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首页> 外文期刊>Construction and Building Materials >X-ray computed tomography and fractal analysis for the evaluation of segregation resistance, strength response and accelerated corrosion behaviour of self-compacting lightweight concrete
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X-ray computed tomography and fractal analysis for the evaluation of segregation resistance, strength response and accelerated corrosion behaviour of self-compacting lightweight concrete

机译:X射线计算机断层扫描和分形分析,用于评估自密实轻质混凝土的抗偏析性,强度响应和加速腐蚀行为

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摘要

In this study, fractal analysis and 3D X-ray computed tomography accompanied by digital image analysis technique are used for the quantitative evaluation of segregation resistance, static strength and corrosion-induced cracking in normal self-compacting concrete and self-compacting lightweight concrete. From image analysis performed on the vertical sections of the specimens, it was observed that self-compacting lightweight concrete had much higher resistance to segregation and the use of coarse lightweight particles in self-compacting concrete did not contribute to extensive level of anisotropy. The results also indicate that self-compacting lightweight concrete was weaker in compression than normal self-compacting concrete mainly due to less homogeneous internal structure. Finally, it was also shown that self-compacting lightweight concrete had lower susceptibility to corrosion in the early stage of exposure to the chloride environment than normal self-compacting concrete and greater fractal energies were dissipated in self-compacting concrete made with less porous and stiffer conventional aggregates.
机译:在这项研究中,分形分析和3D X射线计算机断层摄影术以及数字图像分析技术被用于定量评估普通自密实混凝土和自密实轻质混凝土的抗偏析性,静强度和腐蚀引起的开裂。通过对样品的垂直截面进行图像分析,可以观察到自密实轻质混凝土具有更高的抗偏析性,并且在自密实混凝土中使用粗轻质颗粒不会导致广泛的各向异性。结果还表明,自密实轻质混凝土的抗压强度比普通自密实混凝土弱,这主要是由于内部结构较不均匀所致。最后,还表明,自密实的轻质混凝土在暴露于氯化物环境的早期阶段比普通自密实混凝土具有更低的腐蚀敏感性,并且在较少孔隙和更坚硬的自密实混凝土中耗散了更多的分形能量。常规骨料。

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