Investigations on mechanical and machinability behavior of aluminum/flyash cenosphere/Gr hybrid composites processed through compocasting

This work focuses on characterization of a novel hybrid Aluminum Metal Matrix Composite (AMMC) developed through two-step compocasting method by reinforcing constant amount of flyash cenosphere (10%) and varying quantity of graphite (2%, 4% and 6%). Morphological analysis result shows the presence o...

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Published inJournal of applied research and technology Vol. 15; no. 5; pp. 430 - 441
Main Authors Kumarasamy, Soorya Prakash, Vijayananth, Kavimani, Thankachan, Titus, Pudhupalayam Muthukutti, Gopal
Format Journal Article
LanguageEnglish
Published Elsevier España, S.L.U 01.10.2017
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Online AccessGet full text
ISSN1665-6423
DOI10.1016/j.jart.2017.05.005

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Abstract This work focuses on characterization of a novel hybrid Aluminum Metal Matrix Composite (AMMC) developed through two-step compocasting method by reinforcing constant amount of flyash cenosphere (10%) and varying quantity of graphite (2%, 4% and 6%). Morphological analysis result shows the presence of dendritic arms and homogeneous distribution of the cenosphere and graphite in Al7075 matrix. The hardness and tensile strength upturn with addition of cenosphere and vice versa for the addition of graphite. The reinforcement particles have enhanced the tensile strength of Aluminum matrix from 178N/mm2 to 213N/mm2 as of the composite is concerned. Addition of cenosphere improves the wear resistance considerably and wear rate decreases further with graphite addition due to its self-lubricating nature. Machinability (turning) characteristics of the developed hybrid composite were studied in detail besides optimizing the machining parameters employing Artificial Neural Network (ANN) technique. Based on the ANOVA results it was found that cutting speed and % of graphite addition have the major contribution in minimizing the surface roughness of developed composite.
AbstractList This work focuses on characterization of a novel hybrid Aluminum Metal Matrix Composite (AMMC) developed through two-step compocasting method by reinforcing constant amount of flyash cenosphere (10%) and varying quantity of graphite (2%, 4% and 6%). Morphological analysis result shows the presence of dendritic arms and homogeneous distribution of the cenosphere and graphite in Al7075 matrix. The hardness and tensile strength upturn with addition of cenosphere and vice versa for the addition of graphite. The reinforcement particles have enhanced the tensile strength of Aluminum matrix from 178N/mm2 to 213N/mm2 as of the composite is concerned. Addition of cenosphere improves the wear resistance considerably and wear rate decreases further with graphite addition due to its self-lubricating nature. Machinability (turning) characteristics of the developed hybrid composite were studied in detail besides optimizing the machining parameters employing Artificial Neural Network (ANN) technique. Based on the ANOVA results it was found that cutting speed and % of graphite addition have the major contribution in minimizing the surface roughness of developed composite.
Author Vijayananth, Kavimani
Pudhupalayam Muthukutti, Gopal
Thankachan, Titus
Kumarasamy, Soorya Prakash
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  givenname: Gopal
  surname: Pudhupalayam Muthukutti
  fullname: Pudhupalayam Muthukutti, Gopal
  organization: Research scholar, Department of Mechanical Engineering, Anna University Regional Campus, Coimbatore 641 046, Tamil Nadu, India
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Snippet This work focuses on characterization of a novel hybrid Aluminum Metal Matrix Composite (AMMC) developed through two-step compocasting method by reinforcing...
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StartPage 430
SubjectTerms ANN
Cenosphere
Compocasting
Graphite
Machining
Wear
Title Investigations on mechanical and machinability behavior of aluminum/flyash cenosphere/Gr hybrid composites processed through compocasting
URI https://dx.doi.org/10.1016/j.jart.2017.05.005
Volume 15
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