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Study on bending damage and failure of basalt fiber reinforced concrete under freeze-thaw cycles

机译:玄武岩纤维混凝土冻融循环弯曲破坏与破坏研究

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The whole-field deformation of the basalt fiber reinforced concrete under three-point bending test were measured by the digital image correlation (DIC) technique. Based on the horizontal strain field on the specimen's surface, a damage degree factor and a localization factor were proposed to describe the bending damage and failure characteristics of the specimens, with a further analysis of the effect of the fiber content and freeze-thaw cycles on the characteristics. The experimental results show that the failure process can be divided into three stages: the micro-fracture dispersion, the macro-crack selection, and the main crack propagation. The basalt fiber extended the nonlinear phase of the curves characterizing the two factors, indicating that the fiber enhanced the resistance to the elastic-plastic deformation and thereby restrained the bending damage and failure. The freeze-thaw cycles shortened the linear phase of the two factor curves, suggesting that the freeze-thaw could reduce the elastic deformation capacity of the specimen and thereby accelerate the bending damage process. The incorporation of fibers can reduce the influence of freeze-thaw on the damage and failure process of the specimen, and in this test, the best bending performance of the basalt fiber concrete is given by concrete with 2.0 kg/m(3) basalt fiber density, but the freezing and thawing will weaken the role of fiber to inhibit the damage. Both the fiber incorporation and the freezing and thawing can change the bending damage process from the brittle failure to the ductile failure. However, in this process, the fiber incorporation can improve the bending strength of the specimen while the freeze-thaw can reduce the strength. (C) 2017 Elsevier Ltd. All rights reserved.
机译:利用数字图像相关技术(DIC)测量了玄武岩纤维混凝土三点弯曲试验的全场变形。根据试样表面的水平应变场,提出了损伤程度因子和局部因子来描述试样的弯曲损伤和破坏特性,并进一步分析了纤维含量和冻融循环对试样的影响。特点。实验结果表明,破坏过程可以分为三个阶段:微裂纹的分散,宏观裂纹的选择和主要裂纹的扩展。玄武岩纤维扩展了表征这两个因素的曲线的非线性相位,表明该纤维增强了对弹塑性变形的抵抗力,从而抑制了弯曲损伤和破坏。冻融循环缩短了两条因子曲线的线性相位,表明冻融可降低试样的弹性变形能力,从而加速弯曲破坏过程。纤维的掺入可以减少冻融对试样破坏和破坏过程的影响,在该测试中,玄武岩纤维混凝土的最佳弯曲性能是由2.0 kg / m(3)玄武岩纤维制成的密度高,但冻融会削弱纤维抑制损伤的作用。纤维的掺入以及冻结和解冻都可以将弯曲破坏过程从脆性破坏变为延性破坏。但是,在该过程中,纤维的掺入可以提高样品的弯曲强度,而冻融可以降低强度。 (C)2017 Elsevier Ltd.保留所有权利。

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