Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy

The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical properties (yield and tensile strength) of Al 6063 alloy along with its fatigue behavior. The severe plastic deformation was carried out by using Equal Channel Angular Pressing (ECAP) technique. This t...

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Main Authors: Razzaq, A. M., Majid, D. L., Uday, M. B., Ishak, M. R., Hashim, N.
Format: Article
Published: Medwell Journals 2017
Subjects:
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author Razzaq, A. M.
Majid, D. L.
Uday, M. B.
Ishak, M. R.
Hashim, N.
author_facet Razzaq, A. M.
Majid, D. L.
Uday, M. B.
Ishak, M. R.
Hashim, N.
author_sort Razzaq, A. M.
collection ePrints
description The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical properties (yield and tensile strength) of Al 6063 alloy along with its fatigue behavior. The severe plastic deformation was carried out by using Equal Channel Angular Pressing (ECAP) technique. This technique was used to refine grains into ultrafine grain size of the metal alloy without changing the cross-sectional dimensions of the work piece. Prior to the ECAP deformation process the material was annealed for 2 h at 415°C. The Al 6063 alloy specimens with 12×12 mm cross section and 100 mm length were machined from these annealed bars. They were pressed at room temperature with a speed rate of 10 mm/min through 120° die channel angle using a 100 KN hydraulic press machine. Molybdenum disulfide was used as lubricant for reducing friction between the work piece and ECAP die. The tensile tests were conducted before and after ECAP at room temperature with a fixed cross head displacement rate 1 mm/min using a hydraulic machine. The Fatigue life was tested under axial loading tension-compression with stress ratio R = -1. The results showed a significant improvement in mechanical properties of Al 6063 alloy after ECAP technique. Furthermore, the improvement of the fatigue life in the high-cycle fatigue region was substantial compared with low-cycle fatigue region.
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spelling utm.eprints-808002019-06-27T07:02:10Z http://eprints.utm.my/80800/ Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy Razzaq, A. M. Majid, D. L. Uday, M. B. Ishak, M. R. Hashim, N. TK Electrical engineering. Electronics Nuclear engineering The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical properties (yield and tensile strength) of Al 6063 alloy along with its fatigue behavior. The severe plastic deformation was carried out by using Equal Channel Angular Pressing (ECAP) technique. This technique was used to refine grains into ultrafine grain size of the metal alloy without changing the cross-sectional dimensions of the work piece. Prior to the ECAP deformation process the material was annealed for 2 h at 415°C. The Al 6063 alloy specimens with 12×12 mm cross section and 100 mm length were machined from these annealed bars. They were pressed at room temperature with a speed rate of 10 mm/min through 120° die channel angle using a 100 KN hydraulic press machine. Molybdenum disulfide was used as lubricant for reducing friction between the work piece and ECAP die. The tensile tests were conducted before and after ECAP at room temperature with a fixed cross head displacement rate 1 mm/min using a hydraulic machine. The Fatigue life was tested under axial loading tension-compression with stress ratio R = -1. The results showed a significant improvement in mechanical properties of Al 6063 alloy after ECAP technique. Furthermore, the improvement of the fatigue life in the high-cycle fatigue region was substantial compared with low-cycle fatigue region. Medwell Journals 2017 Article PeerReviewed Razzaq, A. M. and Majid, D. L. and Uday, M. B. and Ishak, M. R. and Hashim, N. (2017) Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy. Journal of Engineering and Applied Sciences, 12 (8). pp. 2143-2147. ISSN 1816-949X http://medwelljournals.com/abstract/?doi=jeasci.2017.2143.2147
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Razzaq, A. M.
Majid, D. L.
Uday, M. B.
Ishak, M. R.
Hashim, N.
Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy
title Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy
title_full Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy
title_fullStr Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy
title_full_unstemmed Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy
title_short Effect of equal channel angular pressing on yield stress and fatigue properties of Al 6063 alloy
title_sort effect of equal channel angular pressing on yield stress and fatigue properties of al 6063 alloy
topic TK Electrical engineering. Electronics Nuclear engineering
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