Title : Characterization of Aluminum-Lead-Fly Ash composites prepared by powder Metallurgy Technique

Type of Material: Thesis
Title: Characterization of Aluminum-Lead-Fly Ash composites prepared by powder Metallurgy Technique
Researcher: Reddy, Seelam Pitchi
Guide: Reddy, A Chennakesava
Ramana, B.
Department: Department of Mechanical Engineering
Publisher: Jawaharlal Nehru Technological University, Hyderabad
Place: Hyderabad
Year: 2012
Language: English
Subject: Aluminum
Characterization
Composites
Technique
Mechanical engineering
Engineering and Technology
Dissertation/Thesis Note: PhD; Department of Mechanical Engineering, Jawaharlal Nehru Technological University, Hyderabad, Hyderabad; 2012
Fulltext: Shodhganga

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035__|a(IN-AhILN)th_453829
040__|aJNTU_500028|dIN-AhILN
041__|aeng
100__|aReddy, Seelam Pitchi|eResearcher
110__|aDepartment of Mechanical Engineering|bJawaharlal Nehru Technological University, Hyderabad|dHyderabad|ein|0U-0017
245__|aCharacterization of Aluminum-Lead-Fly Ash composites prepared by powder Metallurgy Technique
260__|aHyderabad|bJawaharlal Nehru Technological University, Hyderabad|c2012
300__|c-|dNone|a120 p.
500__|aReferences p. 108 -118 appendixp. 119-120
502__|bPhD|cDepartment of Mechanical Engineering, Jawaharlal Nehru Technological University, Hyderabad, Hyderabad|d2012
520__|aAluminum (Al) is a distinguished metal possessing a combination of newlineseveral qualities suitable for a variety of engineering applications. Pure newlinealuminum does not possess sufficient strength. Its seizure resistance newlineand other bearing properties are not of much relevance for the industrial usage. Reinforcing of aluminum with other materials results in aluminum metal matrix composites with high specific strength. The conventional Al-20wt% Sn alloys possess high fatigue strength, good surface properties and corrosion resistance. These are being newlineused as bearings in high speed car engines in U.K. Lead (Pb) is a relatively soft and dense metal and has lower modulus of elasticity newlinethan tin (Sn). Because of its relative softness and lower modulus of elasticity, Pb confers better embeddability and onformability than that of Sn as a bearing alloy. Pb is about six times cheaper than Sn newlineand its availability is also relatively more than that of Sn.
650__|aMechanical engineering|2UGC
650__|aEngineering and Technology|2AIU
653__|aAluminum
653__|aCharacterization
653__|aComposites
653__|aTechnique
700__|aReddy, A Chennakesava|eGuide
700__|eGuide|aRamana, B.
856__|uhttp://shodhganga.inflibnet.ac.in/handle/10603/18984|yShodhganga
905__|afromsg

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