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Effects of SiO_2 nanoparticles dispersion on concrete fracture toughness

机译:SiO_2纳米颗粒分散对混凝土断裂韧性的影响

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摘要

Failure of concrete structures is usually accompanied by expansion of interior cracks due to stress concentration at the cracks tip. This phenomenon shows the importance of examination of the failure behavior of concrete structures. For this purpose, 4 types of concrete samples with different amounts of nano-SiO2 (0%, 0.2%, 0.5%, and 0.8%) were made to prepare some Central Straight-through Crack Brazilian Disk (CSCBD) specimens. The key focus of the investigation conducted was to investigate two assumptions. First, to check the pure mode I (tension) and pure mode II (shear) by compressing the standard discs with central cracks by an angle of 0 and 27 with respect to the loading axis; Second, to investigate the failure behavior of control and binary blended concrete using Acoustic Emission (AE) technique. The results show that the highest fracture toughness in both mode I and II was obtained at 0.5% of nano-SiO2 blended concrete. Also the behavior of micro cracks which transforms from tensile mode to shear mode could be sensible. (C) 2018 Elsevier Ltd. All rights reserved.
机译:混凝土结构的破坏通常伴随着内部裂纹的扩展,这是由于裂纹尖端处的应力集中所致。这种现象表明检查混凝土结构破坏行为的重要性。为此目的,制备了四种类型的混凝土样品,分别使用不同量的纳米SiO2(0%,0.2%,0.5%和0.8%)制备了一些中央直通巴西裂纹盘(CSCBD)样品。进行调查的重点是调查两个假设。首先,通过将中心裂纹的标准圆盘相对于加载轴压缩0度和27度,以检查纯模式I(拉伸)和纯模式II(剪切);其次,利用声发射(AE)技术研究了控制和二元混合混凝土的破坏行为。结果表明,在模式I和模式II中,在0.5%的纳米SiO2混合混凝土中都获得了最高的断裂韧性。从拉伸模式转变为剪切模式的微裂纹的行为也可能是合理的。 (C)2018 Elsevier Ltd.保留所有权利。

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