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Titlebook: Aluminum Matrix Composites Reinforced with Alumina Nanoparticles; Riccardo Casati Book 2016 The Author(s) 2016 Metal matrix composites.Met

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期刊全稱Aluminum Matrix Composites Reinforced with Alumina Nanoparticles
影響因子2023Riccardo Casati
視頻videohttp://file.papertrans.cn/155/154233/154233.mp4
發(fā)行地址Includes supplementary material:
學科分類SpringerBriefs in Applied Sciences and Technology
圖書封面Titlebook: Aluminum Matrix Composites Reinforced with Alumina Nanoparticles;  Riccardo Casati Book 2016 The Author(s) 2016 Metal matrix composites.Met
影響因子This book describes the latest efforts to develop aluminumnanocomposites with enhanced damping and mechanical properties and goodworkability. The nanocomposites exhibited high strength, improved dampingbehavior and good ductility, makingthem suitable for use as wires. Since the production of metal matrixnanocomposites by conventional melting processes is considered extremely problematic (because of the poor wettability ofthe nanoparticles), different powder metallurgy routes were investigated,including high-energy ball milling and unconventional compaction methods.Special attention was paidto the structuralcharacterization at the micro- and nanoscale, as uniform nanoparticle dispersion in metal matrixis of prime importance. The aluminum nanocomposites displayed an ultrafine microstructurereinforced with alumina nanoparticles produced in situ or added ex situ. Thephysical, mechanical and functional characteristics of the materials produced were evaluated using different mechanical testsand microstructure investigation techniques. The book presents and discusses the experimental results indetail, and offers suggestions for future research directions.
Pindex Book 2016
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https://doi.org/10.1007/978-3-662-00284-1 processing temperatures and number of consolidation steps by ECAP were set based on previous experience and on preliminary tests. Microstructural investigations showed an inadequate dispersion of alumina particles within the matrix and the presence of large alumina clusters. Further samples were th
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https://doi.org/10.1007/978-3-642-99485-2d that the higher content of non-metallic compound made the consolidation of powder rather difficult. It was also known that in SPD processes, more ductile and bigger particles ease the consolidation process [.] since the driving force is the severe plastic deformation of metal powder particles. On
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Consolidations of Al Powder and Dry Al2O3 Nanoparticles,ty of ECAP and hot extrusion (HE) to consolidate metal powder. A ball-to-powder weight ratio r?=?5:1 was adopted for grinding the metal powder for 5?h using 10?% of ethanol as PCA. Consolidation of powder was performed by ECAP, by hot extrusion and by combining the two process. ECAP was also used fo
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