High-strength Ti–BN composites with core-shell structured matrix and network-woven structured TiB nanowires
Author:
Funder
Australian Research Council
China Scholarship Council
Baosteel-Australia Joint Research and Development Centre
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Geotechnical Engineering and Engineering Geology,Condensed Matter Physics
Reference33 articles.
1. Processing-structure-property aspects of particulate-and whisker-reinforced titanium matrix composites [J];TJONG;Composites Science and Technology,2008
2. Processing and properties of titanium–titanium boride (TiBw) matrix composites—A review [J];MORSI;Journal of Materials Science,2007
3. A cost-effective P/M titanium matrix composite for automobile use [J];SAITO;Advanced Performance Materials,1995
4. Particulate reinforced metal matrix composites—A review [J];IBRAHIM;Journal of Materials Science,1991
5. Laser in-situ synthesis of titanium matrix composite coating with TiB–Ti network-like structure reinforcement [J];LIN;Transactions of Nonferrous Metals Society of China,2019
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