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  4. Self-assembled ultra high strength, ultra stiff mechanical metamaterials based on inverse opals
 
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Self-assembled ultra high strength, ultra stiff mechanical metamaterials based on inverse opals

Publikationstyp
Journal Article
Date Issued
2015-03-30
Sprache
English
Author(s)
Rosário, Jefferson J. do  
Lilleodden, Erica  
Waleczek, Martin  
Kubrin, Roman  
Petrov, Alexander  orcid-logo
Dyachenko, Pavel N.  
Sabisch, Julian E. C.  
Nielsch, Kornelius  
Huber, Norbert  orcid-logo
Eich, Manfred  
Schneider, Gerold A.  
Institut
Keramische Hochleistungswerkstoffe M-9  
Optische und Elektronische Materialien E-12  
TORE-URI
http://hdl.handle.net/11420/6357
Journal
Advanced engineering materials  
Volume
17
Issue
10
Start Page
1420
End Page
1424
Citation
Advanced Engineering Materials 10 (17): 1420-1424 (2015-10-01)
Publisher DOI
10.1002/adem.201500118
Scopus ID
2-s2.0-84942905396
Publisher
Wiley-VCH Verl.
Researchers show that mechanical metamaterials based on ceramic inverse opaline structures with densities in the range of 330-910 kgm-3 are suitable as photonic crystals and have better stiffness- and compressive strength-to-weight ratios as compared to microfabricated optimized strut-based structures. The stiffness- and compressive strength-to-weight ratios are also lower than carbon nanoframes fabricated by interference lithography. Pure silica inverse opal structures and silica inverse opals whose pores have been internally coated by a thin TiO2 layer have been fabricated and their structural and mechanical behavior has been investigated.
DDC Class
530: Physik
600: Technik
Funding(s)
SFB 986: Teilprojekt A6 - Herstellung und Charakterisierung hierarchischer, multi-funktionaler Keramik/Metall-Polymer Materialsysteme  
SFB 986: Teilprojekt B4 - Mikromechanisches Materialverhalten hierarchischer Werkstoffe  
SFB 986: Teilprojekt C2 - Keramikbasierte hochtemperaturstabile Wärmestrahlungsreflektoren und Strukturfarben  
SFB 986: Teilprojekt C4 - Deposition, Ordnung und mechanische Stabilität von Beschichtungen aus assemblierten Partikeln mit enger Größenverteilung  
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