Tough and strong bioinspired nanocomposites with interfacial cross-links.
@article{Liu2016ToughAS,
title={Tough and strong bioinspired nanocomposites with interfacial cross-links.},
author={Ning Liu and Xiaowei Zeng and Ramana M. Pidaparti and Xianqiao Wang},
journal={Nanoscale},
year={2016},
volume={8 43},
pages={
18531-18540
}
}Strength and toughness are two mechanical properties that are generally mutually exclusive but highly sought-after in the design of advanced composite materials. There has only been limited progress in achieving both high strength and toughness in composite materials. However, the fundamental underlying mechanics remain largely unexplored, especially at the nanoscale. Inspired by the lamellar structure of nacre, here a layered graphene and polyethylene nanocomposite with tunable interfacial…
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References
SHOWING 1-10 OF 44 REFERENCES
Use of Synergistic Interactions to Fabricate Strong, Tough, and Conductive Artificial Nacre Based on Graphene Oxide and Chitosan.
- Engineering, Materials ScienceACS nano
- 2015
The strong, tough, conductive artificial nacre based on graphene oxide is shown through synergistic interactions of hydrogen and covalent bonding, which was 4 and 10 times higher, respectively, than that of natural nacre.
The conflicts between strength and toughness.
- Materials ScienceNature materials
- 2011
This work focuses on the interplay between the mechanisms that individually contribute to strength and toughness, noting that these phenomena can originate from very different lengthscales in a material's structural architecture.
Graphene-based artificial nacre nanocomposites.
- EngineeringChemical Society reviews
- 2016
A perspective of the dynamic area of graphene-based nanocomposites is focused on whether the concept is viable and practical, on what has been achieved to date, and most importantly, what is likely to be achieved in the future.
Large deformation mechanism of glassy polyethylene polymer nanocomposites: Coarse grain molecular dynamics study
- Materials Science
- 2015
An elastic model for bioinspired design of carbon nanotube bundles
- Engineering, Biology
- 2015
An elastic model is developed to describe the load transfer and failure propagation within the collagen-inspired CNT bundles and to establish the relations of the mechanical properties of the bundles with a number of geometrical and physical parameters such as the CNT aspect ratio and longitudinal gap, interface cross-link density, and the functionalization-induced degradation in CNTs.
The effect of interlayer adhesion on the mechanical behaviors of macroscopic graphene oxide papers.
- EngineeringACS nano
- 2011
Systematic mechanical tests have proven that the enhancement of the tensile modulus and strength of the GA-treated GO paper arose from the improved load-bearing capability of the nanosheets, and in situ Raman spectroscopy, the influences of interlayer adhesions on the fracture mechanisms of the strained GO papers were inferred.
Influence of cross-link structure, density and mechanical properties in the mesoscale deformation mechanisms of collagen fibrils
- Materials Science, BiologyJournal of the mechanical behavior of biomedical materials
- 2015










