论文标题
剪切旋转下的密集悬浮液的流变学
Rheology of dense suspensions under shear rotation
论文作者
论文摘要
在剪切方向变化下,密集的非棕色悬浮液在粘度变化下表现出巨大而突然的粘度下降,如剪切反转(逆转)或正交叠加所示。在这里,我们引入了实验设置,以系统地探索它们对剪切旋转的响应,其中一个突然以角度$θ$旋转剪切的主轴,并用双轴力传感器测量剪切应力。我们的测量结果证实了在不稳定条件下抗剪切阻力的瞬态降低的通用性。此外,以稳定状态消失的正交剪切应力具有不可忽略的值,具有丰富的$θ$依赖性,以固体体积分数$ ϕ $质量变化,并导致一支倾向于减少或增强大小$ ϕ $的流动方向。这些实验发现通过基于粒子的数值模拟和最近提出的本构模型确认并合理化。我们表明,正交应力的旋转角度依赖性是由于水动力和接触应力之间的$ ϕ $依赖性相互作用引起的。
Dense non-Brownian suspensions exhibit a spectacular and abrupt drop in viscosity under change of shear direction, as revealed by shear inversions (reversals) or orthogonal superposition. Here, we introduce an experimental setup to systematically explore their response to shear rotations, where one suddenly rotates the principal axes of shear by an angle $θ$, and measure the shear stresses with a bi-axial force sensor. Our measurements confirm the genericness of the transient decrease of the resistance to shear under unsteady conditions. Moreover, the orthogonal shear stress, which vanishes in steady state, takes non-negligible values with a rich $θ$-dependence, changing qualitatively with solid volume fraction $ϕ$, and resulting in a force that tends to reduce or enhance the direction of flow for small or large $ϕ$. These experimental findings are confirmed and rationalized by particle-based numerical simulations and a recently proposed constitutive model. We show that the rotation angle dependence of the orthogonal stress results from a $ϕ$-dependent interplay between hydrodynamic and contact stresses.