Rheological Signatures of Gelation and Effect of Shear Melting on Aging Colloidal Suspension
arXiv:1403.1105 · doi:10.1122/1.4887344
Abstract
Colloidal suspensions that are out of thermodynamic equilibrium undergo physical aging wherein their structure evolves to lower the free energy. In aqueous suspension of Laponite, physical aging accompanies increases of elastic and viscous moduli as a function of time. In this work we study temporal evolution of elastic and viscous moduli at different frequencies and observe that freshly prepared aqueous suspension of Laponite demonstrates identical rheological behavior reported for the crosslinking polymeric materials undergoing chemical gelation. Consequently at a certain time tanδ is observed to be independent of frequency. However, for samples preserved under rest condition for longer duration before applying the shear melting, the liquid to solid transition subsequent to shear melting shows greater deviation from classical gelation. We also obtain continuous relaxation time spectra from the frequency dependence of viscous modulus. We observe that, with increase in the rest time, continuous relaxation time spectrum shows gradual variation from negative slope, describing dominance of fast relaxation modes to positive slope representing dominance of slow relaxation modes. We propose that the deviation from gelation behavior for the shear melted suspensions originates from inability of shear melting to completely break the percolated structure thereby creating unbroken aggregates. The volume fraction of such unbroken aggregates increases with the rest time. For small rest times presence of fewer number of unbroken aggregates cause deviation from the classical gelation. On the other hand, at high rest times presence of greater fraction of unbroken aggregates subsequent to shear melting demonstrate dynamic arrest leading to inversion of relaxation time spectra.
37 Pages, 7 figures, 1 table, To appear in Journal of Rheology
References in corpus (10)
- Multiple nonergodic disordered states in Laponite suspensions: a phase diagram
- Rheological Behavior of Aqueous Suspensions of Laponite: New Insights into the Ageing Phenomena
- Physicochemical Effects in Aging Aqueous Laponite Suspensions
- Irreversible Aging Dynamics and Generic Phase Behavior of Aqueous Suspensions of Laponite
- Dichotomic Aging Behaviour in a Colloidal Glass
- Arrested state of clay-water suspensions: gel or glass?
- A model for cage formation in colloidal suspension of laponite
- Hyper-aging Dynamics of Nano-clay Suspension
- Interface Induced Anisotropy and nematic glass/gel state in Jammed Aqueous Laponite Suspensions
- Delayed solidification of soft glasses: New experiments, and a theoretical challenge
Cited by in corpus (10)
- Microstructure and Soft Glassy Dynamics of Aqueous Laponite Dispersion
- Phase Behavior of Aqueous Suspension of Laponite: New Insights with Microscopic Evidence
- Analyzing Onset of Nonlinearity of a Colloidal Gel at the Critical Point
- Aqueous Laponite Dispersions are Attractive Gels, Not Repulsive Wigner Glasses: A Critical Commentary
- Non-diffusive dynamics in a colloidal glass: aging versus rejuvenation
- Gel-Sol Transition of Thermoresponsive Poly(vinyl alcohol) Solution: Validation of the Universal Critical Scaling Relations
- Effect of Thermal and Mechanical Rejuvenation on Rheological Behavior of Chocolate
- Plastic or Viscous? A Reappraisal of Yielding in Soft Matter
- Slip behavior during pressure driven flow of Laponite suspension
- In Situ Ion Induced Gelation of Colloidal Dispersion of Laponite: Relating Microscopic Interactions to Macroscopic Behavior