Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting Rod

Ultrafine grained materials have a great deal of both scientific and technological interest because they allow outstanding properties to be obtained. An improvement in the mechanical strength and in the ductility and a better fatigue behaviour are properties to be expected with these materials. Howe...

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Main Authors: J. P. Fuertes, J. León, C. J. Luis, D. Salcedo, I. Puertas, R. Luri
Format: Article
Language:English
Published: Hindawi Limited 2015-01-01
Series:Journal of Nanomaterials
Online Access:http://dx.doi.org/10.1155/2015/868065
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spelling doaj-9d08e2c3780a48048315a921ef721a5a2020-11-24T22:37:17ZengHindawi LimitedJournal of Nanomaterials1687-41101687-41292015-01-01201510.1155/2015/868065868065Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting RodJ. P. Fuertes0J. León1C. J. Luis2D. Salcedo3I. Puertas4R. Luri5Mechanical, Energetics and Materials Engineering Department, Public University of Navarre, Campus de Arrosadia, s/n, 31006 Pamplona, SpainMechanical, Energetics and Materials Engineering Department, Public University of Navarre, Campus de Arrosadia, s/n, 31006 Pamplona, SpainMechanical, Energetics and Materials Engineering Department, Public University of Navarre, Campus de Arrosadia, s/n, 31006 Pamplona, SpainMechanical, Energetics and Materials Engineering Department, Public University of Navarre, Campus de Arrosadia, s/n, 31006 Pamplona, SpainMechanical, Energetics and Materials Engineering Department, Public University of Navarre, Campus de Arrosadia, s/n, 31006 Pamplona, SpainMechanical, Energetics and Materials Engineering Department, Public University of Navarre, Campus de Arrosadia, s/n, 31006 Pamplona, SpainUltrafine grained materials have a great deal of both scientific and technological interest because they allow outstanding properties to be obtained. An improvement in the mechanical strength and in the ductility and a better fatigue behaviour are properties to be expected with these materials. However, in spite of the great number of scientific publications that deals with the mechanical property improvement, the number of practical applications of these materials is scant. In this present research work, equal channel angular pressing (ECAP) is used as a severe plastic deformation process (SPD) to obtain billets which are subsequently isothermally forged to obtain a connecting rod with submicrometric grain size. The optimization of the design process is shown as well as the die design. The objective variables to be fulfilled are the correct filling of the die and the required force to obtain the part. Moreover, a comparison is also included between the mechanical properties thus obtained and those obtained with traditional methods. Moreover, optical and SEM micrographs are also included in this research work.http://dx.doi.org/10.1155/2015/868065
collection DOAJ
language English
format Article
sources DOAJ
author J. P. Fuertes
J. León
C. J. Luis
D. Salcedo
I. Puertas
R. Luri
spellingShingle J. P. Fuertes
J. León
C. J. Luis
D. Salcedo
I. Puertas
R. Luri
Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting Rod
Journal of Nanomaterials
author_facet J. P. Fuertes
J. León
C. J. Luis
D. Salcedo
I. Puertas
R. Luri
author_sort J. P. Fuertes
title Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting Rod
title_short Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting Rod
title_full Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting Rod
title_fullStr Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting Rod
title_full_unstemmed Design, Optimization, and Mechanical Property Analysis of a Submicrometric Aluminium Alloy Connecting Rod
title_sort design, optimization, and mechanical property analysis of a submicrometric aluminium alloy connecting rod
publisher Hindawi Limited
series Journal of Nanomaterials
issn 1687-4110
1687-4129
publishDate 2015-01-01
description Ultrafine grained materials have a great deal of both scientific and technological interest because they allow outstanding properties to be obtained. An improvement in the mechanical strength and in the ductility and a better fatigue behaviour are properties to be expected with these materials. However, in spite of the great number of scientific publications that deals with the mechanical property improvement, the number of practical applications of these materials is scant. In this present research work, equal channel angular pressing (ECAP) is used as a severe plastic deformation process (SPD) to obtain billets which are subsequently isothermally forged to obtain a connecting rod with submicrometric grain size. The optimization of the design process is shown as well as the die design. The objective variables to be fulfilled are the correct filling of the die and the required force to obtain the part. Moreover, a comparison is also included between the mechanical properties thus obtained and those obtained with traditional methods. Moreover, optical and SEM micrographs are also included in this research work.
url http://dx.doi.org/10.1155/2015/868065
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