Title of article
Cohesive fracture model for functionally graded fiber reinforced concrete
Author/Authors
Kyoungsoo Park، نويسنده , , Glaucio H. Paulino، نويسنده , , Jeffery Roesler، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
10
From page
956
To page
965
Abstract
A simple, effective, and practical constitutive model for cohesive fracture of fiber reinforced concrete is proposed by differentiating the aggregate bridging zone and the fiber bridging zone. The aggregate bridging zone is related to the total fracture energy of plain concrete, while the fiber bridging zone is associated with the difference between the total fracture energy of fiber reinforced concrete and the total fracture energy of plain concrete. The cohesive fracture model is defined by experimental fracture parameters, which are obtained through three-point bending and split tensile tests. As expected, the model describes fracture behavior of plain concrete beams. In addition, it predicts the fracture behavior of either fiber reinforced concrete beams or a combination of plain and fiber reinforced concrete functionally layered in a single beam specimen. The validated model is also applied to investigate continuously, functionally graded fiber reinforced concrete composites.
Keywords
Concrete (E) , Fiber reinforced concrete (FRC) (E) , Constitutive relationship (C) , Cohesive fracture (C) , Fracture energy (C)
Journal title
CEMENT AND CONCRETE RESEARCH
Serial Year
2010
Journal title
CEMENT AND CONCRETE RESEARCH
Record number
1216804
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