The fracture behavior of rubber-toughened polymers is governed by two dissipative microscopic deformation and damage mechanisms: matrix shear yielding and crazing. These mechanisms are strongly interconnected with the eventual cavitation of the fine dispersed rubber particles. The present work summarizes and discusses a variety of micromechanical–computational modeling approaches undertaken over the past twenty years aiming at an improved understanding of the relation between microstructure and toughening in this class of materials. The focus is on materials such as ABS where both mechanisms are prevalent
In the last decades considerable effort is addressed to the toughening of brittle amorphous polymers...
The influence of microstructural properties on the macroscopic mechanical behaviour has been studied...
The deformation and toughness of amorphous polymers is discussed in terms of their mol. network stru...
The fracture behavior of rubber-toughened polymers is governed by two dissipative microscopic deform...
A micromechanics based constitutive model is developed that focuses on the effect of distributed cra...
The competition between crazing and matrix shear yielding in rubber-toughened glassy polymers is inv...
Numerical simulations are performed in order to gain a better understanding of the effects of variou...
This paper is concerned with a comparative study of different, partly complementary micromechanical ...
This paper deals with the modeling of the key mechanisms involved in the fracture of polymers: shear...
The toughness of glassy polymers can be enhanced by blending with rubber particles. The consensus is...
In the last decades considerable effort is addressed to the toughening of brittle amorphous polymers...
The influence of microstructural properties on the macroscopic mechanical behaviour has been studied...
The deformation and toughness of amorphous polymers is discussed in terms of their mol. network stru...
The fracture behavior of rubber-toughened polymers is governed by two dissipative microscopic deform...
A micromechanics based constitutive model is developed that focuses on the effect of distributed cra...
The competition between crazing and matrix shear yielding in rubber-toughened glassy polymers is inv...
Numerical simulations are performed in order to gain a better understanding of the effects of variou...
This paper is concerned with a comparative study of different, partly complementary micromechanical ...
This paper deals with the modeling of the key mechanisms involved in the fracture of polymers: shear...
The toughness of glassy polymers can be enhanced by blending with rubber particles. The consensus is...
In the last decades considerable effort is addressed to the toughening of brittle amorphous polymers...
The influence of microstructural properties on the macroscopic mechanical behaviour has been studied...
The deformation and toughness of amorphous polymers is discussed in terms of their mol. network stru...