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Identification of Fracture Mechanic Properties of Concrete and Analysis of Shear Capacity of Reinforced Concrete Beams without Transverse Reinforcement

机译:无横向钢筋的钢筋混凝土梁的断裂力学特性识别及抗剪承载力分析

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摘要

The study of new and innovative quasi-brittle materials offers new possibilities for use in construction, but detailed knowledge of their behavior and mechanical properties is required. The use of new materials in the design solution of a structure is usually associated with numerical methods, which has a number of both advantages and disadvantages. Sophisticated numerical methods, without a sufficiently detailed input knowledge, can provide highly variable results with little informative value. The main goal of this article is to present the procedure for the identification of fracture mechanical parameters for a specific concrete with the use of developed inverse analysis combining multi-criteria decision analysis, stochastic modelling and nonlinear analysis. Subsequently, the identified mechanical parameters of concrete are used for the parametric study of shear resistance of structural beams without shear reinforcement, as an alternative or generalized approach to the study of damage to concrete and concrete structures. This research includes an experimental program using 24 reinforced concrete beams and a detailed determination of basic and specific mechanical properties during laboratory tests. The process of inverse analysis is illustrated in detail for the solved task. The use of nonlinear analysis for detailed failure modelling is based on a 3D computational model and a fracture plastic material model for concrete. Finally, the results of the experimental program and numerical modelling are discussed, leading to a number of conclusions.
机译:对新的和创新的准脆性材料的研究为在建筑中使用提供了新的可能性,但是需要对它们的行为和机械性能有详细的了解。在结构的设计解决方案中使用新材料通常与数值方法相关联,这既有优点也有缺点。如果没有足够详细的输入知识,复杂的数值方法可能会提供变化很大的结果,而很少提供参考。本文的主要目的是通过使用结合了多准则决策分析,随机建模和非线性分析的发达逆分析方法,提出用于鉴定特定混凝土的断裂力学参数的程序。随后,将确定的混凝土力学参数用于无抗剪加固的结构梁抗剪力的参数研究,作为研究混凝土和混凝土结构损伤的替代方法或通用方法。这项研究包括使用24条钢筋混凝土梁的实验程序,并在实验室测试期间详细确定基本和特定的机械性能。针对已解决的任务详细说明了逆分析的过程。非线性分析用于详细的故障建模基于混凝土的3D计算模型和断裂塑性材料模型。最后,讨论了实验程序和数值建模的结果,得出了许多结论。

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