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通过热响应性颗粒探索粗糙度、摩擦力和附着力在非连续剪切增稠中的作用。

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

作者信息

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

机构信息

Laboratory for Soft Materials and Interfaces, Department of Materials, ETH Zurich, Zurich, Switzerland.

Laboratory for Surface Science and Technology, Department of Materials, ETH Zurich, Zurich, Switzerland.

出版信息

Nat Commun. 2021 Mar 5;12(1):1477. doi: 10.1038/s41467-021-21580-y.

Abstract

Dense suspensions of colloidal or granular particles can display pronounced non-Newtonian behaviour, such as discontinuous shear thickening and shear jamming. The essential contribution of particle surface roughness and adhesive forces confirms that stress-activated frictional contacts can play a key role in these phenomena. Here, by employing a system of microparticles coated by responsive polymers, we report experimental evidence that the relative contributions of friction, adhesion, and surface roughness can be tuned in situ as a function of temperature. Modifying temperature during shear therefore allows contact conditions to be regulated, and discontinuous shear thickening to be switched on and off on demand. The macroscopic rheological response follows the dictates of independent single-particle characterization of adhesive and tribological properties, obtained by colloidal-probe atomic force microscopy. Our findings identify additional routes for the design of smart non-Newtonian fluids and open a way to more directly connect experiments to computational models of sheared suspensions.

摘要

胶体或颗粒状颗粒的浓悬浮液可表现出显著的非牛顿行为,如不连续剪切增稠和剪切阻塞。颗粒表面粗糙度和粘附力的重要作用证实了应力激活的摩擦接触在这些现象中可发挥关键作用。在此,通过采用由响应性聚合物包覆的微粒系统,我们报告了实验证据,即摩擦、粘附和表面粗糙度的相对贡献可随温度原位调节。因此,在剪切过程中改变温度可调节接触条件,并根据需要开启和关闭不连续剪切增稠。宏观流变响应遵循通过胶体探针原子力显微镜获得的粘附和摩擦学性质的独立单颗粒表征的指示。我们的发现确定了智能非牛顿流体设计的其他途径,并为更直接地将实验与剪切悬浮液的计算模型联系起来开辟了道路。

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