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Mechanics of soft composites of rods in elastic gels

机译:弹性凝胶中棒的软复合材料的力学

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摘要

We report detailed theoretical investigations of the micromechanics and bulk elastic properties of composites consisting of randomly distributed stiff fibers embedded in an elastic matrix in two and three dimensions. Recent experiments have suggested that the inclusion of stiff microtubules in a softer, nearly incompressible biopolymer matrix can lead to emergent compressibility. This can be understood in terms of the enhancement of the compressibility of the composite relative to its shear compliance as a result of the addition of stiff rodlike inclusions. We show that the Poisson's ratio ν of such a composite evolves with increasing rod density toward a particular value, or fixed point, independent of the material properties of the matrix, as long as it has a finite initial compressibility. This fixed point is ν=1/4 in three dimensions and ν=1/3 in two dimensions. Our results suggest an important role for stiff filaments such as microtubules and stress fibers in cell mechanics. At the same time, our work has a wider elasticity context, with potential applications to composite elastic media with a wide separation of scales in stiffness of its constituents such as carbon nanotube-polymer composites, which have been shown to have highly tunable mechanics. © 2011 American Physical Society.
机译:我们报告了详细的理论研究的复合材料的微观力学和体弹性特性,这种复合材料由嵌入二维和三维弹性矩阵中的随机分布的硬质纤维组成。最近的实验表明,在较软,几乎不可压缩的生物聚合物基质中包含坚硬的微管会导致出现可压缩性。可以理解为,由于添加了刚性的棒状夹杂物,复合材料的压缩性相对于其剪切柔韧性有所提高。我们表明,这种复合材料的泊松比v随杆密度的增加而朝着特定值或固定点方向发展,而与基体的材料特性无关,只要它具有有限的初始可压缩性即可。该固定点在三维上为ν= 1/4,在二维上为ν= 1/3。我们的结果表明,硬丝如微管和应力纤维在细胞力学中具有重要作用。同时,我们的工作具有更广泛的弹性范围,并潜在地应用于复合弹性介质,该复合弹性介质的组成部分的刚度尺度之间存在很大的差异,例如碳纳米管-聚合物复合材料,这些材料已显示出高度可调的力学性能。 ©2011美国物理学会。

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    Das, M.; MacKintosh, F.C.;

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