article Open AccessTop 1% cited
Additively manufactured hierarchical stainless steels with high strength and ductility
Nature Materials · 2017 · Vol. 17(1) · pp. 63–71
Yinmin Wang✉(Lawrence Livermore National Laboratory)Thomas Voisin(Lawrence Livermore National Laboratory)Joseph T. McKeown(Lawrence Livermore National Laboratory)Jianchao Ye(Lawrence Livermore National Laboratory)Nicholas P. Calta(Lawrence Livermore National Laboratory)Zan Li(Lawrence Livermore National Laboratory)Zhi Zeng(Georgia Institute of Technology)Yin Zhang(Georgia Institute of Technology)Wen Chen(Lawrence Livermore National Laboratory)Tien T. Roehling(Lawrence Livermore National Laboratory)Ryan Ott(Ames National Laboratory)Melissa K. Santala(Oregon State University)Philip J. Depond(Lawrence Livermore National Laboratory)Manyalibo J. Matthews(Lawrence Livermore National Laboratory)Alex V. Hamza(Lawrence Livermore National Laboratory)Ting Zhu(Georgia Institute of Technology)
Additive Manufacturing Materials and ProcessesAdditive Manufacturing and 3D Printing TechnologiesHigh Entropy Alloys StudiesMaterials scienceMicrostructureDuctility (Earth science)Ultimate tensile strengthWork hardeningAusteniteGrain boundaryDislocationStructural materialCrystal twinning
Funding
- National Science Foundation
- U.S. Department of Energy
- M.J. Murdock Charitable Trust
- Office of Science
- Argonne National Laboratory
- Lawrence Livermore National Laboratory
Citations
2,440
FWCI
97.98
field-weighted impact
References
73
Percentile
100%
vs. same field & year
Citations per year
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