Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano Composite

The objectives of this experimentation is to scrutinize the effect of sintering temperature and GNP concentration on novel hybrid aluminium self lubricating nanocomposite. The tribological properties of Al-Si/ γ-Al2O3 (6 wt.%)/ GNP (4–5 wt.%) composite sample has been studied in this research.. Spar...

Full description

Bibliographic Details
Main Authors: P.D. Srivyas, M.S. Charoo
Format: Article
Language:English
Published: University of Kragujevac 2019-12-01
Series:Tribology in Industry
Subjects:
Online Access:http://www.tribology.rs/journals/2019/2019-4/2019-4-10.html
id doaj-5c81a5a836fd479da59e42370e52fed6
record_format Article
spelling doaj-5c81a5a836fd479da59e42370e52fed62020-11-25T02:40:43ZengUniversity of KragujevacTribology in Industry0354-89962217-79652019-12-0141457359110.24874/ti.2019.41.04.10Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano CompositeP.D. Srivyas0M.S. Charoo1Mechanical Engineering Department, NIT Srinagar, Jammu and Kashmir, IndiaMechanical Engineering Department, NIT Srinagar, Jammu and Kashmir, IndiaThe objectives of this experimentation is to scrutinize the effect of sintering temperature and GNP concentration on novel hybrid aluminium self lubricating nanocomposite. The tribological properties of Al-Si/ γ-Al2O3 (6 wt.%)/ GNP (4–5 wt.%) composite sample has been studied in this research.. Spark Plasma Sintering syntheses route was used for the fabrication of the composite samples. The samples were prepared at three sintering temperature i.e. 450 ˚C; 500 ˚C; 520 ˚C with dwell time constant 10 minutes. The experimentally investigated properties are friction, wear, density, for the hybrid composites samples. Tribological testing was done on the ball-on-disc configuration at room temperature under dry sliding conditions under variable load 10–50 N and upto sliding distance 450 meters with other parameters i.e. frequency, stroke remain constant. The results highlights that both sintering temperature and GNP concentration helps to enhance the overall properties of composite samples. For surface morphology; wear scar analysis, elemental percentage concentration characterization tools i.e. Scanning Electron Microscopy; Electron Dispersion Microscopy; Raman analysis is used.http://www.tribology.rs/journals/2019/2019-4/2019-4-10.htmlfrictionwearmatrixself-lubrication
collection DOAJ
language English
format Article
sources DOAJ
author P.D. Srivyas
M.S. Charoo
spellingShingle P.D. Srivyas
M.S. Charoo
Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano Composite
Tribology in Industry
friction
wear
matrix
self-lubrication
author_facet P.D. Srivyas
M.S. Charoo
author_sort P.D. Srivyas
title Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano Composite
title_short Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano Composite
title_full Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano Composite
title_fullStr Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano Composite
title_full_unstemmed Effect of Sintering Temperature and Reinforcement Concentration on the Tribological Behaviors of Hybrid Aluminum Matrix Nano Composite
title_sort effect of sintering temperature and reinforcement concentration on the tribological behaviors of hybrid aluminum matrix nano composite
publisher University of Kragujevac
series Tribology in Industry
issn 0354-8996
2217-7965
publishDate 2019-12-01
description The objectives of this experimentation is to scrutinize the effect of sintering temperature and GNP concentration on novel hybrid aluminium self lubricating nanocomposite. The tribological properties of Al-Si/ γ-Al2O3 (6 wt.%)/ GNP (4–5 wt.%) composite sample has been studied in this research.. Spark Plasma Sintering syntheses route was used for the fabrication of the composite samples. The samples were prepared at three sintering temperature i.e. 450 ˚C; 500 ˚C; 520 ˚C with dwell time constant 10 minutes. The experimentally investigated properties are friction, wear, density, for the hybrid composites samples. Tribological testing was done on the ball-on-disc configuration at room temperature under dry sliding conditions under variable load 10–50 N and upto sliding distance 450 meters with other parameters i.e. frequency, stroke remain constant. The results highlights that both sintering temperature and GNP concentration helps to enhance the overall properties of composite samples. For surface morphology; wear scar analysis, elemental percentage concentration characterization tools i.e. Scanning Electron Microscopy; Electron Dispersion Microscopy; Raman analysis is used.
topic friction
wear
matrix
self-lubrication
url http://www.tribology.rs/journals/2019/2019-4/2019-4-10.html
work_keys_str_mv AT pdsrivyas effectofsinteringtemperatureandreinforcementconcentrationonthetribologicalbehaviorsofhybridaluminummatrixnanocomposite
AT mscharoo effectofsinteringtemperatureandreinforcementconcentrationonthetribologicalbehaviorsofhybridaluminummatrixnanocomposite
_version_ 1724780095893143552