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Mechanical and microstructural properties of HFRHSCs containing metakaolin subjected to elevated temperatures and freezing-thawing cycles

机译:含偏高岭土的HFRHSC在高温和冻融循环下的力学和微观结构性能

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Mechanical and microstructural properties of hybrid fibers reinforced high strength concretes (HFRHSCs) containing metakaolin (MK) and metakaolin + silica fume (MK + SF) subjected to elevated temperatures and freezing-thawing (F-T) cycles were investigated in this paper. In the concrete mixtures without and with hybrid fibers, MK and MK + SF were replaced with eight percentage of cement by weight. A total of sixteen concrete mixtures were produced at a water-to-binder ratio of 0.25. Ultrasound pulse velocity (U-pv), compressive strength (f(c)), splitting tensile strength (f(sts)) and flexural strength (f(fs)) tests were performed to evaluate the properties of HFRHSCs subjected to ambient and elevated temperatures (300, 400 and 500 degrees C). The U-pv and fc tests of HFRHSCs subjected to F-T cycles were also conducted. Moreover, the alterations in the matrix, interface zone and aggregate of concretes without hybrid fibers subjected to ambient temperature, elevated temperatures and F-T cycles were analyzed by scanning electron microscope (SEM), energy dispersive spectroscopy (EDS) spot and polarized light microscope (PLM). The results of tests have shown that the replacement levels of MK and MK + SF have important influences on the mechanical and microstructural properties of high strength concretes. Moreover, the mechanical results have shown that the concretes with hybrid fibers have higher f(c), f(sts) and f(fs) than other concretes. The results have also shown that the U-pv, f(c), fsts and f(fs) values of concretes without and with hybrid fibers decrease, as the temperature increases. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了含有偏高岭土(MK)和偏高岭土+硅粉(MK + SF)的混杂纤维增强高强度混凝土(HFRHSC)在高温和冻融(F-T)循环下的力学和微观结构性能。在没有和有混合纤维的混凝土混合物中,MK和MK + SF被重量百分比为8%的水泥代替。以水与粘合剂的比例为0.25的方式生产了总共16种混凝土混合物。进行了超声脉冲速度(U-pv),抗压强度(f(c)),抗拉强度(f(sts))和抗弯强度(f(fs))测试以评估HFRHSC在环境和高温下的性能温度(300、400和500摄氏度)。还进行了经受F-T循环的HFRHSC的U-pv和fc测试。此外,通过扫描电子显微镜(SEM),能量色散光谱(EDS)点光和偏振光显微镜(PLM)分析了没有杂化纤维的混凝土的基质,界面区域和骨料在环境温度,高温和FT循环下的变化。 )。测试结果表明,MK和MK + SF的替代量对高强度混凝土的机械和微观结构性能具有重要影响。此外,力学结果表明,具有混合纤维的混凝土比其他混凝土具有更高的f(c),f(sts)和f(fs)。结果还表明,随着温度的升高,没有和有混合纤维的混凝土的U-pv,f(c),fsts和f(fs)值降低。 (C)2017 Elsevier Ltd.保留所有权利。

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