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Flexural behavior of HPFRCC: Enhancing post-crack strength and toughness by magnetic alignment of the reinforcement

机译:HPFRCC的抗弯行为:通过磁力对准增强裂缝强度和韧性

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摘要

This paper presents an investigation on the effect of magnetic orientation of steel fibers on the physical-mechanical and electrical properties of a High Performance Fiber Reinforced Cement Composite. A simplified magnetic circuit was proposed to align the reinforcement within the cementitious matrix. X-ray Computer Tomography was employed to qualitatively access the fiber distribution in hardened specimens. Physical and electrical properties were characterized by ultrasound propagation velocity and electrical resistivity, while mechanical performance was evaluated by flexural and compressive tests. Scanning electron microscopy was used to study the damage processes in the fiber-matrix interfaces. Results showed that the magnetic circuit designed in this study was able to generate a preferential orientation of the steel fibers, increasing the ultrasound propagation velocity and causing anisotropy in the electrical properties. Furthermore, the modulus of rupture and toughness of the composite were significantly enhanced, leading to a feasible reduction in the critical fiber volume for bending when fibers are aligned. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了钢纤维磁取向对高性能纤维增强水泥复合材料的物理机械和电性能的研究。提出了一种简化的磁路以对准水泥基质内的增强件。 X射线计算机断层扫描被用来定性地进入硬化标本中的纤维分布。通过超声波传播速度和电阻率表征物理和电性能,而通过弯曲和压缩测试评估机械性能。扫描电子显微镜用于研究光纤矩阵接口中的损伤过程。结果表明,该研究中设计的磁路能够产生钢纤维的优先取向,增加超声波传播速度并导致电性能中的各向异性。此外,复合材料的破裂模量显着提高,导致纤维对准时弯曲的临界纤维体积的可行降低。 (c)2020 elestvier有限公司保留所有权利。

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