Scaling Properties of Gelling Systems in Nonlinear Shear Experiments.

IF 5.1 Q1 POLYMER SCIENCE ACS Macro Letters Pub Date : 2024-06-14 DOI:10.1021/acsmacrolett.4c00121
Ameur Louhichi, Marie-Hélène Morel, Laurence Ramos, Amélie Banc
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Abstract

We study model near-critical polymer gelling systems made of gluten protein dispersions stabilized at different distances from the gel point. We impose different shear rates and follow the time evolution of the stress. For sufficiently large shear rates, an intermediate stress overshoot is measured before reaching the steady state. We evidence self-similarity of the stress overshoot as a function of the applied shear rate for samples with various distances from the gel point, which is related to the elastic energy stored by the samples, as for dense systems close to the jamming transition. In concordance with the findings for glassy and jammed systems, we also measure that the stress after flow cessation decreases as a power law with time, with a characteristic relaxation time that depends on the shear rate previously imposed. These features revealed in nonlinear rheology could be the signature of a mesoscopic dynamics, which would depend on the extent of gelation.

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非线性剪切实验中胶凝系统的缩放特性
我们研究了由稳定在距凝胶点不同距离的谷蛋白分散体组成的近临界聚合物胶凝系统模型。我们施加了不同的剪切速率,并跟踪应力的时间演变。对于足够大的剪切速率,在达到稳定状态之前,会测量到中间应力过冲。我们发现,对于与凝胶点有不同距离的样品,应力过冲与所施加的剪切率的函数具有自相似性,这与样品所储存的弹性能量有关,就像对于接近干扰转变的致密系统一样。与玻璃态和堵塞态系统的研究结果一致,我们还测量到停止流动后的应力随时间呈幂律下降,其特征松弛时间取决于先前施加的剪切速率。非线性流变学所揭示的这些特征可能是介观动力学的特征,这将取决于凝胶化的程度。
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来源期刊
CiteScore
10.40
自引率
3.40%
发文量
209
审稿时长
1 months
期刊介绍: ACS Macro Letters publishes research in all areas of contemporary soft matter science in which macromolecules play a key role, including nanotechnology, self-assembly, supramolecular chemistry, biomaterials, energy generation and storage, and renewable/sustainable materials. Submissions to ACS Macro Letters should justify clearly the rapid disclosure of the key elements of the study. The scope of the journal includes high-impact research of broad interest in all areas of polymer science and engineering, including cross-disciplinary research that interfaces with polymer science. With the launch of ACS Macro Letters, all Communications that were formerly published in Macromolecules and Biomacromolecules will be published as Letters in ACS Macro Letters.
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