High-temperature high cycle fatigue performance of laser powder bed fusion fabricated Hastelloy X: Study into the microstructure and oxidation effects

Author:

Liu Minghao,Zhang Kai,Liu Jianwen,Zhu Jing,Liu Jie,He Qingsheng,Hodgson Peter,Zhang RuifengORCID,Zhu YumanORCID,Huang Aijun

Funder

University of Shanghai for Science and Technology

Publisher

Elsevier BV

Reference61 articles.

1. Improvement of wetting and necking of nickel-based superalloys fabricated by sequential dual-laser powder bed fusion via particle-scale computational fluid dynamics;Jiang;Addit. Manuf.,2022

2. Process optimization and mechanical properties of oxide dispersion strengthened nickel-based superalloy by selective laser melting;Wang;Mater. Des.,2020

3. Strengthening mechanism of a Ni-based superalloy prepared by laser powder bed fusion: The role of cellular structure;Liu;Mater. Des.,2023

4. Additive manufacturing of high-strength crack-free Ni-based Hastelloy X superalloy;Han;Addit. Manuf.,2019

5. Microstructure and mechanical properties of Hastelloy X produced by HP-SLM (high power selective laser melting);Montero-Sistiaga;Mater. Des.,2019

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