A platform for research: civil engineering, architecture and urbanism
Effects of microstructure on fatigue crack propagation behavior in a bi-modal TC11 titanium alloy fabricated via laser additive manufacturing
Effects of microstructure on fatigue crack propagation behavior in a bi-modal TC11 titanium alloy fabricated via laser additive manufacturing
Effects of microstructure on fatigue crack propagation behavior in a bi-modal TC11 titanium alloy fabricated via laser additive manufacturing
Wang, Yafei (author) / Chen, Rui (author) / Cheng, Xu (author) / Zhu, Yanyan (author) / Zhang, Jikui (author) / Wang, Huaming (author)
Journal of materials science & technology ; 35 ; 403-408
2019-01-01
6 pages
Article (Journal)
English
DDC:
620.1105
© Metadata Copyright the British Library Board and other contributors. All rights reserved.
British Library Online Contents | 2019
|The superplasticity and microstructure evolution of TC11 titanium alloy
Elsevier | 2011
|The superplasticity and microstructure evolution of TC11 titanium alloy
British Library Online Contents | 2011
|Surface protection methods against fretting fatigue for TC11 titanium alloy
British Library Online Contents | 1998
|Hot corrosion behavior of TC11 titanium alloy treated by laser shock processing
British Library Online Contents | 2013
|