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Building block properties govern granular hydrogel mechanics through contact deformations

机译:构建块属性通过接触变形控制颗粒水凝胶力学

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摘要

Granular hydrogels have been increasingly exploited in biomedical applications, including wound healing and cardiac repair. Despite their utility, design guidelines for engineering their macroscale properties remain limited, as we do not understand how the properties of granular hydrogels emerge from collective interactions of their microgel building blocks. In this work, we related building block features (stiffness and size) to the macroscale properties of granular hydrogels using contact mechanics. We investigated the mechanics of the microgel packings through dynamic oscillatory rheology. In addition, we modeled the system as a collection of two-body interactions and applied the Zwanzig and Mountain formula to calculate the plateau modulus and viscosity of the granular hydrogels. The calculations agreed with the dynamic mechanical measurements and described how microgel properties and contact deformations define the rheology of granular hydrogels. These results support a rational design framework for improved engineering of this fascinating class of materials.
机译:颗粒水凝胶越来越多地用于生物医学应用,包括伤口愈合和心脏修复。尽管它们很有用,但设计其宏观尺度特性的设计指南仍然有限,因为我们不了解颗粒水凝胶的特性是如何从其微凝胶构建单元的集体相互作用中出现的。在这项工作中,我们使用接触力学将构建块特征(刚度和尺寸)与颗粒水凝胶的宏观特性联系起来。我们通过动态振荡流变学研究了微凝胶填料的力学。此外,我们将该系统建模为双体相互作用的集合,并应用 Zwanzig 和 Mountain 公式来计算颗粒水凝胶的平台模量和粘度。计算结果与动态力学测量结果一致,并描述了微凝胶特性和接触变形如何定义颗粒水凝胶的流变学。这些结果支持了一个合理的设计框架,以改进这类迷人的材料的工程设计。

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