On the Influence of Temperature and Number of Passes on the Mechanical Properties of an Al–Mg Alloy Processed by Cyclic Expansion Extrusion
The influence of working temperature and number of passes on the mechanical properties of aluminium alloy, AA 5083, processed by cyclic expansion and extrusion (CEE) is discussed. The specimens were processed up-to 10 CEE passes at 200 °C, 300 °C and 400 °C. The average grain size of the starting an...
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Published in | Metals and materials international Vol. 27; no. 8; pp. 2919 - 2932 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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Seoul
The Korean Institute of Metals and Materials
01.08.2021
Springer Nature B.V 대한금속·재료학회 |
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Abstract | The influence of working temperature and number of passes on the mechanical properties of aluminium alloy, AA 5083, processed by cyclic expansion and extrusion (CEE) is discussed. The specimens were processed up-to 10 CEE passes at 200 °C, 300 °C and 400 °C. The average grain size of the starting annealed material was 84.5 ± 6.8 μm, with 39.4% being of the high-angle grain boundaries (HAGBs) type. After 8 CEE passes at 200 °C the material had an average grain size of 3.3 ± 0.6 μm and 41.3% of the grain boundaries were of the high-angle type (HAGBs). The combined effect of an increase in dislocation density and reduction in grain size as a result of CEE processing contributed to an increase in hardness and strength of the alloy. At 200 °C, the specimen exhibited uniform hardness values with a maximum improvement of 104% after 8 passes and the ultimate tensile strength had also increased by 64% compared with the unprocessed condition. However, the mechanical properties decreased in the specimens that were processed at the higher temperatures of 300 °C and 400 °C.
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AbstractList | The influence of working temperature and number of passes on the mechanical properties of aluminium alloy, AA 5083, processed by cyclic expansion and extrusion (CEE) is discussed. The specimens were processed up-to 10 CEE passes at 200 °C, 300 °C and 400 °C. The average grain size of the starting annealed material was 84.5 ± 6.8 μm, with 39.4% being of the high-angle grain boundaries (HAGBs) type. After 8 CEE passes at 200 °C the material had an average grain size of 3.3 ± 0.6 μm and 41.3% of the grain boundaries were of the high-angle type (HAGBs). The combined effect of an increase in dislocation density and reduction in grain size as a result of CEE processing contributed to an increase in hardness and strength of the alloy. At 200 °C, the specimen exhibited uniform hardness values with a maximum improvement of 104% after 8 passes and the ultimate tensile strength had also increased by 64% compared with the unprocessed condition. However, the mechanical properties decreased in the specimens that were processed at the higher temperatures of 300 °C and 400 °C.
Graphic abstract The influence of working temperature and number of passes on the mechanical properties of aluminium alloy, AA 5083,processed by cyclic expansion and extrusion (CEE) is discussed. The specimens were processed up-to 10 CEE passes at200 °C, 300 °C and 400 °C. The average grain size of the starting annealed material was 84.5 ± 6.8 μm, with 39.4% beingof the high-angle grain boundaries (HAGBs) type. After 8 CEE passes at 200 °C the material had an average grain size of3.3 ± 0.6 μm and 41.3% of the grain boundaries were of the high-angle type (HAGBs). The combined effect of an increasein dislocation density and reduction in grain size as a result of CEE processing contributed to an increase in hardness andstrength of the alloy. At 200 °C, the specimen exhibited uniform hardness values with a maximum improvement of 104% after8 passes and the ultimate tensile strength had also increased by 64% compared with the unprocessed condition. However,the mechanical properties decreased in the specimens that were processed at the higher temperatures of 300 °C and 400 °C. KCI Citation Count: 0 The influence of working temperature and number of passes on the mechanical properties of aluminium alloy, AA 5083, processed by cyclic expansion and extrusion (CEE) is discussed. The specimens were processed up-to 10 CEE passes at 200 °C, 300 °C and 400 °C. The average grain size of the starting annealed material was 84.5 ± 6.8 μm, with 39.4% being of the high-angle grain boundaries (HAGBs) type. After 8 CEE passes at 200 °C the material had an average grain size of 3.3 ± 0.6 μm and 41.3% of the grain boundaries were of the high-angle type (HAGBs). The combined effect of an increase in dislocation density and reduction in grain size as a result of CEE processing contributed to an increase in hardness and strength of the alloy. At 200 °C, the specimen exhibited uniform hardness values with a maximum improvement of 104% after 8 passes and the ultimate tensile strength had also increased by 64% compared with the unprocessed condition. However, the mechanical properties decreased in the specimens that were processed at the higher temperatures of 300 °C and 400 °C.Graphic abstract |
Author | Babu, V. Padmanabhan, K. A. Shanmugavel, Balasivanandha Prabu |
Author_xml | – sequence: 1 givenname: V. surname: Babu fullname: Babu, V. email: vbabume@gmail.com organization: Department of Mechanical Engineering, College of Engineering Guindy, Anna University – sequence: 2 givenname: Balasivanandha Prabu surname: Shanmugavel fullname: Shanmugavel, Balasivanandha Prabu organization: Department of Mechanical Engineering, College of Engineering Guindy, Anna University – sequence: 3 givenname: K. A. surname: Padmanabhan fullname: Padmanabhan, K. A. organization: Department of Mechanical Engineering, College of Engineering Guindy, Anna University |
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CitedBy_id | crossref_primary_10_1007_s43452_020_00160_9 crossref_primary_10_1007_s11665_020_05264_0 crossref_primary_10_1007_s12540_023_01423_9 crossref_primary_10_1016_j_matchemphys_2022_126976 crossref_primary_10_1007_s11665_024_09163_6 crossref_primary_10_1007_s11665_020_05151_8 |
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Snippet | The influence of working temperature and number of passes on the mechanical properties of aluminium alloy, AA 5083, processed by cyclic expansion and extrusion... The influence of working temperature and number of passes on the mechanical properties of aluminium alloy, AA 5083,processed by cyclic expansion and extrusion... |
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SubjectTerms | Aluminum base alloys Characterization and Evaluation of Materials Chemistry and Materials Science Dislocation density Engineering Thermodynamics Extrusion Grain boundaries Grain size Hardness Heat and Mass Transfer Machines Magnesium Magnetic Materials Magnetism Manufacturing Materials Science Mechanical properties Metallic Materials Processes Solid Mechanics Ultimate tensile strength 재료공학 |
Title | On the Influence of Temperature and Number of Passes on the Mechanical Properties of an Al–Mg Alloy Processed by Cyclic Expansion Extrusion |
URI | https://link.springer.com/article/10.1007/s12540-020-00781-y https://www.proquest.com/docview/2558107354/abstract/ https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002743322 |
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ispartofPNX | Metals and Materials International, 2021, 27(8), , pp.2919-2932 |
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