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Microstructure and mechanical behavior of cementitious composites with multi-scale additives

机译:多尺度添加剂水泥复合材料的微观结构和力学行为

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This paper studies the effect of using multi-scale reinforcement additives on mechanical strengths, damage performance, microstructure, and water absorption of cementitious composites. Small dosages of carbon nanotubes (CNTs) or polypropylene (PP) microfibers; 0.05%, 0.1%, and 0.2% by weight of cement; were added either separately or simultaneously into cement mortar. The experimental results show the ability of these additives to enhance the mechanical behavior of the mortar. The best improvement in compressive and flexural strengths of cement mortar reaches 28% in the case of adding a combination of 0.1% CNTs and 0.2% PP fibers for compression, and a combination of 0.2% CNTs and 0.2% PP fibers for flexure. Adding CNTs does not change the brittle mode of failure of plain mortar whereas the presence of PP fibers changes it into ductile failure and clearly enhances the fracture energy of the specimens. Scanning electron microscopic (SEM) images of the fracture surfaces highlights the role of CNTs in improving the adhesion between the PP fibers and the hydration products and thus enhance the ability of the fibers to mitigate cracks propagation and to enhance the mechanical performance of the mortar.
机译:本文研究了使用多尺度增强剂对水泥复合材料的机械强度,损伤性能,微观结构和吸水性的影响。小剂量的碳纳米管(CNT)或聚丙烯(PP)微纤维; 0.05%,0.1%和0.2重量%的水泥;单独或同时添加到水泥砂浆中。实验结果表明这些添加剂提高了砂浆的力学行为的能力。在添加0.1%CNT和0.2%PP纤维的组合的情况下,水泥砂浆的压缩和弯曲强度的最佳改善达到28%,以及用于压缩的组合和0.2%CNT和0.2%PP纤维的弯曲的组合。添加CNT不会改变普通砂浆的脆性失效模式,而PP纤维的存在将其变为延性故障,并明确提高了标本的裂缝能量。扫描电子显微镜(SEM)图像的裂缝表面突出CNT在改善PP纤维和水合产物之间的粘合方面的作用,从而提高纤维减轻裂缝传播的能力,并提高砂浆的机械性能。

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