The aim of this paper is to evaluate four of the well-known models for drainage of thin liquid films, containing non-ionic surfactants, by applying them to different types of draining foam films stabilized by either strong or weak non-ionic surfactants
This paper describes the basic factors affecting the stability of the foam films produced in the pre...
A review of thin film drainage models is presented in which the predictions of thinning velocities a...
Foam lamellae are the smallest structural elements in foam. Such lamellae can experimentally be stud...
The aim of this paper is to evaluate four of the well-known models for drainage of thin liquid films...
A modelling study of surfactant evolution on a film surface coupled to lamellar film drainage has be...
A modelling study of surfactant evolution on a film surface coupled to lamellar film drainage has be...
Intermolecular forces and surface rheology of adsorbed surfactants can jointly influence the drainag...
The dynamics following T1 transformation of foams, during which certain foam films shrink and others...
The thin film pressure balance technique was used to determine the overall magnitude of the surface ...
International audienceAlthough extensively studied in the past, drainage of aqueous foams still offe...
Although extensively studied in the past, drainage of aqueous foams still offers major unaddressed i...
International audienceAlthough extensively studied in the past, drainage of aqueous foams still offe...
This study models soluble surfactant transport on and within a foam film during a foam fractionation...
This study models soluble surfactant transport on and within a foam film during a foam fractionation...
This study models soluble surfactant transport on and within a foam film during a foam fractionation...
This paper describes the basic factors affecting the stability of the foam films produced in the pre...
A review of thin film drainage models is presented in which the predictions of thinning velocities a...
Foam lamellae are the smallest structural elements in foam. Such lamellae can experimentally be stud...
The aim of this paper is to evaluate four of the well-known models for drainage of thin liquid films...
A modelling study of surfactant evolution on a film surface coupled to lamellar film drainage has be...
A modelling study of surfactant evolution on a film surface coupled to lamellar film drainage has be...
Intermolecular forces and surface rheology of adsorbed surfactants can jointly influence the drainag...
The dynamics following T1 transformation of foams, during which certain foam films shrink and others...
The thin film pressure balance technique was used to determine the overall magnitude of the surface ...
International audienceAlthough extensively studied in the past, drainage of aqueous foams still offe...
Although extensively studied in the past, drainage of aqueous foams still offers major unaddressed i...
International audienceAlthough extensively studied in the past, drainage of aqueous foams still offe...
This study models soluble surfactant transport on and within a foam film during a foam fractionation...
This study models soluble surfactant transport on and within a foam film during a foam fractionation...
This study models soluble surfactant transport on and within a foam film during a foam fractionation...
This paper describes the basic factors affecting the stability of the foam films produced in the pre...
A review of thin film drainage models is presented in which the predictions of thinning velocities a...
Foam lamellae are the smallest structural elements in foam. Such lamellae can experimentally be stud...