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A Finite Element-Based Methodology for the Thermo-mechanical Analysis of Early Age Behavior in Concrete Structures

机译:基于有限的基于元素的方法,用于混凝土结构中的早期行为的热力学分析

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摘要

Abstract This paper presents a general procedure based on fracture mechanics models in order to analyze the level of cracking and structural safety in reinforced concrete elements at early ages, depending on the stripping time. Our procedure involves the development of a thermo-mechanical numerical model based on the finite element method that accounts for the change in the mechanical properties of concrete with time. Moreover, fracture mechanisms are analyzed by means of a material damage model, which is characterized via specific experimental results obtained for standard specimens and notched beams under three-point bending testing. The loading conditions are both thermal and mechanical, and are obtained from the hydration process for a given concrete dosage. The presented methodology allows for the determination of the optimal stripping time, whereas it helps assessing the analysis of the cracking and the stress states of the elements under consideration. A practical application, namely the analysis of a retaining wall, is used to validate our methodology, showing its suitability in engineering practice.
机译:摘要本文介绍了一种基于骨折力学模型的一般程序,以分析早期升降时间的钢筋混凝土元件的开裂和结构安全水平。我们的程序涉及基于有限元方法开发热机械数值模型,该方法考虑了混凝土机械性能随时间的变化。此外,通过材料损伤模型分析断裂机制,其特征在于,通过在三点弯曲测试下获得标准试样和切口梁的特定实验结果。负载条件既是热又机械,也是从给定混凝土剂量的水合过程中获得的。所提出的方法允许确定最佳剥离时间,而它有助于评估所考虑的元素的裂缝和应力状态的分析。实际应用,即挡土墙的分析用于验证我们的方法,显示其在工程实践中的适用性。

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