In this work we build on our previous paper (Harshe, Y. M.; Lattuada, M. <i>Langmuir</i> <b>2012</b>, <i>28</i>, 283–292) and compute the breakage rate of colloidal aggregates under the effect of shear forces by means of Stokesian dynamics simulations. A library of clusters made of identical spherical particles covering a broad range of masses and fractal dimension values (from 1.8 to 3.0) was generated by means of a combination of several Monte Carlo methods. DLVO theory has been used to describe the interparticle interactions, and contact forces have been introduced by means of the discrete element method. The aggregate breakage process was investigated by exposing them to well-defined shear forces, generated under both simple shear and u...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Colloidal systems that are well stabilized by electrostatic repulsive forces can be activated by int...
Aggregation of colloidal particles under shear is studied in model systems using a Langevin dynamics...
In this work we build on our previous paper (Harshe, Y. M.; Lattuada, M. <i>Langmuir</i> <b>2012</b>...
We have studied the long-term dynamics of shear-induced breakage of individual colloidal clusters, ...
Recently, we proposed a free energy expansion-based model for the shear modulus of random colloidal ...
The drift-diffusion equation is first solved analytically for the dissociation rate and lifetime of ...
A method to couple interparticle contact models with Stokesian dynamics (SD) is introduced to simula...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indus...
An improved breakage kernel was developed to describe the kinetics of aggregate breakage induced by ...
A method to couple interparticle contact models with Stokesian dynamics (SD) is introduced to simula...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Colloidal systems that are well stabilized by electrostatic repulsive forces can be activated by int...
Aggregation of colloidal particles under shear is studied in model systems using a Langevin dynamics...
In this work we build on our previous paper (Harshe, Y. M.; Lattuada, M. <i>Langmuir</i> <b>2012</b>...
We have studied the long-term dynamics of shear-induced breakage of individual colloidal clusters, ...
Recently, we proposed a free energy expansion-based model for the shear modulus of random colloidal ...
The drift-diffusion equation is first solved analytically for the dissociation rate and lifetime of ...
A method to couple interparticle contact models with Stokesian dynamics (SD) is introduced to simula...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indus...
An improved breakage kernel was developed to describe the kinetics of aggregate breakage induced by ...
A method to couple interparticle contact models with Stokesian dynamics (SD) is introduced to simula...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Application of shear flow to charge-stabilized aqueous colloidal suspensions is ubiquitous in indust...
Colloidal systems that are well stabilized by electrostatic repulsive forces can be activated by int...
Aggregation of colloidal particles under shear is studied in model systems using a Langevin dynamics...