论文标题

通过热响应颗粒,解散不连续的剪切增厚中粗糙度,摩擦和粘附的作用

Disentangling the roles of roughness, friction and adhesion in discontinuous shear thickening by means of thermo-responsive particles

论文作者

Hsu, Chiao-Peng, Mandal, Joydeb, Ramakrishna, Shivaprakash N., Spencer, Nicholas D., Isa, Lucio

论文摘要

胶体或颗粒颗粒的密集悬浮液可以显示出明显的非牛顿行为,例如不连续的剪切增厚(DST)和剪切干扰(SJ)。粒子表面粗糙度和粘合力的基本贡献证实,应力激活的接触可以在这些现象中起关键作用。通过采用通过响应式聚合物覆盖的微粒系统,该系统可以选择性地和独立地调节摩擦,粘附和表面粗糙度,以与温度的函数进行独立调整,我们提供了一种解散这些贡献的方法。我们发现,当高温下颗粒之间的摩擦和粘附增强时,DST以较低的剪切速率发生。此外,温度响应的聚合物在低温下提供润滑性,可以掩盖表面粗糙度。单粒子特性与宏观流变学之间的联系通过侧向力显微镜阐明,这揭示了流变相关的接触条件的性质。剪切过程中的原位温度调节可以修改接触条件,并按需开关开关DST。这些发现增强了我们对影响DST的微观参数的理解,并确定了智能非牛顿流体设计的新途径。

Dense suspensions of colloidal or granular particles can display pronounced non-Newtonian behaviour, such as discontinuous shear thickening (DST) and shear jamming (SJ). The essential contribution of particle surface roughness and adhesive forces confirms that stress-activated contacts can play a key role in these phenomena. By employing a system of microparticles coated by responsive polymers that allow friction, adhesion, and surface roughness to be selectively and independently tuned as a function of temperature, we offer a way to disentangle these contributions. We find that DST occurs at lower shear rates when friction and adhesion between particles are enhanced at high temperatures. Additionally, the temperature-responsive polymers provide lubricity at low temperatures that can mask surface roughness. The link between single-particle properties and macroscopic rheology is elucidated via lateral force microscopy, which reveals the nature of rheologically relevant contact conditions. In situ temperature tuning during shear allows contact conditions to be modified, and DST to be switched on and off on demand. These findings strengthen our understanding of the microscopic parameters affecting DST and identify new routes for the design of smart, non-Newtonian fluids.

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