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Title: | Additive Manufacturing for Crack Repair Applications in Metals: A Case of Titanium (Ti) Alloys | Authors: | Marazani, Tawanda Madyira, Daniel Makundwaneyi Akinlabi, Esther Titilayo |
Keywords: | Additive manufacturing (AM) Crack Repair Applications Metals Titanium (Ti) Alloys 3D CAD model |
Issue Date: | 2019 | Publisher: | IGI Global | Series/Report no.: | Additive Manufacturing Technologies From an Optimization Perspective;Chapter 4; Pages 77 - 101 | Abstract: | Additive manufacturing (AM) builds intricate parts from 3D CAD model data in successive layers. AM offers several advantages and has become a preferred freeform fabrication, processing, manufacturing, maintenance, and repair technique for metals, thermoplastics, ceramics, and composites. When using laser, it bears several names, which include laser additive manufacturing, laser additive technology, laser metal deposition, laser engineered net shape, direct metal deposition, and laser solid forming. These technologies use a laser beam to locally melt the powder or wire and the substrate that fuse upon solidification. AM is mainly applied in the aerospace and biomedical industries. Titanium (Ti) alloys offer very attractive properties much needed in these industries. This chapter explores AM applications for crack repairs in Ti alloys. Metal cracking industrial challenges, crack detection and repair methods, challenges, and milestones for AM repair of cracks in Ti alloys are also discussed. | URI: | 10.4018/978-1-5225-9167-2.ch004 http://hdl.handle.net/11408/5135 |
ISBN: | 9781522591672 9781522591696| |
Appears in Collections: | Book Chapters |
Files in This Item:
File | Description | Size | Format | |
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Additive Manufacturing for Crack Repair Applications in Metals.pdf | Abstract | 58.85 kB | Adobe PDF | View/Open |
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