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Shear thinning of non-Brownian suspensions and its variation at different ambient conditions

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arxiv 2302.06373 v1 pith:334E2APP submitted 2023-02-13 physics.flu-dyn cond-mat.soft

Shear thinning of non-Brownian suspensions and its variation at different ambient conditions

classification physics.flu-dyn cond-mat.soft
keywords dropletsshearsuspensionsthinningwhenambientbehaviorhumidity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Immiscible contaminants are commonly involved in naturally occurring suspensions. The resulting variations of their flow behavior has rarely been evaluated. Here, we investigate the variation of the viscosity of the oil-based two-phase suspension over a period of two years, which is exposed to the ambient air at the production stage. We find that the air's absolute humidity, which strongly varies with the seasons, causes exchanges of water droplets with the suspension, substantially altering its shear-thinning behavior. Only in winter, when the humidity is low, is the latter close to that of ideal two-phase suspensions. Our measurements suggest that, when the surface roughness of the suspended solid particles is sufficiently low, immersed droplets remain in a free state, effectively increasing repulsion between particles, weakening shear thinning. In contrast, when the roughness is sufficiently high, immersed droplets become trapped on the particle surfaces, inducing an attractive particle interaction via water bridging, enhancing shear thinning.

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