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Nonlinear elasticity modeling of biogels

机译:生物凝胶的非线性弹性建模

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摘要

A second-order nonlinear elastic model is developed for biogels, whereby the elastic constants are estimated from the free energy densities for polymer networks and polymer-water mixtures. For typical values of the constants, important physical insights are revealed: a biogel stiffens under tension, contracts longitudinally under torsion (inverse Poynting effect), and experiences a negative normal stress under simple shear. This approach of extracting nonlinear elastic constants works for any constitutive law, and has the advantage of exploring physical phenomena without recourse to computationally intensive simulations.
机译:针对生物凝胶开发了二阶非线性弹性模型,其中弹性常数是根据聚合物网络和聚合物-水混合物的自由能密度估算的。对于常数的典型值,揭示了重要的物理见解:生物凝胶在张力下变硬,在扭转下纵向收缩(逆珀因廷效应),并在简单剪切作用下承受负法向应力。这种提取非线性弹性常数的方法适用于任何本构律,并且具有无需借助计算密集型模拟即可探索物理现象的优势。

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