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Post-peak behavior of concrete specimens undergoing deformation localization in uniaxial compression

机译:混凝土试样在单轴压缩下经历变形局部化后的峰后行为

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摘要

It is generally recognized that the failure of concrete in compression is characterized by the localization of deformations in the so-called localized fracture zone. Experimental investigations have shown that this zone is not constant, but gradually extends during the softening process to reach its final length at the complete failure. This paper presents a mechanism of the deformation localization by Mode I crack propagation on a considering the growth of the localized fracture zone. With the proposed mechanism, stress-strain relations for different locations in the localized fracture zone are extracted from the total stress-displacement curves derived from tests of specimens with low boundary restraint and with different sizes and L/D-ratios. Good agreement between calculated and experimental total stress-strain curves implies that the proposed mechanism of the localization of deformations is realistic. The stress-strain curve of the of the localized fracture zone developed at the peak stress is then considered as a material model for unconfined concrete in the modeling of the confinement in reinforced concrete columns with transverse reinforcement. (C) 2015 Elsevier Ltd. All rights reserved.
机译:人们普遍认为,混凝土受压破坏的特征是在所谓的局部断裂区中局部变形。实验研究表明,该区域不是恒定的,而是在软化过程中逐渐延伸,直到完全破坏时才达到最终长度。考虑到局部断裂区域的增长,本文提出了通过I型裂纹扩展的变形局部化机理。利用所提出的机制,从低边界约束,不同尺寸和L / D比的试样的试验得出的总应力-位移曲线中提取局部断裂带不同位置的应力-应变关系。计算的和实验的总应力-应变曲线之间的良好一致性意味着所提出的变形局部化机制是现实的。然后,在采用横向配筋的钢筋混凝土柱的约束建模中,将在峰值应力下产生的局部断裂区域的应力-应变曲线视为无约束混凝土的材料模型。 (C)2015 Elsevier Ltd.保留所有权利。

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