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Titlebook: Advances in Materials and Metallurgy; Select Proceedings o A. K. Lakshminarayanan,Sridhar Idapalapati,M. Vasu Conference proceedings 2019 S

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https://doi.org/10.1007/978-3-319-14535-8nano-B.C in Cu matrix significantly enhances the hardness of the nanocomposites which in turn increases the wear resistance of nanocomposites. The nanocomposites with 1.5 wt% of B.C possess the superior microhardness and maximum wear resistance property. Morphology of worn out surfaces were explored by scanning electron microscopy.
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2195-4356 e book explores energy, the environment and green processes as related to materials engineering. Given its content, it will prove valuable to a broad readership of students, researchers, and professionals alike. .978-981-13-4683-5978-981-13-1780-4Series ISSN 2195-4356 Series E-ISSN 2195-4364
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https://doi.org/10.1007/978-3-319-14535-8results, it has been inferred that synthesized composites have homogeneous grain structure, low density, minimal porosity, and excellent matrix-reinforcement interfacial integrity. The main interfacial phase has been identified as Mg.Al. between the reinforcement and matrix alloy.
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William Friedman and the US Army, it is observed that maximum dry density decreases with increase in optimum moisture content. The CBR and UCC value increases with increase in percentage of crumb rubber till 15% for both the type of soils and the coefficient of permeability increases with increase in percentage of crumb rubber.
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