Calculation of the formation of normal cracks in a reinforced concrete element based on the deformation theory of plasticity of concrete by G.A. Geniev

Ngoc Tuyen Vu, N. Fedorova
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Abstract

The authors present a refined method of determining the moment of cracking in reinforced concrete bar constructions using the diagram of deformation of concrete built on the basis of the deformation theory of plasticity by G.A. Geniev in which the stress and strain invariants of concrete are linked by nonlinear dependences. In the resulting defining equations, the hypothesis of flat sections, as well as the premise of reaching the limit values of concrete deformations on the stretched fibers of the cross-section are used. Stresses in concrete are determined through deformation values in accordance with the nonlinear deformation diagram of concrete. On the basis of the assumptions accepted, analytical dependences for determining the moment of cracking in the sections of bending elements with single and double reinforcement have been acquired. The formulas obtained were used in the analysis of various factors influence on crack resistance of bendable reinforced concrete elements. It was found out that the moment of crack formation practically does not change when percentage of reinforcement of longitudinal tensile or compressed reinforcement changes. The most effective method of crack resistance improvement is the increase of concrete strength. The proposed methodology is verified by comparison with experimental results on reinforced concrete prototypes. It is concluded that the use of the diagram of nonlinear deformation of concrete on the basis of the theory of plasticity by G.A. Geniev allows to estimate more strictly the crack resistance of reinforced concrete rod elements.
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基于G.a.Geniev的混凝土塑性变形理论计算钢筋混凝土单元中正常裂缝的形成
在Geniev塑性变形理论的基础上,作者提出了一种确定钢筋混凝土杆结构开裂力矩的改进方法,该方法采用混凝土变形图,其中混凝土的应力和应变不变量通过非线性依赖关系联系在一起。在得到的定义方程中,采用了平截面假设,以及混凝土对截面拉伸纤维的变形达到极限的前提。根据混凝土的非线性变形图,通过变形值确定混凝土中的应力。在接受的假设的基础上,获得了确定单筋和双筋弯曲单元截面开裂力矩的解析依赖关系。将所得公式应用于影响钢筋混凝土受弯构件抗裂性能的各种因素的分析。结果表明,随着纵向拉伸和压缩配筋比例的变化,裂缝形成力矩几乎没有变化。提高混凝土抗裂性能最有效的方法是提高混凝土强度。通过与钢筋混凝土原型试验结果的对比,验证了所提方法的正确性。结果表明,采用G.A. Geniev塑性理论基础上的混凝土非线性变形图可以更严格地估计钢筋混凝土杆单元的抗裂能力。
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来源期刊
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0.00%
发文量
26
审稿时长
18 weeks
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