The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3)
<p class="Default">Aluminum alloys composite is one of the most common types of composite materials and are used a lot in the recent years. In this paper, it had been dealt with the effects of the heat treatment techniques and some centrifugal casting parameters on the fatigue behavi...
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Tikrit University
2017-02-01
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author | Salah F. AbdulJabbar Thaer F.A. ALSultan Faris H. Mohand A. Hamid |
author_facet | Salah F. AbdulJabbar Thaer F.A. ALSultan Faris H. Mohand A. Hamid |
author_sort | Salah F. AbdulJabbar |
collection | DOAJ |
description | <p class="Default">Aluminum alloys composite is one of the most common types of composite materials and are used a lot in the recent years. In this paper, it had been dealt with the effects of the heat treatment techniques and some centrifugal casting parameters on the fatigue behavior of the composite material (A380/Al<sub>2</sub>O<sub>3</sub>) for high-cycle fatigue resistance which is one of the most important property for the automotive industry. It has been used aluminum alloy A380 with alumina particles Al<sub>2</sub>O<sub>3</sub> to form composite materials through the process of centrifugal casting. The proportions were 10% and 20% with a grain size 63μm. After there, it has been manufactured Thirty-two models of composite material (A380/ Al<sub>2</sub>O<sub>3</sub>). Half of them are examined directly without treatment while the other half was treated with (T6) and then examined. The results showed that adding the amount of alumina 20% without heat treatment will increase relatively resistant composite material for the fatigue resistance by 17% percentage. And adding 10% alumina to the composite material and them cause distortion of the surface structure samples had been by blisters with completely discolored. A high Alumina content improves the fatigue behavior of the composite material (A380/Al<sub>2</sub>O<sub>3</sub>).</p><p class="Default"> </p><p class="Default">DOI: <a href="http://dx.doi.org/10.25130/tjes.24.2017.29">http://dx.doi.org/10.25130/tjes.24.2017.29</a></p> |
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last_indexed | 2024-03-12T06:49:46Z |
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spelling | doaj.art-f699f00c5f284b248ca544f3c7ee23262023-09-03T00:22:47ZengTikrit UniversityTikrit Journal of Engineering Sciences1813-162X2312-75892017-02-01243344110.25130/tjes.24.3.05374The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3)Salah F. AbdulJabbar0Thaer F.A. ALSultan1Faris H.2Mohand A. Hamid3Mechanical Department, Dour-Institute Technical, Northern Technical UniversityMechanical Department, Dour-Institute Technical, Northern Technical UniversityMechanical Department, Dour-Institute Technical, Northern Technical UniversityMechanical Department, Dour-Institute Technical, Northern Technical University<p class="Default">Aluminum alloys composite is one of the most common types of composite materials and are used a lot in the recent years. In this paper, it had been dealt with the effects of the heat treatment techniques and some centrifugal casting parameters on the fatigue behavior of the composite material (A380/Al<sub>2</sub>O<sub>3</sub>) for high-cycle fatigue resistance which is one of the most important property for the automotive industry. It has been used aluminum alloy A380 with alumina particles Al<sub>2</sub>O<sub>3</sub> to form composite materials through the process of centrifugal casting. The proportions were 10% and 20% with a grain size 63μm. After there, it has been manufactured Thirty-two models of composite material (A380/ Al<sub>2</sub>O<sub>3</sub>). Half of them are examined directly without treatment while the other half was treated with (T6) and then examined. The results showed that adding the amount of alumina 20% without heat treatment will increase relatively resistant composite material for the fatigue resistance by 17% percentage. And adding 10% alumina to the composite material and them cause distortion of the surface structure samples had been by blisters with completely discolored. A high Alumina content improves the fatigue behavior of the composite material (A380/Al<sub>2</sub>O<sub>3</sub>).</p><p class="Default"> </p><p class="Default">DOI: <a href="http://dx.doi.org/10.25130/tjes.24.2017.29">http://dx.doi.org/10.25130/tjes.24.2017.29</a></p>http://www.tj-es.com/vol24no3pa5Fatigue test, heat treatment, centrifugal casting, aluminum alloy, composite material |
spellingShingle | Salah F. AbdulJabbar Thaer F.A. ALSultan Faris H. Mohand A. Hamid The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3) Tikrit Journal of Engineering Sciences Fatigue test, heat treatment, centrifugal casting, aluminum alloy, composite material |
title | The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3) |
title_full | The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3) |
title_fullStr | The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3) |
title_full_unstemmed | The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3) |
title_short | The effects of Heat Treatment (T6) Technique and Some Centrifugal Casting Parameters on the Fatigue behavior of the Composite Material (A380/Al2O3) |
title_sort | effects of heat treatment t6 technique and some centrifugal casting parameters on the fatigue behavior of the composite material a380 al2o3 |
topic | Fatigue test, heat treatment, centrifugal casting, aluminum alloy, composite material |
url | http://www.tj-es.com/vol24no3pa5 |
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