Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir Processing

Friction stir processing (FSP) is solid state novel technique developed to refine microstructure and to improve the mechanical properties and be used to fabricate the aluminium alloy matrix composites. An attempt is made to fabricate AA6061/TiB2 aluminium alloy composite (AMCs) and the influence of...

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Main Authors: Rao Santha Dakarapu, Ramanaiah Nallu
Format: Article
Language:English
Published: Sciendo 2017-04-01
Series:Journal of Mechanical Engineering
Subjects:
Online Access:https://doi.org/10.1515/scjme-2017-0011
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spelling doaj-3069fbf7e2f644d994f7d962d421bfdf2021-09-05T14:00:26ZengSciendoJournal of Mechanical Engineering2450-54712017-04-0167110111810.1515/scjme-2017-0011scjme-2017-0011Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir ProcessingRao Santha Dakarapu0Ramanaiah Nallu1BVC Engineering college, Faculty of Mechanical Engineering, Odalarevu -533210, Andhra Pradesh, IndiaAndhra university college of Engineering (A), Faculty of Mechanical Engineering, Andhra University, Visakhapatnam- 530003, Andhra Pradesh, IndiaFriction stir processing (FSP) is solid state novel technique developed to refine microstructure and to improve the mechanical properties and be used to fabricate the aluminium alloy matrix composites. An attempt is made to fabricate AA6061/TiB2 aluminium alloy composite (AMCs) and the influence of process parameters like rotational speed, transverse feed, axial load and percentage reinforcement on microstructure and mechanical properties were studied. The microstructural observations are carried out and revealed that the reinforcement particles (TiB2) were uniformly dispersed in the nugget zone. The Tensile strength and Hardness of composites were evaluated. It was observed that tensile strength, and hardness were increased with increased the rotational speed and percentage reinforcement of particles. The process parameters were optimized using Taguchi analysis (Single Variable) and Grey analysis (Multi Variable). The most influential parameter was rotational speed in single variable method and multi variable optimization method. The ANOVA also done to know the percentage contribution of each parameter.https://doi.org/10.1515/scjme-2017-0011friction stir processingtitanium di boridetensile strengthhardnessmetal matrix compositetaguchi and grey analysis
collection DOAJ
language English
format Article
sources DOAJ
author Rao Santha Dakarapu
Ramanaiah Nallu
spellingShingle Rao Santha Dakarapu
Ramanaiah Nallu
Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir Processing
Journal of Mechanical Engineering
friction stir processing
titanium di boride
tensile strength
hardness
metal matrix composite
taguchi and grey analysis
author_facet Rao Santha Dakarapu
Ramanaiah Nallu
author_sort Rao Santha Dakarapu
title Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir Processing
title_short Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir Processing
title_full Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir Processing
title_fullStr Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir Processing
title_full_unstemmed Process Parameters Optimization for Producing AA6061/TiB2 Composites by Friction Stir Processing
title_sort process parameters optimization for producing aa6061/tib2 composites by friction stir processing
publisher Sciendo
series Journal of Mechanical Engineering
issn 2450-5471
publishDate 2017-04-01
description Friction stir processing (FSP) is solid state novel technique developed to refine microstructure and to improve the mechanical properties and be used to fabricate the aluminium alloy matrix composites. An attempt is made to fabricate AA6061/TiB2 aluminium alloy composite (AMCs) and the influence of process parameters like rotational speed, transverse feed, axial load and percentage reinforcement on microstructure and mechanical properties were studied. The microstructural observations are carried out and revealed that the reinforcement particles (TiB2) were uniformly dispersed in the nugget zone. The Tensile strength and Hardness of composites were evaluated. It was observed that tensile strength, and hardness were increased with increased the rotational speed and percentage reinforcement of particles. The process parameters were optimized using Taguchi analysis (Single Variable) and Grey analysis (Multi Variable). The most influential parameter was rotational speed in single variable method and multi variable optimization method. The ANOVA also done to know the percentage contribution of each parameter.
topic friction stir processing
titanium di boride
tensile strength
hardness
metal matrix composite
taguchi and grey analysis
url https://doi.org/10.1515/scjme-2017-0011
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