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Direct link between mechanical stability in gels and percolation of isostatic particles

机译:凝胶的机械稳定性和等静压颗粒的渗透之间的直接联系

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摘要

Colloidal gels have unique mechanical and transport properties that stem from their bicontinuous nature, in which a colloidal network is intertwined with a viscous solvent, and have found numerous applications in foods, cosmetics, and construction materials and for medical applications, such as cartilage replacements. So far, our understanding of the process of colloidal gelation is limited to long-time dynamical effects, where gelation is viewed as a phase separation process interrupted by the glass transition. However, this purely out-of-equilibrium thermodynamic picture does not address the emergence of mechanical stability. With confocal microscopy experiments, we reveal that mechanical metastability is reached only after isotropic percolation of locally isostatic environments, establishing a direct link between the load-bearing ability of gels and the isostaticity condition. Our work suggests an operative description of gels based on mechanical equilibrium and isostaticity, providing the physical basis for the stability and rheology of these materials.
机译:胶体凝胶具有独特的机械和运输特性,这是由于其双连续性(胶体网络与粘性溶剂相互缠绕)引起的,已在食品,化妆品和建筑材料以及医疗应用(例如软骨替代)中得到了广泛应用。到目前为止,我们对胶体胶凝过程的理解仅限于长期的动力学效应,其中胶凝被视为玻璃化转变中断的相分离过程。但是,这种纯粹不平衡的热力学图没有解决机械稳定性的出现。通过共聚焦显微镜实验,我们揭示了仅在局部等静压环境各向同性渗滤之后才能达到机械亚稳定性,从而在凝胶的承载能力和等静压条件之间建立了直接联系。我们的工作提出了基于机械平衡和等静性的凝胶的可操作描述,为这些材料的稳定性和流变性提供了物理基础。

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