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Pore characteristics (> 0.1 mm) of non-air entrained concrete destroyed by freeze-thaw cycles based on CT scanning and 3D printing

机译:基于CT扫描和3D打印的冻融循环破坏的非加气混凝土的孔隙特征(> 0.1 mm)

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摘要

In this study, the deterioration mechanism of concrete subjected to freezing-thawing (F-T) actions was analyzed. The evolution and spatial distribution of internal pore structure were key factors in the damage mechanism and mechanical properties of concrete in the F-T environment. X-ray computed tomography (CT) was used to examine the evolution of concrete internal damage under F-T cycles. CT-identified pore structures were reconstructed as digital virtual-models and the porosity and pore distribution of these pore structures were characterized by image analysis. Three-dimensional printing (3DP) specimens containing CT-identified pore structures were prepared and replicated based on these digital virtual-models. Uniaxial compression tests were conducted on both concrete specimens and 3DP specimens, which have a similar loss percentage of uniaxial compressive strength (UCS). These results show that 3DP technology can provide a new strategy for experimental study of concrete material.
机译:在这项研究中,分析了混凝土在冻融作用下的劣化机理。内部孔隙结构的演变和空间分布是影响F-T环境下混凝土破坏机理和力学性能的关键因素。 X射线计算机断层扫描(CT)用于检查F-T循环下混凝土内部损伤的演变。将CT识别的孔隙结构重建为数字虚拟模型,并通过图像分析来表征这些孔隙结构的孔隙率和孔隙分布。基于这些数字虚拟模型,准备并复制了包含CT识别的孔结构的三维打印(3DP)标本。对混凝土样本和3DP样本都进行了单轴压缩试验,它们的单轴压缩强度(UCS)损失百分比相似。这些结果表明3DP技术可以为混凝土材料的实验研究提供新的策略。

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