Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]

Microstructural development, post-weld ageing response and mechanical properties of gas tungsten arc and C02 laser welded AI-6%Cu (AA2219) alloy were investigated in the present study. The fusion zone of laser weld consists of three parts the fine grains in the middle part, the columnar zone and equ...

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Published in:Praktische Metallographie/Practical Metallography
Main Author: Talari M.K.; Kishore Babu N.
Format: Article
Language:German
Published: 2013
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84887267411&doi=10.3139%2f147.110244&partnerID=40&md5=49fe69d9bf01da86fc99262200fe2b8a
id 2-s2.0-84887267411
spelling 2-s2.0-84887267411
Talari M.K.; Kishore Babu N.
Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
2013
Praktische Metallographie/Practical Metallography
50
10
10.3139/147.110244
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84887267411&doi=10.3139%2f147.110244&partnerID=40&md5=49fe69d9bf01da86fc99262200fe2b8a
Microstructural development, post-weld ageing response and mechanical properties of gas tungsten arc and C02 laser welded AI-6%Cu (AA2219) alloy were investigated in the present study. The fusion zone of laser weld consists of three parts the fine grains in the middle part, the columnar zone and equiaxed zone adjacent to fusion boundary. In contrast, fusion zone of gas tungsten arc weld consists of two parts: the columnar zone in the middle part and the equiaxed zone adjacent to fusion boundary The size of the equiaxed grains in the fusion zone was the least in the laser welds when compared to gas tungsten arc welds. Laser welds have exhibited higher hardness, post weld ageing response, yield strength, ductility and fatigue strength when compared with gas tungsten arc welds Fine equiaxed grain morphology and discontinues eutectic distribution in the laser weld fusion zone could be attributed to the improved tensile and fatigue properties of laser welded samples. 'Thermal pinning effect', due to non isothermal conditions, has arrested grain growth in heat affected zone in spite of temperatures close to the melting point of aluminum in heat affected zone.

0032678X
German
Article

author Talari M.K.; Kishore Babu N.
spellingShingle Talari M.K.; Kishore Babu N.
Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
author_facet Talari M.K.; Kishore Babu N.
author_sort Talari M.K.; Kishore Babu N.
title Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
title_short Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
title_full Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
title_fullStr Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
title_full_unstemmed Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
title_sort Microstructure evolution and mechanical properties investigation of Al-6 %Cu alloy laser and GTA welds; [Untersuchung der Mikrostrukturentwicklung und der mechanischen Eigenschaften von Laser- und WIG-Schweißnähten einer Al-6%Cu-Legierung]
publishDate 2013
container_title Praktische Metallographie/Practical Metallography
container_volume 50
container_issue 10
doi_str_mv 10.3139/147.110244
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84887267411&doi=10.3139%2f147.110244&partnerID=40&md5=49fe69d9bf01da86fc99262200fe2b8a
description Microstructural development, post-weld ageing response and mechanical properties of gas tungsten arc and C02 laser welded AI-6%Cu (AA2219) alloy were investigated in the present study. The fusion zone of laser weld consists of three parts the fine grains in the middle part, the columnar zone and equiaxed zone adjacent to fusion boundary. In contrast, fusion zone of gas tungsten arc weld consists of two parts: the columnar zone in the middle part and the equiaxed zone adjacent to fusion boundary The size of the equiaxed grains in the fusion zone was the least in the laser welds when compared to gas tungsten arc welds. Laser welds have exhibited higher hardness, post weld ageing response, yield strength, ductility and fatigue strength when compared with gas tungsten arc welds Fine equiaxed grain morphology and discontinues eutectic distribution in the laser weld fusion zone could be attributed to the improved tensile and fatigue properties of laser welded samples. 'Thermal pinning effect', due to non isothermal conditions, has arrested grain growth in heat affected zone in spite of temperatures close to the melting point of aluminum in heat affected zone.
publisher
issn 0032678X
language German
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