The effect of network structure on dynamic compressive fatigue behavior and static compressive mechanical properties of styrene-butadiene rubber (SBR) were investigated. A series of SBR compounds with different amounts of sulfur and dicumyl peroxide (DCP) were prepared, and their crosslinking densities were calculated using the Flory–Rehner equation. Compressive fatigue resistance and creep behavior of the vulcanizates were performed on a mechanical testing and simulation (MTS) machine. The fatigue damage surface of SBR vulcanizates before and after a dynamic compressive fatigue test was observed with a scanning electron microscopy (SEM). The results suggested that the surface of the samples was badly damaged as the number of compressive cy...
An investigation about the dependence of the physical properties of styrene-butadiene rubber copolym...
International audienceThis work tackles crack propagation mechanisms of styrene butadiene and natura...
Many factors are known to influence the mechanical fatigue life of rubber components. Four major cat...
A study has been made of the effect of single extensions and continuous fatigue on the structures of...
Fatigue life of unfilled polychloroprene rubber is characterized in fully relaxing (R=0) and non-rel...
Self-healing rubbers have steadily been growing during the last decades. Various strategies have bee...
International audienceThe present paper describes macroscopic fatigue damage in carbon black-filled ...
International audienceThe present paper deals with the fatigue crack growth in a carbon black-filled...
Rubber toughening mechanisms in acrylonitrile-butadiene-styrene (ABS) may be affected by the dispers...
Le comportement en fatigue du polychloroprène, un élastomère synthétique, est fonction de : • l’endo...
Tyre tread directly comes in contact with various road surfaces and is prone to damage due to cuts f...
Compounds incorporating hydrogenated acrylonitrile butadiene rubber (HNBR) are widely adopted in app...
This investigation addresses the evolution of the microscopic and mesoscopic structures distribution...
An investigation about the dependence of the physical properties of styrene-butadiene rubber copolym...
International audienceThis work tackles crack propagation mechanisms of styrene butadiene and natura...
Many factors are known to influence the mechanical fatigue life of rubber components. Four major cat...
A study has been made of the effect of single extensions and continuous fatigue on the structures of...
Fatigue life of unfilled polychloroprene rubber is characterized in fully relaxing (R=0) and non-rel...
Self-healing rubbers have steadily been growing during the last decades. Various strategies have bee...
International audienceThe present paper describes macroscopic fatigue damage in carbon black-filled ...
International audienceThe present paper deals with the fatigue crack growth in a carbon black-filled...
Rubber toughening mechanisms in acrylonitrile-butadiene-styrene (ABS) may be affected by the dispers...
Le comportement en fatigue du polychloroprène, un élastomère synthétique, est fonction de : • l’endo...
Tyre tread directly comes in contact with various road surfaces and is prone to damage due to cuts f...
Compounds incorporating hydrogenated acrylonitrile butadiene rubber (HNBR) are widely adopted in app...
This investigation addresses the evolution of the microscopic and mesoscopic structures distribution...
An investigation about the dependence of the physical properties of styrene-butadiene rubber copolym...
International audienceThis work tackles crack propagation mechanisms of styrene butadiene and natura...
Many factors are known to influence the mechanical fatigue life of rubber components. Four major cat...