Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix Composite

In the current research Al7075 (Al-5.4Zn-2.6Mg) alloy and composite prepared by dispersing 2 wt.% granite powder and 3 wt.% Si3N4 in Al7075 are subjected to peak aging treatment at 100, 120 and 1500C to obtain the maximum induced hardness by solid solution strengthening. In succession, by the result...

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Main Authors: B.S Sowrabh, B.M Gurumurthy, Y.M Shivaprakash, Sathya Shankara Sharma
Format: Article
Language:English
Published: Associação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol) 2023-09-01
Series:Materials Research
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Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392023000100297&tlng=en
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author B.S Sowrabh
B.M Gurumurthy
Y.M Shivaprakash
Sathya Shankara Sharma
author_facet B.S Sowrabh
B.M Gurumurthy
Y.M Shivaprakash
Sathya Shankara Sharma
author_sort B.S Sowrabh
collection DOAJ
description In the current research Al7075 (Al-5.4Zn-2.6Mg) alloy and composite prepared by dispersing 2 wt.% granite powder and 3 wt.% Si3N4 in Al7075 are subjected to peak aging treatment at 100, 120 and 1500C to obtain the maximum induced hardness by solid solution strengthening. In succession, by the results of peak aging treatment the alloy and composite are pre aged and heat treated by three step aging conditions. The results indicated that pre aged three step aging has resulted in enhanced alloy hardness of 185.6 VHN as compared to peak hardness of 142.9 at 1000C resulting in 29.88% improvement. Moreover, the composite subjected to pre-aged three step aging has resulted in improved hardness to 197.6 VHN as compared to peak hardness of 153.5 at 1000C resulting in 28.72% improvement. Also, the alloy and composite in this condition showed an improvement of 21.38% and 16.34% respectively in the UTS. Also, particularly composite displayed excellent wear characteristics as compared to as cast alloy. An interesting fact noticed in this work is that in three step aging the last step having higher temperature and longer duration of aging has resulted always a better hardness and hence has improved mechanical properties. This may be due to increased aging kinetics during heat treatment. The novel approach developed in this study will reduce the longer duration of conventional aging heat treatment and the energy consumption.
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spelling doaj.art-95c8e4f0d9584773851fb994684a5d182023-09-26T07:40:44ZengAssociação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol)Materials Research1516-14392023-09-012610.1590/1980-5373-mr-2023-0008Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix CompositeB.S Sowrabhhttps://orcid.org/0000-0002-4097-7989B.M Gurumurthyhttps://orcid.org/0000-0002-4981-8589Y.M Shivaprakashhttps://orcid.org/0000-0001-7242-5655Sathya Shankara Sharmahttps://orcid.org/0000-0001-8995-1563In the current research Al7075 (Al-5.4Zn-2.6Mg) alloy and composite prepared by dispersing 2 wt.% granite powder and 3 wt.% Si3N4 in Al7075 are subjected to peak aging treatment at 100, 120 and 1500C to obtain the maximum induced hardness by solid solution strengthening. In succession, by the results of peak aging treatment the alloy and composite are pre aged and heat treated by three step aging conditions. The results indicated that pre aged three step aging has resulted in enhanced alloy hardness of 185.6 VHN as compared to peak hardness of 142.9 at 1000C resulting in 29.88% improvement. Moreover, the composite subjected to pre-aged three step aging has resulted in improved hardness to 197.6 VHN as compared to peak hardness of 153.5 at 1000C resulting in 28.72% improvement. Also, the alloy and composite in this condition showed an improvement of 21.38% and 16.34% respectively in the UTS. Also, particularly composite displayed excellent wear characteristics as compared to as cast alloy. An interesting fact noticed in this work is that in three step aging the last step having higher temperature and longer duration of aging has resulted always a better hardness and hence has improved mechanical properties. This may be due to increased aging kinetics during heat treatment. The novel approach developed in this study will reduce the longer duration of conventional aging heat treatment and the energy consumption.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392023000100297&tlng=enAl7075 alloystep agingpre aginggranite particlesilicon nitridewear
spellingShingle B.S Sowrabh
B.M Gurumurthy
Y.M Shivaprakash
Sathya Shankara Sharma
Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix Composite
Materials Research
Al7075 alloy
step aging
pre aging
granite particle
silicon nitride
wear
title Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix Composite
title_full Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix Composite
title_fullStr Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix Composite
title_full_unstemmed Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix Composite
title_short Implication of Pre-Aged Three Step T6 Treatment on the Properties of Granite and Silicon Nitride Particulates Reinforced Al7075 Matrix Composite
title_sort implication of pre aged three step t6 treatment on the properties of granite and silicon nitride particulates reinforced al7075 matrix composite
topic Al7075 alloy
step aging
pre aging
granite particle
silicon nitride
wear
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392023000100297&tlng=en
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