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Finite-Element Analysis of Prestressed Concrete Frame Joints with Spread-Ended Beams
On the basis of the joint model experiment, the non-linear performance of joints is analysed by using finite element program. The concrete stress distribution, stirrups stress and dangerous area of joints with spread-ended beams are discussed. Finite element analysis shows that effective prestressing tendons through the joint core region play a beneficial role in concrete and can improve the compressive strengths of concrete, and help to improve the shear strength of joints. Finally, according to experiments and theoretical analysis, the beginning of the haunched region is the dangerous area of joint. In order to avoid concrete tension failure when exerting prestress, the beginning of the haunched region must have enough transverse U-shaped bars to resist the prestressing tension.
Finite-Element Analysis of Prestressed Concrete Frame Joints with Spread-Ended Beams
On the basis of the joint model experiment, the non-linear performance of joints is analysed by using finite element program. The concrete stress distribution, stirrups stress and dangerous area of joints with spread-ended beams are discussed. Finite element analysis shows that effective prestressing tendons through the joint core region play a beneficial role in concrete and can improve the compressive strengths of concrete, and help to improve the shear strength of joints. Finally, according to experiments and theoretical analysis, the beginning of the haunched region is the dangerous area of joint. In order to avoid concrete tension failure when exerting prestress, the beginning of the haunched region must have enough transverse U-shaped bars to resist the prestressing tension.
Finite-Element Analysis of Prestressed Concrete Frame Joints with Spread-Ended Beams
Applied Mechanics and Materials ; 638-640 ; 115-119
2014-09-19
5 pages
Article (Journal)
Electronic Resource
English
Finite-Element Analysis of Prestressed Concrete Frame Joints with Spread-Ended Beams
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