Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang… - Proceedings of the …, 2021 - National Acad Sciences
Mechanical properties are fundamental to structural materials, where dislocations play a
decisive role in describing their mechanical behavior. Although the high-yield stresses of …

[PDF][PDF] Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Peia, S Zhangb, Y Leic, F Zhangd, M Chene - researchgate.net
Mechanical properties are fundamental to structural materials, where dislocations play a
decisive role in describing their mechanical behavior. Although the high-yield stresses of …

Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys.

Z Pei, S Zhang, Y Lei, F Zhang… - Proceedings of the …, 2021 - europepmc.org
Mechanical properties are fundamental to structural materials, where dislocations play a
decisive role in describing their mechanical behavior. Although the high-yield stresses of …

Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang, M Chen - … of Sciences of the United States …, 2021 - osti.gov
We report that mechanical properties are fundamental to structural materials, where
dislocations play a decisive role in describing their mechanical behavior. Although the high …

[引用][C] Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang, M Chen - Proceedings of the National …, 2021 - pure.mpg.de
Decoupling between Shockley partials and stacking faults strengthens multiprincipal element
alloys :: MPG.PuRe English Help Privacy Policy Disclaimer Include files Advanced SearchBrowse …

Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang, M Chen - Proceedings of the National …, 2021 - par.nsf.gov
Mechanical properties are fundamental to structural materials, where dislocations play a
decisive role in describing their mechanical behavior. Although the high-yield stresses of …

[HTML][HTML] Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang… - Proceedings of the …, 2021 - ncbi.nlm.nih.gov
Mechanical properties are fundamental to structural materials, where dislocations play a
decisive role in describing their mechanical behavior. Although the high-yield stresses of …

Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang… - Proceedings of the …, 2021 - ui.adsabs.harvard.edu
Alloys play crucial roles in the civilization history of human beings. Recently, a group of
novel alloys without principal elements—ie, multiprincipal element alloys—have been …

Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang, M Chen - … Academy of Sciences of the United …, 2021 - JSTOR
Mechanical properties are fundamental to structural materials, where dislocations play a
decisive role in describing their mechanical behavior. Although the high-yield stresses of …

Decoupling between Shockley partials and stacking faults strengthens multiprincipal element alloys

Z Pei, S Zhang, Y Lei, F Zhang… - Proceedings of the …, 2021 - pubmed.ncbi.nlm.nih.gov
Mechanical properties are fundamental to structural materials, where dislocations play a
decisive role in describing their mechanical behavior. Although the high-yield stresses of …