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Bearing capacity of concrete hinges subjected to eccentric compression: multiscale structural analysis of experiments

机译:经过偏心压缩的混凝土铰链的承载力:实验的多尺度结构分析

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摘要

AbstractExisting design guidelines for concrete hinges are focusing on serviceability limit states. Lack of knowledge about ultimate limit states was the motivation for this work. Experimental data are taken from a testing series on reinforced concrete hinges subjected to eccentric compression up to their bearing capacity. These tests are simulated using the finite element (FE) software Atena science and a material model for concrete implemented therein. The first simulation is based on default input derived from measured values of Young’s modulus and of the cube compressive strength of the concrete. The numerical results overestimate the initial stiffness and the bearing capacity of the tested concrete hinges. Therefore, it is concluded that concrete was damaged already before the tests. A multiscale model for tensile failure of concrete is used to correlate the preexisting damage to corresponding values of Young’s modulus, the tensile strength, and the fracture energy of concrete. This allows for identifying the preexisting damage in the context of correlated structural sensitivity analyses, such that the simulated initial stiffness agrees well with experimental data. In order to simulate the bearing capacity adequately, the triaxial compressive strength of concrete is reduced to a level that is consistent with regulations according to Eurocode 2. Corresponding FE simulations suggest that the ductilestructuralfailure of concrete hinges results from the ductilematerialfailure of concrete at the surface of the compressed lateral notch. Finally, Eurocode-inspired interaction envelopes for concrete hinges subjected to compression and bending are derived. They agree well with the experimental data.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>现有的混凝土铰链设计指南专注于可维护性限制状态。缺乏关于终极极限国家的知识是这项工作的动力。实验数据采用钢筋混凝土铰链的测试系列,经受偏心压缩的厚度压缩。使用有限元(FE)软件Atena Mocibal和用于其中的混凝土的材料模型来模拟这些测试。第一个仿真基于从杨氏模量的测量值和混凝土的立方体抗压强度导出的默认输入。数值结果高估了测试混凝土铰链的初始刚度和承载力。因此,得出结论,混凝土在测试前已经损坏了。用于混凝土的拉伸失效的多尺度模型用于将预先存在的损伤与混凝土的抗拉强度,拉伸强度和裂缝能量的相应值相关联。这允许在相关结构敏感性分析的上下文中识别预先存在的损坏,使得模拟初始刚度与实验数据很好。为了充分模拟承载力,混凝土的三轴压缩强度降低到与根据EUROCODE 2的规定一致的水平。相应的FE模拟表明,延性<重点型=“斜体”>结构混凝土铰链的失效来自延性<重点型=“斜体”>材料压缩横向凹口表面的混凝土的失效。最后,推导出欧式码的互动信封,用于受压力和弯曲的混凝土铰链。他们对实验数据很好。 ]]>

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  • 来源
    《Acta Mechanica》 |2018年第2期|共18页
  • 作者单位

    Institute for Mechanics of Materials and Structures TU Wien – Vienna University of Technology;

    Institute for Mechanics of Materials and Structures TU Wien – Vienna University of Technology;

    Vill Ziviltechniker GmbH;

    Institute for Mechanics of Materials and Structures TU Wien – Vienna University of Technology;

    Institute for Mechanics of Materials and Structures TU Wien – Vienna University of Technology;

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  • 正文语种 eng
  • 中图分类 力学;
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