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Mechanical measurements of heterogeneity and length scale effects in PEG-based hydrogels

机译:PEG基水凝胶中异质性和长度尺度效应的机械测量

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摘要

Colloidal-probe spherical indentation load-relaxation experiments with a probe radius of 3 μm are conducted on poly(ethylene glycol) (PEG) hydrogel materials to quantify their steady-state mechanical properties and time-dependent transport properties via a single experiment. PEG-based hydrogels are shown to be heterogeneous in both morphology and mechanical stiffness at this scale; a linear-harmonic interpolation of hyperelastic Mooney-Rivlin and Boussinesq flat-punch indentation models was used to describe the steady-state response of the hydrogels and determine upper and lower bounds for indentation moduli. Analysis of the transient load-relaxation response during displacement-controlled hold periods provides a means of extracting two time constants τ1 and τ2, where τ1 and τ2 are assigned to the viscoelastic and poroelastic properties, respectively. Large τ2 values at small indentation depths provide evidence of a non-equilibrium state characterized by a phenomenon that restricts poroelastic fluid flow through the material; for larger indentations, the variability in τ2 values decreases and pore sizes estimated from τ2 via indentation approach those measured via macroscopic swelling experiments. The contact probe methodology developed here provides a means of assessing hydrogel heterogeneity, including time-dependent mechanical and transport properties, and has potential implications in hydrogel biomedical and engineering applications.
机译:对聚(乙二醇)(PEG)水凝胶材料进行了探针半径为3μm的胶体探针球形压痕载荷松弛实验,以通过一次实验量化其稳态机械性能和随时间变化的传输性能。在这种规模下,基于PEG的水凝胶在形态和机械刚度方面均表现出异质性。使用超弹性Mooney-Rivlin和Boussinesq平冲压痕模型的线性谐波插值来描述水凝胶的稳态响应,并确定压痕模量的上限和下限。在位移控制的保持期内对瞬态载荷松弛响应的分析提供了一种提取两个时间常数τ1和τ2的方法,其中τ1和τ2分别分配了粘弹性和多孔弹性。在较小的压痕深度处,较大的τ2值提供了一种非平衡状态的证据,该状态的特征是限制了多孔弹性流体流过材料的现象。对于较大的压痕,τ2值的变异性减小,通过压痕从τ2估算的孔径接近通过宏观溶胀实验测得的孔径。此处开发的接触探针方法论提供了一种评估水凝胶异质性的方法,包括随时间变化的机械和运输特性,并且对水凝胶生物医学和工程应用具有潜在的影响。

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