Rheological signatures of a glass-glass transition in an aging colloidal clay

IF 3 2区 工程技术 Q2 MECHANICS Journal of Rheology Pub Date : 2023-05-09 DOI:10.1122/8.0000592
R. Angelini, D. Larobina, B. Ruzicka, F. Greco, R. Pastore
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Abstract

The occurrence of non-equilibrium transitions between arrested states has recently emerged as an intriguing issue in the field of soft glassy materials. The existence of one such transition has been suggested for aging colloidal clays (Laponite® suspensions) at a weight concentration of 3.0%, although further experimental evidences are necessary to validate this scenario. Here, we test the occurrence of this transition for spontaneously aged (non-rejuvenated) samples by exploiting the rheological tools of dynamical mechanical analysis. On imposing consecutive compression cycles to differently aged clay suspensions, we find that quite an abrupt change of rheological parameters occurs for ages around three days. For Young’s and elastic moduli, the change with the waiting time is essentially independent from the deformation rate, whereas other “fluid-like” properties, such as the loss modulus, do clearly display some rate dependence. We also show that the crossover identified by rheology coincides with deviations of the relaxation time (obtained through x-ray photon correlation spectroscopy) from its expected monotonic increase with aging. Thus, our results robustly support the existence of a glass-glass transition in aging colloidal clays, highlighting characteristic features of their viscoelastic behavior.
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老化胶体粘土中玻璃-玻璃转变的流变特征
在软玻璃材料领域,被捕态之间非平衡跃迁的发生最近成为一个有趣的问题。尽管需要进一步的实验证据来验证这种情况,但对于重量浓度为3.0%的老化胶体粘土(Laponite®悬浮液),已经提出了一种这样的转变的存在。在这里,我们通过利用动态力学分析的流变工具来测试自发老化(未再生)样品的这种转变的发生。在对不同老化的粘土悬浮液进行连续压缩循环时,我们发现流变参数在大约三天的时间内发生了相当突然的变化。对于杨氏模量和弹性模量,随等待时间的变化基本上与变形率无关,而其他“类流体”特性,如损耗模量,确实显示出一定的速率依赖性。我们还表明,流变学识别的交叉与弛豫时间(通过x射线光子相关光谱获得)与其预期的随老化单调增加的偏差一致。因此,我们的结果有力地支持了老化胶体粘土中玻璃-玻璃化转变的存在,突出了其粘弹性行为的特征。
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来源期刊
Journal of Rheology
Journal of Rheology 物理-力学
CiteScore
6.60
自引率
12.10%
发文量
100
审稿时长
1 months
期刊介绍: The Journal of Rheology, formerly the Transactions of The Society of Rheology, is published six times per year by The Society of Rheology, a member society of the American Institute of Physics, through AIP Publishing. It provides in-depth interdisciplinary coverage of theoretical and experimental issues drawn from industry and academia. The Journal of Rheology is published for professionals and students in chemistry, physics, engineering, material science, and mathematics.
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