Rheology of Gels and Yielding Liquids
Реология гелей и текучих жидкостей
2023-09-03
SCID: 54.1/xzzg8sad
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gel rheologythixotropic effectsviscoelastic gelsyield stressyielding liquids
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Abstract (AI)
In this review, today's state of the art in the rheology of gels and transition through the yield stress of yielding liquids is discussed. Gels are understood as soft viscoelastic multicomponent solids that are in the incomplete phase separation state, which, under the action of external mechanical forces, do not transit into a fluid state but rupture like any solid material. Gels can "melt" (again, like any solids) due to a change in temperature or variation in the environment. In contrast to this type of rheology, yielding liquids (sometimes not rigorously referred to as "gels", especially in relation to colloids) can exist in a solid-like (gel-like) state and become fluid above some defined stress and time conditions (yield stress). At low stresses, their behavior is quite similar to that of permanent solid gels, including the frequency-independent storage modulus. The gel-to-sol transition considered in colloid chemistry is treated as a case of yielding. However, in many cases, the yield stress cannot be assumed to be a physical parameter since the solid-to-liquid transition happens in time and is associated with thixotropic effects. In this review, special attention is paid to various time effects. It is also stressed that plasticity is not equivalent to flow since (irreversible) plastic deformations are determined by stress but do not continue over time. We also discuss some typical errors, difficulties, and wrong interpretations of experimental data in studies of yielding liquids.
Key Findings
1
Gels are soft viscoelastic multicomponent solids that rupture under mechanical loading rather than transitioning into a fluid state.
2
Gels can melt through temperature changes or environmental variations, analogous to melting in conventional solids.
3
Plastic deformation is stress-dependent and irreversible but does not necessarily constitute continuous flow.
4
The review distinguishes permanent gels from yielding liquids based on their fundamentally different responses to applied mechanical stress.
5
The review identifies common experimental errors and misinterpretations in rheological studies of yielding liquids.
6
Yield stress is often not a true material constant because yielding occurs over time and is coupled to thixotropic effects.
7
Yielding liquids exhibit solid-like behavior at low stresses but become fluid under sufficiently large stress and appropriate time conditions.
Research Object
Gels and yielding liquids
Research Subject
Their rheological behavior, gel-to-sol or solid-to-liquid yielding transitions, time-dependent thixotropic effects, and interpretation of yielding and plastic deformation
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2023-09-03
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