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  4. Scaling behavior of stiffness and strength of hierarchical network nanomaterials
 
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Scaling behavior of stiffness and strength of hierarchical network nanomaterials

Publikationstyp
Journal Article
Date Issued
2021-03-05
Sprache
English
Author(s)
Shi, Shan  
Li, Yong  orcid-logo
Ngo, Dinh Bao Nam  orcid-logo
Markmann, Jürgen 
Weissmüller, Jörg  
Institut
Werkstoffphysik und -technologie M-22  
TORE-URI
http://hdl.handle.net/11420/9135
Journal
Science / AAAS  
Volume
371
Issue
6533
Start Page
1026
End Page
1033
Citation
Science / AAAS 371 (6533): 1026-1033 (2021)
Publisher DOI
10.1126/science.abd9391
Scopus ID
2-s2.0-85102185222
Structural hierarchy can enhance the mechanical behavior of materials and systems. This is exemplified by the fracture toughness of nacre or enamel in nature and by human-made architected microscale network structures. Nanoscale structuring promises further strengthening, yet macroscopic bodies built this way contain an immense number of struts, calling for scalable preparation schemes. In this work, we demonstrated macroscopic hierarchical network nanomaterials made by the self-organization processes of dealloying. Their hierarchical architecture affords enhanced strength and stiffness at a given solid fraction, and it enables reduced solid fractions by dealloying. Scaling laws for the mechanics and atomistic simulation support the observations. Because they expose the systematic benefits of hierarchical structuring in nanoscale network structures, our materials may serve as prototypes for future lightweight structural materials.
DDC Class
000: Allgemeines, Wissenschaft
Funding(s)
SFB 986: Teilprojekt B2 - Feste und leichte Hybridwerkstoffe auf Basis nanoporöser Metalle  
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