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Method for evaluating the flexural stiffness bar of Reinforced Concrete Structures

机译:评估钢筋混凝土结构弯曲刚度棒的方法

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The structural design methods development nowadays allows including the effects of geometric and mechanical nonlinearity of the materials in the analysis itself. The resolution through matrixes methods frequently involves an incremental treatment for load application and a tangent stiffness matrix that bears in mind the nonlinearity. The present paper shows a procedure to evaluate the bar stiffness considering mechanical nonlinearity of materials. For structures of reinforced concrete formed by two materials where each of them has a resistant behavior so different from the other, its appropriated evaluation is, at the same time, necessary and especially complex. The iterative process exposed here provides the equilibrium position of the section to the general case of axial force and biaxial bending taking into account the nonlinear constituent relationships of materials. Once the equilibrium is reached, the relationship between the biaxial moment and the curvature allows the section stiffness module to be derived, from which the bar stiffness will be determined. As an application of the exposed procedure, the iterative process of the equilibrium research in a section of reinforced concrete is showed. At the moment-curvature diagram can be observed the stiffness progressive decreasing as biaxial bending moments are increasing, because of materials nonlinearity stresses and strains and the section inertia reduction produced by concrete cracking.
机译:如今的结构设计方法开发允许包括材料在分析本身中的几何和机械非线性的影响。通过矩阵方法的分辨率经常涉及负载应用的增量处理和携带非线性的切线刚度矩阵。本文示出了考虑材料的机械非线性的钢筋刚度的过程。对于由两种材料形成的钢筋混凝土的结构,其中每个材料具有与另一个不同的抗性行为,其适当的评价是同时,必要的,特别是复杂的。这里暴露的迭代过程提供了轴向力和双轴弯曲的一部分的平衡位置,同时考虑了材料的非线性组成关系。一旦达到平衡,双轴时刻和曲率之间的关系允许导出截面刚度模块,从该截面刚度模块将从该截面刚度模块确定。作为暴露的程序的应用,显示了钢筋混凝土截面均衡研究的迭代过程。在瞬间曲率图中,由于材料非线性应力和菌株以及通过混凝土裂缝产生的惯性减少,因此可以观察到刚度逐渐减小的刚度逐渐减小。

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