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Fractal analysis of crack paths into innovative carbon-based cementitious composites

机译:基于碳基水泥复合材料的裂纹路径分形分析

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摘要

Fractal geometry has been widely used in literature to characterize the mechanical behaviour of quasi brittle materials. In this work, innovative cementitious composites with carbon-based pyrolyzed micro-aggregates were tested until complete fracture and their fracture behaviour was studied in the light of fractal geometry. Images of the crack paths across the tested specimens were acquired by Scanning Electron Microscopy (SEM) and their fractal dimension was calculated via the box counting method. Results show that the pyrolyzed micro-aggregates, characterized by high strength and stiffness due to their significant carbon content, are able to alter the crack path by increasing its tortuosity, thus inducing toughening mechanisms in the cementitious composites. This favourable behaviour is explained by means of fractal geometry: it is found that, the greater the fractal dimension of the crack path, the higher the fracture energy. (C) 2017 Elsevier Ltd. All rights reserved.
机译:分形几何是广泛应用于文献的特征,以表征准脆性材料的力学行为。 在这项工作中,测试了具有碳基热解的微聚集体的创新化水泥复合材料直至完全骨折,并且在分形几何形状中研究了它们的断裂行为。 通过扫描电子显微镜(SEM)获得横跨测试样品的裂纹路径的图像,并且通过盒子计数方法计算它们的分形尺寸。 结果表明,由于其显着的碳含量,具有高强度和刚度的热解的微聚集体能够通过增加曲折性来改变裂纹路径,从而在水泥复合材料中诱导增韧机制。 这种有利的行为通过分形几何来解释:发现,裂纹路径的分形尺寸越大,骨折能量越高。 (c)2017 Elsevier Ltd.保留所有权利。

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