On the Nature of Flow Curve and Categorization of Thixotropic Yield Stress Materials
Tulika Bhattacharyya, Alan R. Jacob, George Petekidis, and Yogesh M., Joshi

TL;DR
This paper investigates the relationship between thixotropy, yield stress, and flow curves in materials, revealing conditions under which yield stress is constant or time-dependent, and classifying flow behaviors.
Contribution
It introduces a structural kinetic model that predicts the conditions for monotonic and non-monotonic flow curves and their impact on yield stress behavior in thixotropic materials.
Findings
Power-law dependence of relaxation time on aging time
Constant versus time-dependent yield stress observed
Model predicts non-monotonic flow curves lead to time-dependent yield stress
Abstract
Thixotropy is a phenomenon related to time dependent change in viscosity in presence or absence of flow. The yield stress, on the other hand, represents the minimum value of stress above which steady flow can be sustained. In addition, the yield stress of a material may also change as a function of time. Both these characteristic features in a material strongly influence the steady state flow curve of the same. This study aims to understand the interrelation between thixotropy, yield stress and their relation with the flow curve. In this regard, we study five thixotropic materials that show yield stress. The relaxation time of all the five systems shows power-law dependence on aging time with behaviors ranging from weaker than linear, linear to stronger than linear. Furthermore, the elastic modulus and yield stress has been observed to be constant for some systems while time dependent…
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Taxonomy
TopicsRheology and Fluid Dynamics Studies · Polymer crystallization and properties
