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Research On Non-linear Structural Behaviors Of Prestressed concrete Beams Made Of High Strength And Steel fiber Reinforced Concretes

机译:钢纤维增强高强预应力混凝土梁的非线性结构特性研究

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摘要

The flexural behaviors of fully and partially prestressed concrete beams made of high strength and steel fiber reinforced concretes are studied by experiment and non-linear finite element method. Three levels of partial prestress ratio (PPR) are considered, and for each PPR, a pair of two-span continuous beams with box-section arc designed. In each pair of the test beams, one is constructed by the high strength concrete completely, and for the other one the steel fiber reinforced concrete is used in the negative moment zone (the mid-support zone). Such structural behaviors as the deflection of beam, the formation and the development of crack, the strain of concrete and reinforcement bar, and the moment redistribution are investigated. A non-linear finite element analysis program is developed and applied. The constitutive behavior of concrete is modeled by the microplane theory. A four-nodal six-DOF (degree of freedom) degenerated shell element is adopted to simulate the structural behaviors of the box-section beam. To obtain the ultimate limit state of the structure, the arc-length method is introduced in the non-linear solution. The analytical results agree well with test ones. The influences of the steel fiber reinforced concrete used in the negative moment zone on the structural behaviors are mainly concerned.
机译:通过实验和非线性有限元方法研究了由高强度钢纤维增强混凝土制成的全预应力和部分预应力混凝土梁的抗弯性能。考虑了三个级别的局部预应力比(PPR),并且对于每个PPR,设计了一对具有箱形截面弧的两跨连续梁。在每对测试梁中,一个完全由高强度混凝土构成,对于另一个,在负弯矩区域(中间支撑区域)中使用钢纤维增强混凝土。研究了梁的挠度,裂缝的形成和发展,混凝土和钢筋的应变以及弯矩的重新分布等结构行为。开发并应用了非线性有限元分析程序。混凝土的本构行为是通过微平面理论建模的。采用四节点六自由度简并壳单元模拟箱形截面梁的结构行为。为了获得结构的极限状态,在非线性解决方案中引入了弧长方法。分析结果与测试结果吻合良好。主要关注负弯矩区域使用的钢纤维混凝土对结构性能的影响。

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