We calculate both the micromechanical response and bulk elastic constants of composites of rods embedded in elastic media. We find two fixed points for Poisson's ratio with respect to rod density: there is an unstable fixed point for Poisson's ratio =1/2 (an incompressible system) and a stable fixed point for Poisson's ratio =1/4 (a compressible system). We also derive approximate expressions for the elastic constants for arbitrary rod density, which agree with exact results for both low and high density. These results may help to explain recent experiments that reported compressibility for composites of microtubules in filamentous actin networks. © 2010 The American Physical Society
Finite element simulations of rubbers and biological soft tissue usually assume that the material be...
Poisson's ratio ow diagrams, that is, the Poisson's ratio versus the ber frac-tion, are o...
Finite element simulations of rubbers and biological soft tissue usually assume that the material be...
We report detailed theoretical investigations of the micromechanics and bulk elastic properties of c...
In comparing a material's resistance to distort under mechanical load rather than to alter in volume...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
In comparing a material's resistance to distort under mechanical load rather than to alter in volume...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
Finite element simulations of rubbers and biological soft tissue usually assume that the material be...
Poisson's ratio ow diagrams, that is, the Poisson's ratio versus the ber frac-tion, are o...
Finite element simulations of rubbers and biological soft tissue usually assume that the material be...
We report detailed theoretical investigations of the micromechanics and bulk elastic properties of c...
In comparing a material's resistance to distort under mechanical load rather than to alter in volume...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
In comparing a material's resistance to distort under mechanical load rather than to alter in volume...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
The paper discusses the restrictions the positive definite character of the strain energy imposes to...
International audienceIn comparing a material's resistance to distort under mechanical load rather t...
Finite element simulations of rubbers and biological soft tissue usually assume that the material be...
Poisson's ratio ow diagrams, that is, the Poisson's ratio versus the ber frac-tion, are o...
Finite element simulations of rubbers and biological soft tissue usually assume that the material be...