论文标题

软颗粒凝胶的隐藏分层性质

The hidden hierarchical nature of soft particulate gels

论文作者

Bantawa, Minaspi, Keshavarz, Bavand, Geri, Michela, Bouzid, Mehdi, Divoux, Thibaut, McKinley, Gareth H., Del Gado, Emanuela

论文摘要

软颗粒凝胶包括我们可以食用,挤压或3D印刷的材料。从食物到生物墨水再到水泥水合物,这些凝胶由少量的颗粒物(蛋白质,聚合物,胶体颗粒或各种起源的聚集体)组成。固体成分组装以形成多孔矩阵,尽管是少数族裔组成,但仍提供了刚性和机械响应的控制。流变响应和凝胶弹性是粒子体积分数$ ϕ $的直接函数:但是,迄今为止,在实验上报告的不同功能依赖性的不同范围迄今已挑战了确定一般规模定律的挑战。在这里,我们揭示了控制粘弹性谱的分形元素的隐藏层次结构组织,并与固体基质拓扑的空间异质性有关。分形元素构成了粘弹性主曲线的基础,我们使用模型凝胶的大尺度3D显微镜模拟构建,并且可以在一系列粒子体积分数和凝胶速率上通过递归的流变阶梯模型来描述。分形元素的层次结构提供了预测这些无处不在的复杂材料的凝胶弹性和粘弹性响应所需的一般框架。

Soft particulate gels include materials we can eat, squeeze, or 3D print. From foods to bio-inks to cement hydrates, these gels are composed of a small amount of particulate matter (proteins, polymers, colloidal particles, or agglomerates of various origins) embedded in a continuous fluid phase. The solid components assemble to form a porous matrix, providing rigidity and control of the mechanical response, despite being the minority constituent. The rheological response and gel elasticity are direct functions of the particle volume fraction $ϕ$: however, the diverse range of different functional dependencies reported experimentally has, to date, challenged efforts to identify general scaling laws. Here we reveal a hidden hierarchical organization of fractal elements that controls the viscoelastic spectrum, and which is associated with the spatial heterogeneity of the solid matrix topology. The fractal elements form the foundations of a viscoelastic master curve, which we construct using large-scale 3D microscopic simulations of model gels, and can be described by a recursive rheological ladder model over a range of particle volume fractions and gelation rates. The hierarchy of the fractal elements provides the missing general framework required to predict the gel elasticity and the viscoelastic response of these ubiquitous complex materials.

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