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A stress-function variational approach toward CFRP -concrete interfacial stresses in bonded joints

机译:应力函数变化方法处理粘结节点中的CFRP-混凝土界面应力

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This paper presents an innovative stress-function variational approach in formulating the interfacial shear and normal stresses in an externally bonded concrete joint using carbon fiber-reinforced plastic (CFRP) plies. The joint is subjected to surface traction loadings applied at both ends of the concrete substrate layer. By introducing two interfacial shear and normal stress functions on the CFRP-concrete interface, based on Euler-Bernoulli beam idea and static stress equations of equilibrium, the entire stress fields of the joint were determined. The complementary strain energy was minimized in order to solve the governing equation of the joint. This yields an ordinary differential equation from which the interfacial normal and shear stresses were proposed explicitly, satisfying all the multiple traction boundary conditions. Lamination theory for composite materials was also employed to obtain the interfacial stresses. The proposed approach was validated by the analytic models in the literature as well as through a comprehensive computational code generated by the authors. Furthermore, a numerical verification was carried out via the finite element software ABAQUS. In the end, a scaling analysis was conducted to analyze the interfacial stress field dependence of the joint upon effective issues using the devised code.
机译:本文提出了一种创新的应力函数变分方法,该方法在使用碳纤维增强塑料(CFRP)层的外部粘结混凝土接头中制定界面剪力和正应力。接合处承受施加在混凝土基材层两端的表面牵引载荷。通过在CFRP-混凝土界面上引入两个界面剪切和法向应力函数,基于Euler-Bernoulli梁思想和平衡静应力方程,确定了节点的整个应力场。互补应变能被最小化以解决接头的控制方程。这产生了一个常微分方程,从中明确提出了满足所有多重牵引边界条件的界面法向应力和剪应力。复合材料的层合理论也被用来获得界面应力。该方法已通过文献中的分析模型以及作者生成的综合计算代码进行了验证。此外,通过有限元软件ABAQUS进行了数值验证。最后,进行了定标分析,以使用设计的代码分析关节在有效问题上的界面应力场依赖性。

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