Microstructure and mechanical properties of crack - free Ni - based GH3536 superalloy fabricated by laser solid forming

Author:

Xiao Lairong,Peng Zhenwu,Zhao Xiaojun,Tu Xiaoxuan,Cai Zhenyang,Zhong Qi,Wang Sen,Yu Huali

Funder

Central South University

Natural Science Foundation of Hunan Province

National Defense Basic Scientific Research Program of China

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials

Reference33 articles.

1. Crack mitigation in laser powder bed fusion processed hastelloy X using a combined numerical-experimental approach;Ivekovi;J. Alloy. Compd.,2021

2. Customizing mechanical properties of additively manufactured Hastelloy X parts by adjusting laser scanning speed;Re;J. Alloy. Compd.,2020

3. Effect of electrolyte solutions on the electrochemical dissolution behavior of additively manufactured Hastelloy X superalloy via laser solid forming;Zhang;J. Alloy. Compd.,2021

4. evolution and cracking behavior of Hastelloy X superalloy fabricated by laser directed energy deposition;Zhang;J. Alloy. Compd.,2022

5. Characterization of the microstructure and mechanical properties of highly textured and single crystal Hastelloy X thin struts fabricated by laser powder bed fusion;Sanchez-Mata;J. Alloy. Compd.,2022

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