Several diverse and seemingly unrelated unusual rheological phenomena such as double stress overshoots, maximum in elongation viscosity with stretch rates, phase separation in deforming solutions, uncharacteristically long restoration times, etc., observed in solutions of polar polymers might have a common physical origin, which is related to shear-induced modification of the rates of creation and loss of energetic transient crosslinks (hydrogen bonds). We argue that the dynamics of energetic crosslinks (H-bonds) are fundamentally different than those of physical crosslinks (chain entanglements). We have incorporated some of these essential differences in a phenomenological framework of a transient network theory namely the Energetically Cr...
The non-linear stress-strain relation for crosslinked polymer networks is studied using molecular dy...
The Doi−Edwards tube model, coupled with relaxation mechanisms, such as reptation, contour length fl...
The behaviour of transient polymer networks in strong flows is poorly understood. Those transient po...
Transient polymer networks are ubiquitous in natural and engineered materials and contain cross-link...
We propose a theoretical framework for dealing with a transient polymer network undergoing small def...
This paper proposes a simple model of transient networks of telechelic associating polymers for mole...
A new model is presented for describing the time‐dependent flow of entangled polymer liquids at high...
We theoretically investigate the mechanical response of a transient network, which is characterised ...
Ianniruberto and Marrucci [Macromolecules, 46, 267-275, 2013] developed a theory whereby entangled b...
In this work, the rheological behavior of complex fluids is analyzed with a model based on the class...
Abstract. " Aspects of a network model for concentrated dispersions are applied to polymer netw...
Combining high concentration of reversible hydrogen bonds with a loosely cross-linked chemical netwo...
Attractive forces acting between particles in dispersions may cause a three-dimensional structure to...
While the linear viscoelastic properties of linear polymers are quite well understood and can be pre...
Nature uses a combination of dynamic hydrogen bonds and static covalent bonds in e.g. the muscle sar...
The non-linear stress-strain relation for crosslinked polymer networks is studied using molecular dy...
The Doi−Edwards tube model, coupled with relaxation mechanisms, such as reptation, contour length fl...
The behaviour of transient polymer networks in strong flows is poorly understood. Those transient po...
Transient polymer networks are ubiquitous in natural and engineered materials and contain cross-link...
We propose a theoretical framework for dealing with a transient polymer network undergoing small def...
This paper proposes a simple model of transient networks of telechelic associating polymers for mole...
A new model is presented for describing the time‐dependent flow of entangled polymer liquids at high...
We theoretically investigate the mechanical response of a transient network, which is characterised ...
Ianniruberto and Marrucci [Macromolecules, 46, 267-275, 2013] developed a theory whereby entangled b...
In this work, the rheological behavior of complex fluids is analyzed with a model based on the class...
Abstract. " Aspects of a network model for concentrated dispersions are applied to polymer netw...
Combining high concentration of reversible hydrogen bonds with a loosely cross-linked chemical netwo...
Attractive forces acting between particles in dispersions may cause a three-dimensional structure to...
While the linear viscoelastic properties of linear polymers are quite well understood and can be pre...
Nature uses a combination of dynamic hydrogen bonds and static covalent bonds in e.g. the muscle sar...
The non-linear stress-strain relation for crosslinked polymer networks is studied using molecular dy...
The Doi−Edwards tube model, coupled with relaxation mechanisms, such as reptation, contour length fl...
The behaviour of transient polymer networks in strong flows is poorly understood. Those transient po...