A theoretical study has been made of the properties of a liquid bridge between spheres of equal and unequal radii taking into account the effect of gravity on the meniscus shape and capillary attractions. The interfacial shape of the bridge is obtained by a numerical solution of the Young-Laplace equation employing the Runge-Kutta method for a given sphere pair, liquid bridge volume, and contact angle. The capillary force, sphere separation, minimum neck diameter, and filling angle of the liquid on both spheres are calculated numerically for interfacial shapes which exhibit the minimum neck diameter. The equal bridge volume problem at different sphere separations for a given set of spheres is solved with the two point boundary-value conditi...
This study focuses on properties of axisymmetric capillary bridges between spherical particles in th...
International audienceThis work addresses the study of capillary bridge properties between two grain...
This work presents a theoretical study of the forces established between colloidal particles connect...
The maximum volume of liquid bridge left between two vertically mounted spherical particles has been...
An analytical theory has been developed for properties of a steady, axisymmetric liquid–gas capillar...
Spheres floating at liquid–fluid interfaces cause interfacial deformations such that their weight is...
This study focuses on capillary bridges between unequal-sized spherical particles in the pendular re...
Capillarity in wet granular materials induces cohesion and increases the material strength due to th...
Spheres floating at liquid–fluid interfaces cause interfacial deformations such that their weight is...
International audienceIn this study we use the recent analytical model to analyze capillary interact...
International audienceThe effects of viscosity on the mechanical response of a liquid bridge are inv...
International audienceWe propose a simple expression for the rupture energy of a pendular liquid bri...
National audienceMechanical properties of non-saturated granular materials are directly connected wi...
This thesis reports numerical and analytical results on the floatation and capillary interaction of ...
This paper proposes a new procedure to simultaneously measure the static contact angle and the surfa...
This study focuses on properties of axisymmetric capillary bridges between spherical particles in th...
International audienceThis work addresses the study of capillary bridge properties between two grain...
This work presents a theoretical study of the forces established between colloidal particles connect...
The maximum volume of liquid bridge left between two vertically mounted spherical particles has been...
An analytical theory has been developed for properties of a steady, axisymmetric liquid–gas capillar...
Spheres floating at liquid–fluid interfaces cause interfacial deformations such that their weight is...
This study focuses on capillary bridges between unequal-sized spherical particles in the pendular re...
Capillarity in wet granular materials induces cohesion and increases the material strength due to th...
Spheres floating at liquid–fluid interfaces cause interfacial deformations such that their weight is...
International audienceIn this study we use the recent analytical model to analyze capillary interact...
International audienceThe effects of viscosity on the mechanical response of a liquid bridge are inv...
International audienceWe propose a simple expression for the rupture energy of a pendular liquid bri...
National audienceMechanical properties of non-saturated granular materials are directly connected wi...
This thesis reports numerical and analytical results on the floatation and capillary interaction of ...
This paper proposes a new procedure to simultaneously measure the static contact angle and the surfa...
This study focuses on properties of axisymmetric capillary bridges between spherical particles in th...
International audienceThis work addresses the study of capillary bridge properties between two grain...
This work presents a theoretical study of the forces established between colloidal particles connect...