Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C Composite

Aluminium alloy reinforced with boron carbide (10 wt.%) was fabricated using stir casting method followed by centrifugal casting and the cylindrical specimen with dimension 150 x 150 x 15 mm was obtained. The composite specimens were heat treated at various aging temperatures and aging time for prop...

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Main Authors: L.V. Priyanka Muddamsetty, N. Radhika
Format: Article
Language:English
Published: University of Kragujevac 2016-03-01
Series:Tribology in Industry
Subjects:
Online Access:http://www.tribology.fink.rs/journals/2016/2016-1/12.pdf
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spelling doaj-cd1a365f3c9242c58314306d9cf45d9c2020-11-24T20:59:09ZengUniversity of KragujevacTribology in Industry0354-89962217-79652016-03-01381108114Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C CompositeL.V. Priyanka Muddamsetty0N. Radhika1Department of Mechanical Engineering, Amrita Vishwa Vidyapeetham, Ettimadai, Coimbatore, India – 641112Department of Mechanical Engineering, Amrita Vishwa Vidyapeetham, Ettimadai, Coimbatore, India – 641112Aluminium alloy reinforced with boron carbide (10 wt.%) was fabricated using stir casting method followed by centrifugal casting and the cylindrical specimen with dimension 150 x 150 x 15 mm was obtained. The composite specimens were heat treated at various aging temperatures and aging time for property improvement. Solution treatment was done at 525 ℃ for 5 hrs. Taguchi’s method was used for designing the plan of experiments and L27 orthogonal array was formulated for the analysis of data. The wear test was conducted on the outer periphery of centrifugally cast Functionally Graded composites using pin-on-disc tribometer. Optimization of parameters such as applied load (10 N, 20 N, 30 N), agingtemperature (150 ℃, 175 ℃, 200 ℃) and aging time (2 hrs, 6 hrs, 10 hrs) was done using Signal-to-Noise ratio. “Smaller-the-better” criterion was used for analyzing the results. Results ended up with a conclusion that aging time (92.19 %) had major influence on tribological behavior followed by aging temperature (5.36 %) and applied load (1.95 %). Scanning Electron Microscope (SEM) analysis was performed to understand the wear mechanism in heat treated specimens.http://www.tribology.fink.rs/journals/2016/2016-1/12.pdfFunctionally Graded MaterialAging timeSolution treatmentWear behaviorTaguchi technique
collection DOAJ
language English
format Article
sources DOAJ
author L.V. Priyanka Muddamsetty
N. Radhika
spellingShingle L.V. Priyanka Muddamsetty
N. Radhika
Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C Composite
Tribology in Industry
Functionally Graded Material
Aging time
Solution treatment
Wear behavior
Taguchi technique
author_facet L.V. Priyanka Muddamsetty
N. Radhika
author_sort L.V. Priyanka Muddamsetty
title Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C Composite
title_short Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C Composite
title_full Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C Composite
title_fullStr Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C Composite
title_full_unstemmed Effect of Heat Treatment on the Wear Behaviour of Functionally Graded LM13/B4C Composite
title_sort effect of heat treatment on the wear behaviour of functionally graded lm13/b4c composite
publisher University of Kragujevac
series Tribology in Industry
issn 0354-8996
2217-7965
publishDate 2016-03-01
description Aluminium alloy reinforced with boron carbide (10 wt.%) was fabricated using stir casting method followed by centrifugal casting and the cylindrical specimen with dimension 150 x 150 x 15 mm was obtained. The composite specimens were heat treated at various aging temperatures and aging time for property improvement. Solution treatment was done at 525 ℃ for 5 hrs. Taguchi’s method was used for designing the plan of experiments and L27 orthogonal array was formulated for the analysis of data. The wear test was conducted on the outer periphery of centrifugally cast Functionally Graded composites using pin-on-disc tribometer. Optimization of parameters such as applied load (10 N, 20 N, 30 N), agingtemperature (150 ℃, 175 ℃, 200 ℃) and aging time (2 hrs, 6 hrs, 10 hrs) was done using Signal-to-Noise ratio. “Smaller-the-better” criterion was used for analyzing the results. Results ended up with a conclusion that aging time (92.19 %) had major influence on tribological behavior followed by aging temperature (5.36 %) and applied load (1.95 %). Scanning Electron Microscope (SEM) analysis was performed to understand the wear mechanism in heat treated specimens.
topic Functionally Graded Material
Aging time
Solution treatment
Wear behavior
Taguchi technique
url http://www.tribology.fink.rs/journals/2016/2016-1/12.pdf
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AT nradhika effectofheattreatmentonthewearbehaviouroffunctionallygradedlm13b4ccomposite
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