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Semiflexible filamentous composites.
Huisman, E M; Heussinger, C; Storm, C; Barkema, G T.
Affiliation
  • Huisman EM; Universiteit Leiden, Instituut-Lorentz, Postbus 9506, NL-2300 RA Leiden, The Netherlands.
Phys Rev Lett ; 105(11): 118101, 2010 Sep 10.
Article in En | MEDLINE | ID: mdl-20867610
ABSTRACT
Inspired by the ubiquity of composite filamentous networks in nature, we investigate models of biopolymer networks that consist of interconnected floppy and stiff filaments. Numerical simulations carried out in three dimensions allow us to explore the microscopic partitioning of stresses and strains between the stiff and floppy fractions cs and cf and reveal a nontrivial relationship between the mechanical behavior and the relative fraction of stiff polymer when there are few stiff polymers, nonpercolated stiff "inclusions" are protected from large deformations by an encompassing floppy matrix, while at higher fractions of stiff material the stiff network is independently percolated and dominates the mechanical response.
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Collection: 01-internacional Database: MEDLINE Main subject: Biopolymers / Elasticity Language: En Journal: Phys Rev Lett Year: 2010 Type: Article Affiliation country: Netherlands
Search on Google
Collection: 01-internacional Database: MEDLINE Main subject: Biopolymers / Elasticity Language: En Journal: Phys Rev Lett Year: 2010 Type: Article Affiliation country: Netherlands