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Fracture Mechanics of Concrete
In many respects, concrete is a far more complex material to model in the inelastic range than steel. Only relatively recently has the research community embraced fracture mechanics as a model to capture its cracking. Given the importance of the topic, a separate chapter is hence devoted to this form of fracture. It is composed of two parts: macro and micro cracks.
In the former, emphasiz will be on Hillerborg’s model that is by now universally accepted for the fracture of cementitious material. Then the important phenomenon of strain localization and accompanying size effect laws will be addressed.
In the second part of the chapter, the impact of micro-cracks in concrete will be addressed.
Fracture Mechanics of Concrete
In many respects, concrete is a far more complex material to model in the inelastic range than steel. Only relatively recently has the research community embraced fracture mechanics as a model to capture its cracking. Given the importance of the topic, a separate chapter is hence devoted to this form of fracture. It is composed of two parts: macro and micro cracks.
In the former, emphasiz will be on Hillerborg’s model that is by now universally accepted for the fracture of cementitious material. Then the important phenomenon of strain localization and accompanying size effect laws will be addressed.
In the second part of the chapter, the impact of micro-cracks in concrete will be addressed.
Fracture Mechanics of Concrete
Saouma, Victor E. (Autor:in) / Hariri-Ardebili, M. Amin (Autor:in)
Aging, Shaking, and Cracking of Infrastructures ; Kapitel: 8 ; 161-189
14.04.2021
29 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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