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Prediction of the effects of constitutive viscoelasticity on stress-diffusion coupling in gels

机译:预测本构粘弹性对凝胶中应力-扩散耦合的影响

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摘要

Modeling of stressdiffusion coupling in gels, originally developed by Doi for the case where the solid component of the gel is a linear elastic network, is here extended to the case of a linear viscoelastic solid component, thereby allowing for a mechanism of intrinsic relaxation. The extended model is solved for a cylindrical gel subjected to unconfined uniaxial compression. Depending on the respective values of the two characteristic times, i.e., diffusive and viscoelastic, measurable quantities like axial force and external radius of the cylindrical gel are calculated to display different qualitative behaviors. Calculated results for the case of uniaxial traction are also reported, which compare favorably with some available experimental results.
机译:最初由Doi为凝胶的固体成分为线性弹性网络的情况开发的凝胶中的应力扩散耦合模型在此扩展为线性粘弹性固体成分的情况,从而允许固有松弛的机制。求解了扩展模型,该模型适用于承受无限制单轴压缩的圆柱形凝胶。根据两个特征时间的相应值,即扩散和粘弹性,计算可测量的量,例如轴向力和圆柱形凝胶的外半径,以显示不同的定性行为。还报告了单轴牵引情况下的计算结果,与一些可用的实验结果相比具有优势。

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