In-situ neutron diffraction study of the strengthening mechanism and deformation behavior of cellular structure in high-entropy alloys by additive manufacturing

Author:

Shi J.Q.ORCID,Huang C.P.ORCID,Deng S.H.,Tan Z.J.,Lu H.L.,Hao J.Z.,Shen F.R.,Jia Y.F.,Chen J.,Wang Q.,He L.H.,Wang G.

Funder

China Academy of Space Technology

Shanghai Municipal Population and Family Planning Commission

Open Project Foundation of Information Technology Research Base of Civil Aviation Administration of China

Shanghai International Science and Technology

National Aerospace Science Foundation of China

National Natural Science Foundation of China

Publisher

Elsevier BV

Reference87 articles.

1. Exploring structural origins responsible for the exceptional mechanical property of additively manufactured 316L stainless steel via in-situ and comparative investigations;An;Int. J. Plast.,2023

2. Neutron diffraction;Bacon;Proc. Roy. Soc. London Ser. A-Math. Phys. Sci.,1949

3. In situ neutron diffraction study of phase stress evolution in a ferrous medium-entropy alloy under low-temperature tensile loading;Bae;Scr. Mater.,2019

4. The dislocation distribution, flow stress, and stored energy in cold-worked polycrystalline silver. The Philosophical Magazine: a;Bailey;J. Theor. Exp. Appl. Phys.,1960

5. Voigt-function modeling in fourier-analysis of size-broadened and strain-broadened X-ray-diffraction peaks;Balzar;J. Appl. Crystallogr.,1993

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