Discontinuously Reinforced Titanium Matrix Composites

Microstructure Design and Property Optimization

Nonfiction, Science & Nature, Technology, Material Science, Manufacturing
Cover of the book Discontinuously Reinforced Titanium Matrix Composites by Lujun Huang, Lin Geng, Springer Singapore
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Author: Lujun Huang, Lin Geng ISBN: 9789811044496
Publisher: Springer Singapore Publication: April 21, 2017
Imprint: Springer Language: English
Author: Lujun Huang, Lin Geng
ISBN: 9789811044496
Publisher: Springer Singapore
Publication: April 21, 2017
Imprint: Springer
Language: English

This book introduces readers to titanium matrix composites (TMCs) with novel network microstructures. The bottleneck problem of extreme brittleness and low strengthening effect surrounding TMCs fabricated by means of powder metallurgy has recently been solved by designing network microstructures, which yield both high strength and superior ductility. As such, network structured TMCs will increasingly offer materials characterized by low weight, high strength, high temperature resistance and superior deformability. The book systematically addresses the design, fabrication, microstructure, properties, modification, and toughening mechanisms of these composites, which will help us find innovative solutions to a range of current and future engineering problems.

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This book introduces readers to titanium matrix composites (TMCs) with novel network microstructures. The bottleneck problem of extreme brittleness and low strengthening effect surrounding TMCs fabricated by means of powder metallurgy has recently been solved by designing network microstructures, which yield both high strength and superior ductility. As such, network structured TMCs will increasingly offer materials characterized by low weight, high strength, high temperature resistance and superior deformability. The book systematically addresses the design, fabrication, microstructure, properties, modification, and toughening mechanisms of these composites, which will help us find innovative solutions to a range of current and future engineering problems.

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