Simulation of Flexural Behavior of Damaged Prestressed Concrete Beam by Finite Element Method
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Creator 1. Paradorn Matchan
2. Sayan Sirimontree
3. Boonsap Witchayagkoon
Title Simulation of Flexural Behavior of Damaged Prestressed Concrete Beam by Finite Element Method
Publisher TUENGR GROUP
Publication Year 2558
Journal Title International Transaction Journal of Engineering, Management, & Applied Sciences & Technologies
Journal Vol. 6
Journal No. 5
Page no. 225
Keyword Structural degradation, Post- tension, T-beam, Flexural stiffness, Permanent deformation
ISSN 2228-9860
Abstract Finite element model is applied to simulate the flexural behavior of bonded post tension prestressed concrete (PC) T beam. Flexural behavior of PC beam is characterized by load-deformation relationship in both linear elastic uncrack and nonlinear after cracking stage. Analytical software, ANSYS, is utilized the simulation of flexural behaviors both loading and unloading path. Nonlinearity of materials are considered and taken into account. The developed model is verified by experimental results. The study finds good agreement between analytical and experimental results. Degradation of PC girder due to overload beyond cracking can be expressed by the loss of flexural stiffness and permanent deformation after unloading due to accumulated cracks. The verified finite element model can be parametrically used to predict flexural behavior of PC beam in various levels of overloading.
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