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日用化学工业(中英文) ›› 2026, Vol. 56 ›› Issue (3): 277-283.doi: 10.3969/j.issn.2097-2806.2026.03.001

• 科技讲座 •    下一篇

黏弹性表面活性剂(III)——稳态流变与剪切带现象

冯玉军*()   

  1. 四川大学 高分子研究所 先进高分子材料工程全国重点实验室四川 成都 610065
  • 收稿日期:2026-03-10 出版日期:2026-03-22 发布日期:2026-05-14
  • 通讯作者: 冯玉军
  • 基金资助:
    国家自然科学基金面上项目(U22A20395);国家自然科学基金面上项目(21173207)

Viscoelastic surfactants (III)Steady rheology and shear bandings

Yujun Feng*()   

  1. State Key Laboratory of Advanced Polymer Materials, Polymer Research Institute, Sichuan University, Chengdu, Sichuan 610065, China
  • Received:2026-03-10 Online:2026-03-22 Published:2026-05-14
  • Contact: Yujun Feng

摘要:

蠕虫状胶束作为一类典型的软物质材料,因其独特的黏弹响应与可逆的动态网络结构,在诸多工业与生物医学领域展现出广阔的应用前景。本文聚焦于该类胶束体系在稳态流场中的流变行为,系统解析其在剪切与拉伸作用下的微观结构演化与宏观响应机制。在剪切流场中,蠕虫状胶束表现出典型的牛顿平台、剪切稀化及高剪切平台等多段式流变特征,零剪切黏度随浓度呈幂律增长,反映出胶束生长、网络缠结乃至结构分枝的演化路径。在拉伸流场中,体系则呈现出应变硬化、拉伸断裂及动态恢复等非线性行为,其响应机制与剪切场存在本质差异,凸显胶束链的柔性与动态重组能力对流变行为的关键调控作用。特别是,剪切带作为一类典型的非线性失稳现象,源于胶束网络在局部区域解缠与重组的动态失配,与本构关系的非单调性密切相关,揭示了“活”聚集体特有的结构不稳定性。进一步总结了当前研究所面临的挑战,并展望了未来在联用表征技术、本构模型构建及复杂工况应用等方面的发展方向,旨在为理解非平衡态软物质物理及推动功能材料工程化设计提供理论支撑。

关键词: 蠕虫状胶束, 稳态剪切流变, 拉伸流变, 剪切带, 剪切稀化

Abstract:

Wormlike micelles, as quintessential soft matter systems, have garnered substantial interest across industrial and biomedical sectors due to their unique viscoelastic signatures and reversible, dynamic network architectures. This review provides a comprehensive examination of the steady flow behaviors of these self-assembled structures, with a focus on the intricate interplay between microstructural evolution and macroscopic responses under both shear and extensional deformations. Under shear flow, wormlike micellar solutions exhibit a characteristic multi-regime flow curve, encompassing a Newtonian plateau, a shear-thinning region, and, at extreme rates, a second plateau. The zero-shear viscosity scales as a power-law with surfactant concentration, offering critical insights into micellar growth, the onset of entanglement, and the eventual formation of branched networks. In contrast, extensional flow elicits markedly different nonlinear responses, such as strain hardening, tensile failure, and subsequent dynamic recovery. These distinctions underscore the dominant role of chain flexibility and reversible scission in dictating the rheological response under different kinematic conditions. A focal point of this review is the phenomenon of shear banding, an archetypal flow instability arising from a dynamic mismatch between localized network disentanglement and re-entanglement. This symmetry-breaking process, manifesting as coexisting regions of differing shear rates, is intrinsically linked to a non-monotonic constitutive relation and reveals a fundamental structural fragility inherent to “living” polymer assemblies. Finally, we delineate the prevailing challenges in the field and propose future directions. Emphasis is placed on the development of in-situ characterization techniques, the formulation of advanced constitutive models that capture the unique dynamics of these systems, and the exploration of their behavior under complex, application-relevant conditions. Such endeavors are essential for advancing the non-equilibrium physics of soft materials and for guiding the rational design of functional fluids for advanced technologies.

Key words: wormlike micelles, steady shear rheology, extensional rheology, shear banding, shear thinning

中图分类号: 

  • TQ423