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Spherical indentation of soft matter beyond the Hertzian regime: numerical and experimental validation of hyperelastic models

机译:超出赫兹范围的软物质的球形压痕:超弹性模型的数值和实验验证

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摘要

The lack of practicable nonlinear elastic contact models frequently compels the inappropriate use of Hertzian models in analyzing indentation data and likely contributes to inconsistencies associated with the results of biological atomic force microscopy measurements. We derived and validated with the aid of the finite element method force-indentation relations based on a number of hyperelastic strain energy functions. The models were applied to existing data from indentation, using microspheres as indenters, of synthetic rubber-like gels, native mouse cartilage tissue, and engineered cartilage. For the biological tissues, the Fung and single-term Ogden models achieved the best fits of the data while all tested hyperelastic models produced good fits for the synthetic gels. The Hertz model proved to be acceptable for the synthetic gels at small deformations (strain < 0.05 for the samples tested), but not for the biological tissues. Although this finding supports the generally accepted view that many soft materials can be assumed to be linear elastic at small deformations, the nonlinear models facilitate analysis of intrinsically nonlinear tissues and large-strain indentation behavior.
机译:缺乏可行的非线性弹性接触模型经常会迫使在分析压痕数据时不恰当地使用Hertzian模型,并可能导致与生物原子力显微镜测量结果相关的不一致。我们借助有限元方法基于许多超弹性应变能函数得出的力-压痕关系进行了推导和验证。使用微球作为压头,将模型应用于合成橡胶状凝胶,天然小鼠软骨组织和工程软骨的压痕现有数据。对于生物组织,Fung模型和单项Ogden模型获得了数据的最佳拟合,而所有测试的超弹性模型都为合成凝胶提供了良好的拟合。事实证明,赫兹模型对于变形较小的合成凝胶(测试样品的应变<0.05)是可以接受的,但对于生物组织则不可接受。尽管这一发现支持了公认的观点,即许多软材料可以假定为在小变形下具有线性弹性,但非线性模型有助于分析固有的非线性组织和大应变压痕行为。

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