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Crack propagation and strain localization in metallic particulate-reinforced cementitious mortars

机译:金属颗粒增强水泥砂浆中的裂纹扩展和应变局部化

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The influence of replacing up to 30% of ordinary Portland cement (OPC) by volume with waste iron powder (containing a significant fraction of elongated particles) on the fracture response of composite mortars is reported. The increase in the overall strain energy release rate at higher paniculate contents is dominated by its elastic component, which correlates well with the increase in length of the fracture process zone (FPZ), determined using digital image correlation. The tensile properties of the composites, determined from an analytical tension model, are also found to increase with iron powder content. The impact of metallic paniculate incorporation was the most prominent in enhancing the tensile toughness of the composite rather than the strength or stiffness. It is shown that cementitious systems with enhanced toughness typically attained through the use of fiber reinforcement can be designed using metallic paniculate reinforcement, at a much lower OPC content, which thus provides the composite with sustainability benefits also.
机译:据报道,用废铁粉(含有大量的拉长颗粒)代替体积达30%的普通硅酸盐水泥(OPC)对复合砂浆的断裂响应有影响。在较高的颗粒含量下,总应变能释放速率的增加主要由其弹性成分决定,该弹性成分与使用数字图像相关性确定的断裂过程区(FPZ)长度的增加具有良好的相关性。还发现,根据分析张力模型确定的复合材料的拉伸性能会随铁粉含量的增加而增加。金属颗粒掺入的影响在增强复合材料的拉伸韧性而不是强度或刚度方面最为突出。结果表明,通常可以通过使用金属颗粒增强剂来设计通常通过使用纤维增强剂获得的具有增强的韧性的胶凝体系,而其OPC含量要低得多,因此也为复合材料提供了可持续性。

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