg Alloy
dc.creator.researcherSuneesh E
dc.date.accessioned2020-03-30T11:49:09Z
dc.date.available2020-03-30T11:49:09Z
dc.date.awarded30/11/2018
dc.date.completed07/04/2018
dc.date.registered14/08/2013
dc.description.abstractABSTRACT newlineRecent years have witnessed extensive studies on the exploration and development of the newlineMetal Matrix Composites (MMCs) and their low-cost processing methodologies so as to newlineaccommodate the deficiencies of the pure metals and their alloys and to overcome the need newlinefor high-performance and lightweight materials in the automotive and aerospace industries. newlineMagnesium (Mg) MMCs appeared to be the good alternative for Mg alloys as advanced newlinestructural materials. Several studies have been conducted so far to examine the effect of newlinedifferent reinforcements (single type) and processing methods on Mg MMCs. The results newlinerevealed that the addition of ceramic reinforcements with good strength (Alumina (Al2O3) newlineor Silicon Carbide (SiC)) can yield excellent high-temperature properties to Mg-based materials. newlineEven though Mg MMCs with ceramic reinforcements exhibit good mechanical and tribological newlineproperties, reinforcement-matrix interface reaction and interfacial de-cohesion can newlinecause Mg MMCs to experience a substantial reduction in ductility and fracture toughness. newlineSo, it is indeed essential to develop new and advanced composites through cost-effective fabrication newlinemethod to address these issues. Latest research efforts suggested that simultaneous newlineaddition of two or more reinforcements had to play a crucial role in the future performance newlineof Mg MMCs. On this ground, new Mg-based hybrid composites are developed in this study newlineusing micro and nano Al2O3 reinforcements. newlineIn this research work, prior to the composite fabrication, a novel quaternary Mg alloy newline(Mg-3Zn-0.7Zr-1Cu) was prepared. Later, micro and hybrid Al2O3 based composites were newlineprepared by reinforcing Mg-3Zn-0.7Zr-1Cu alloy with micro and nano Al2O3 particulates. newlineBlend-press-sinter based Powder Metallurgy (PM) technique followed by hot extrusion was newlineused as the fabrication technique in this study and two different sintering temperatures were newlineused during PM process so as to investigate its impact on the behaviour of the Mg materials.. newlineThe feasibility and effect of using hy
dc.description.noteHybrid,Composites Based,Quaternary, Mg Alloy
dc.format.accompanyingmaterialDVD
dc.format.dimensionsA4
dc.format.extent143
dc.identifier.urihttp://hdl.handle.net/10603/286621
dc.languageEnglish
dc.publisher.institutionDepartment of Mechanical Engineering
dc.publisher.placeKanyakumari
dc.publisher.universityNoorul Islam Centre for Higher Education
dc.relation220
dc.rightsuniversity
dc.source.universityUniversity
dc.subject.keywordEngineering and Technology,Engineering,Metallurgy and Metallurgical Engineering
dc.titleDevelopment of Hybrid Composites Based On A New Quaternary Mg Alloy
dc.title.alternative-
dc.type.degreePh.D.

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