Progress on rapid hot gas forming of titanium alloys: mechanism, modelling, innovations and applications
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Artificial Intelligence,Industrial and Manufacturing Engineering
Reference23 articles.
1. Titanium and titanium alloys;Leyens,2003
2. Developments and perspectives on the precision forming processes for ultra-large size integrated components;Yuan;International Journal of Extreme Manufacturing,2019
3. Tube Shear Hydro-bending of Titanium Alloys;Han;Procedia Engineering,2014
4. Some Advances in Plastic Forming Technologies of Titanium Alloys;Yang;Procedia Engineering,2014
5. Perspectives on Titanium Science and Technology;Banerjee;Acta Mater,2013
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1. Evolution of hot metal gas forming (HMGF) technologies and its applications: a review;The International Journal of Advanced Manufacturing Technology;2024-02-24
2. Optimization of hot gas pressure forming process for titanium alloy component;International Journal of Material Forming;2023-01-28
3. Study on fast gas forming with in-die quenching for titanium alloys and the strengthening mechanisms of the components;Journal of Materials Research and Technology;2022-05
4. Effect of grain size on the yield stress and microscopic mechanism of a near-α titanium alloy during non-superplastic hot deformation;Materials Science and Engineering: A;2022-04
5. Analysing the Interaction between Microscopic Deformation, Microstructure and Void Evolution of Near-α Titanium Alloys during Non-Superplastic Hot Deformation by an Integrated Crystal Plasticity Finite Element Model;Materials;2021-12-31
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