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稀胶体凝胶屈服时与应力无关的延迟时间。

Stress-independent delay time in yielding of dilute colloidal gels.

作者信息

Yamamoto Atsushi, Inui Takumi, Suzuki Daisuke, Urayama Kenji

机构信息

Department of Macromolecular Science and Engineering, Kyoto Institute of Technology, Sakyo-ku, Kyoto 606-8585, Japan.

Graduate School of Textile Science & Technology, Shinshu University, Ueda 386-8567, Japan.

出版信息

Soft Matter. 2023 Nov 29;19(46):9082-9091. doi: 10.1039/d3sm01238g.

Abstract

We investigate the yielding under shear for dilute poly(-isopropyl acrylamide--fumaric acid) (PNIPAM-FAc) colloidal gels obtained above the volume phase transition temperature. In this temperature range, the microgel suspensions form colloidal gels due to hydrophobic interparticle interactions under appropriate pH and ionic strength conditions. Step-strain tests revealed that yielding occurs when the applied strain exceeds a specific threshold, requiring a finite, stress-independent delay time (). This is distinct from previous findings on delayed yielding in other colloidal gels, where decreases with increasing stress. In the start-up shear tests, yield strain () at a higher strain rate () increases with escalating , while at lower remains constant. This characteristic - relationship is successfully explained by a simple model using the stress-independent value without an adjustable fitting parameter. The distinctive yielding behavior, underscored by a stress-independent , is expected to originate from strain-induced macroscopic phase separation into a dense colloidal gel and water, observable separately from rheological measurements.

摘要

我们研究了在体积相变温度以上获得的稀聚(N-异丙基丙烯酰胺-富马酸)(PNIPAM-FAc)胶体凝胶在剪切作用下的屈服情况。在此温度范围内,微凝胶悬浮液在适当的pH值和离子强度条件下,由于颗粒间的疏水相互作用而形成胶体凝胶。阶跃应变测试表明,当施加的应变超过特定阈值时会发生屈服,这需要一个有限的、与应力无关的延迟时间()。这与之前关于其他胶体凝胶延迟屈服的研究结果不同,在其他胶体凝胶中,随应力增加而减小。在启动剪切测试中,较高应变率()下的屈服应变()随着的增加而增加,而较低时的保持不变。这种特征性的 - 关系通过一个简单的模型成功得到解释,该模型使用与应力无关的值,且没有可调整的拟合参数。由与应力无关的所强调的独特屈服行为,预计源于应变诱导的宏观相分离成致密的胶体凝胶和水,这可以通过流变学测量单独观察到。

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