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使用有限元分析与集成优化方法对水凝胶无约束蠕变的粘弹本构模型进行研究。

Poro-viscoelastic constitutive modeling of unconfined creep of hydrogels using finite element analysis with integrated optimization method.

机构信息

Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

J Mech Behav Biomed Mater. 2011 Apr;4(3):440-50. doi: 10.1016/j.jmbbm.2010.12.005. Epub 2010 Dec 24.

Abstract

Hydrogels are cross-linked polymer networks swollen with water and are being considered as potential replacements for deceased load bearing tissues such as cartilage. Hydrogels show nonlinear time dependent behavior, and are a challenge to model. A three-element poro-viscoelastic constitutive model was developed based on the structure and nature of the hydrogel. To identify the material parameters, an inverse finite element (FE) technique was used that combines experimental results with FE modeling and an optimization method. Unconfined compression creep tests were conducted on poly(vinyl alcohol) (PVA) and poly(ethylene-co-vinyl alcohol)-poly(vinyl pyrrolidone) (EVAL-PVP) hydrogels manufactured by injection molding. Results from the creep experiments showed that for PVA hydrogels, an increase in polymer concentration correlates with a decrease in the equilibrium water content (EWC) and the creep strain. In EVAL-PVP hydrogels, an increase in the hydrophobic segments (EVAL) correlates with a decrease in the EWC as well as the creep strain. An inverse FE method was used to identify the viscoelastic material parameters of the hydrogels in combination with creep testing using the poro-viscoelastic three-element constitutive model. The elastic modulus estimated from the inverse FE technique showed good agreement with the modulus estimated directly from the test data.

摘要

水凝胶是一种由聚合物交联网络构成的水凝胶,具有与天然软骨相似的力学性能,有望替代软骨等承重组织。水凝胶具有非线性时变行为,建模难度较大。本文基于水凝胶的结构和性质,提出了一种三元件黏弹性本构模型。为了确定材料参数,采用了反有限元(FE)技术,该技术将实验结果与 FE 建模和优化方法相结合。通过注塑成型制备了聚乙烯醇(PVA)和乙烯-共聚-醇-聚乙烯吡咯烷酮(EVAL-PVP)水凝胶,并进行了无约束压缩蠕变试验。蠕变试验结果表明,对于 PVA 水凝胶,聚合物浓度的增加与平衡水含量(EWC)和蠕变应变的降低相关。在 EVAL-PVP 水凝胶中,疏水性段(EVAL)的增加与 EWC 和蠕变应变的降低相关。本文将黏弹性三元件本构模型与蠕变试验相结合,采用反有限元法来确定水凝胶的黏弹性材料参数。反有限元技术估计的弹性模量与直接从测试数据估计的模量具有良好的一致性。

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