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Boundary restraint effect of concrete member by steel bars during construction

机译:施工过程中钢筋对混凝土构件的边界约束作用

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摘要

There is a risk of early age cracking for cast-in situ underground concrete construction, for example the excavated tunnel, that experience hydration, shrinkage, and temperature deformation and that are subject to external constraints and adjacent components generating tensile stresses. Quantitative determination of the boundary constraints is an important baseline to assess crack stresses and to achieve crack control measures.In this paper, the confining characteristics of the boundaries of reinforced concrete and poured concrete are analysed. In particular, it deals with the constraints introduced in sequentially constructed structures by previously built parts. A spring element is used to replace all types of boundary restraints. Mechanical modelling of tangential stiffness and normal stiffness for boundary restraint is adopted to establish the restraint stiffness calculation model and is verified using a back analysis. The influencing factors of each parameter are studied and analysed. It is shown that the anchorage length and the distance of the steel bar are the main influencing factors of the boundary constraint compared to the age of the concrete and other factors.Using the results of this study, it is possible to simplify the boundary conditions of adjacent members during numerical simulations and to accurately describe the early age performance of concrete structure that provide the basis for controlling the early age cracking of underground concrete structures.
机译:对于现浇地下混凝土结构(例如,开挖的隧道)而言,存在开裂的风险,该开挖的隧道会发生水合作用,收缩和温度变形,并受到外部约束和相邻组件的拉伸应力。边界约束的定量确定是评估裂缝应力和实现裂缝控制措施的重要基准。本文分析了钢筋混凝土和浇筑混凝土边界的边界特征。特别地,它处理由先前构建的零件在顺序构建的结构中引入的约束。弹簧元件用于替换所有类型的边界约束。采用边界约束的切向刚度和法向刚度的力学模型建立约束刚度计算模型,并通过反分析进行了验证。研究并分析了各个参数的影响因素。结果表明,与混凝土的使用年限相比,钢筋的锚固长度和锚固距离是边界约束的主要影响因素和其他因素。利用本研究的结果,可以简化钢筋混凝土的边界条件。数值模拟过程中的相邻构件,以准确描述混凝土结构的早期性能,为控制地下混凝土结构的早期裂缝提供基础。

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