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MATERIAL NONLINEAR ANALYSIS OF STEEL FIBRE REINFORCED CONCRETE BEAMS FAILING IN SHEAR

机译:剪力作用下钢纤维混凝土梁的材料非线性分析

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摘要

Experimental research has pointed out that fibre reinforcement gives valuable contribution for the shear strength of concrete beams. To obtain data to check the validity of the formulation proposed by RILEM TC 162-TDF for the evaluation of the fibres contribution for the concrete shear strength, sets of concrete beams were tested experimentally. To simulate the behaviour of this kind of structures, a computational code was developed, based on the finite element techniques. An accurate simulation of the behaviour of structures failing in a brittle mode, such is the case of the beams failing in shear, is a true challenge in the computational mechanics domain. To reproduce with enough accuracy the fracturing process of this type of elements, a multifixed crack model is implemented. The ability of the post-cracking stress-strain diagram proposed by RILEM TC 162-TDF to simulate the crack propagation is checked. A strain softening trilinear diagram is also derived from inverse analysis using the force-deflection relationship obtained in RILEM three-point notched beam tests. Its capability to model the fracture mode I is also assessed. The numerical strategy developed is described in the present work and the appropriateness of the model is evaluated simulating some beams tested experimentally.
机译:实验研究表明,纤维增强对混凝土梁的抗剪强度有重要贡献。为了获得数据以检验RILEM TC 162-TDF提出的配方的有效性,该配方用于评估纤维对混凝土抗剪强度的影响,对混凝土梁进行了试验测试。为了模拟这种结构的行为,基于有限元技术开发了计算代码。在计算力学领域,对脆性破坏的结构行为(例如,梁在剪切破坏的情况下)进行准确的模拟是一个真正的挑战。为了以足够的精度再现此类元素的压裂过程,实施了多固定裂纹模型。检查了RILEM TC 162-TDF提出的裂纹后应力-应变图模拟裂纹扩展的能力。还使用RILEM三点槽形梁测试中获得的力-挠度关系从反分析中得出了应变软化三线性图。还评估了其对断裂模式I建模的能力。在当前工作中描述了开发的数值策略,并通过模拟一些实验测试的光束来评估模型的适当性。

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