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用于砌体结构加固的纤维增强复合材料(FRCM)的拉伸性能——实验研究

Tensile Behaviour of FRCM Composites for Strengthening of Masonry Structures-An Experimental Investigation.

作者信息

Hojdys Łukasz, Krajewski Piotr

机构信息

Faculty of Civil Engineering, Cracow University of Technology, Warszawska 24, 31-155 Krakow, Poland.

出版信息

Materials (Basel). 2021 Jun 29;14(13):3626. doi: 10.3390/ma14133626.

Abstract

This paper presents the results of direct tensile tests performed on six different FRCM (fabric reinforced cementitious matrix) strengthening systems used for masonry structures. The emphasis was placed on the determination of the mechanical parameters of each tested system and a comparison of their tensile behaviour in terms of first crack stress, ultimate stress, ultimate strain, cracking pattern, failure mode and idealised tensile stress-strain curve. In addition to the basic mechanical tensile parameters, accidental load eccentricities, matrix tensile strengths, and matrix modules of elasticity were estimated. The results of the tests showed that the tensile behaviour of FRCM composites strongly depends on the parameters of the constituent materials (matrix and fabric). In the tests, tensile failure of reinforcement and fibre slippage within the matrix were observed. The presented research showed that the accidental eccentricities did not substantially affect the obtained results and that the more slender the specimen used, the more consistent the obtained results. The analysis based on a rule of mixtures showed that the direct tensile to flexural tensile strength ratio of the matrixes used in the test was 0.2 to 0.4. Finally, the tensile stress-strain relationship for the tested FRCMs was idealised by a bi- or tri-linear curve.

摘要

本文介绍了对用于砌体结构的六种不同纤维增强水泥基复合材料(FRCM)加固系统进行直接拉伸试验的结果。重点在于确定每个测试系统的力学参数,并比较它们在初裂应力、极限应力、极限应变、开裂模式、破坏模式和理想化拉伸应力-应变曲线方面的拉伸性能。除了基本的机械拉伸参数外,还估算了偶然荷载偏心距、基体拉伸强度和基体弹性模量。试验结果表明,FRCM复合材料的拉伸性能很大程度上取决于组成材料(基体和织物)的参数。在试验中,观察到了增强材料的拉伸破坏和基体内的纤维滑移。所呈现的研究表明,偶然偏心距对所得结果没有实质性影响,并且使用的试件越细长,所得结果越一致。基于混合法则的分析表明,试验中使用的基体的直接拉伸强度与弯曲拉伸强度之比为0.2至0.4。最后,通过双线性或三线性曲线对测试的FRCM的拉伸应力-应变关系进行了理想化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fb3/8269619/de5bdbfeef4a/materials-14-03626-g001.jpg

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