Laser Welding of Thin Sheet Magnesium Alloys
Introduction: Magnesium and its alloys are active materials, and the oxide can easily form when they react with air and moisture (Czerwinski 2002). In addition, magnesium and its alloys are flammable and require strict safeguards during the manufacturing process. These disadvantages make the pro...
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ump-38682015-06-23T07:18:31Z http://umpir.ump.edu.my/id/eprint/3868/ Laser Welding of Thin Sheet Magnesium Alloys M., Ishak Yamasaki, Kazuhiko Maekawa, Katsuhiro TJ Mechanical engineering and machinery Introduction: Magnesium and its alloys are active materials, and the oxide can easily form when they react with air and moisture (Czerwinski 2002). In addition, magnesium and its alloys are flammable and require strict safeguards during the manufacturing process. These disadvantages make the processing of magnesium alloys into finished products more challenging. These drawbacks cause defects such as cracks, oxide inclusion, burn-through and voids both during and after processing. In order to minimize these defects, most processing methods must be performed at a certain temperature, unlike aluminum alloys and steels, which may be finished by cold working. Defect reduction can be achieved by minimizing the complexity of parts and the number of components produced. Furthermore, improved design techniques and production processing can eliminate defects in the finished products. Intech Open Access Publisher Dumitras, Dan C. 2012 Book Section PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/3868/1/FKM-2012-Mahadzir-InTech-Laser.pdf M., Ishak and Yamasaki, Kazuhiko and Maekawa, Katsuhiro (2012) Laser Welding of Thin Sheet Magnesium Alloys. In: Nd YAG Laser. Intech Open Access Publisher, pp. 135-157. ISBN 978-953-51-0105-5 (online) http://dx.doi.org/10.5772/35370 DOI: 10.5772/35370 |
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TJ Mechanical engineering and machinery M., Ishak Yamasaki, Kazuhiko Maekawa, Katsuhiro Laser Welding of Thin Sheet Magnesium Alloys |
description |
Introduction: Magnesium and its alloys are active materials, and the oxide can easily form when they
react with air and moisture (Czerwinski 2002). In addition, magnesium and its alloys are flammable and require strict safeguards during the manufacturing process. These
disadvantages make the processing of magnesium alloys into finished products more challenging. These drawbacks cause defects such as cracks, oxide inclusion, burn-through
and voids both during and after processing. In order to minimize these defects, most processing methods must be performed at a certain temperature, unlike aluminum alloys
and steels, which may be finished by cold working. Defect reduction can be achieved by minimizing the complexity of parts and the number of components produced. Furthermore,
improved design techniques and production processing can eliminate defects in the finished products. |
author2 |
Dumitras, Dan C. |
author_facet |
Dumitras, Dan C. M., Ishak Yamasaki, Kazuhiko Maekawa, Katsuhiro |
format |
Book Section |
author |
M., Ishak Yamasaki, Kazuhiko Maekawa, Katsuhiro |
author_sort |
M., Ishak |
title |
Laser Welding of Thin Sheet Magnesium Alloys |
title_short |
Laser Welding of Thin Sheet Magnesium Alloys |
title_full |
Laser Welding of Thin Sheet Magnesium Alloys |
title_fullStr |
Laser Welding of Thin Sheet Magnesium Alloys |
title_full_unstemmed |
Laser Welding of Thin Sheet Magnesium Alloys |
title_sort |
laser welding of thin sheet magnesium alloys |
publisher |
Intech Open Access Publisher |
publishDate |
2012 |
url |
http://umpir.ump.edu.my/id/eprint/3868/ http://umpir.ump.edu.my/id/eprint/3868/ http://umpir.ump.edu.my/id/eprint/3868/ http://umpir.ump.edu.my/id/eprint/3868/1/FKM-2012-Mahadzir-InTech-Laser.pdf |
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2023-09-18T21:58:26Z |
last_indexed |
2023-09-18T21:58:26Z |
_version_ |
1777414236082798592 |