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Mechanical and radiation shielding properties of concrete reinforced with boron-basalt fibers using Digital Image Correlation and X-ray micro-computed tomography

机译:用数字图像相关和X射线微计算断层扫描用硼玄武岩纤维加固混凝土机械和辐射屏蔽性能

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摘要

The paper presents experimental investigations of the radiation shielding, mechanical and fracture properties of concrete reinforced with 5 kg/m(3) of novel basalt fibers infused with boron oxide (BBF). However, further studies concerning other dosages i.e. 1 kg/m(3), 10 kg/m(3), 15 kg/m(3) and 20 kg/m(3) are currently carried out. Experiments with neutron source revealed that addition of BBF as a dispersed concrete reinforcement could improve the neutron radiation shielding of plain concrete by up to 25%. On the basis of mechanical tests, it turned out that compressive strength, tensile splitting strength and flexural of concrete reinforced with BBF were lower by up to 15% than analogous values for plain concrete. Simultaneously, shrinkage strain of BBF concrete was lower by about 10% than of plain concrete. Fracture process zone development on the surface of samples was investigated by Digital Image Correlation (DIC) using camera with the 36 megapixel matrix that allowed to obtain pixel size of 18 mu m resulting in the length resolution equal approximately 60 pixel/mm whereas analyses of 3D material micro-structure, air voids, width and curvature of crack were carried out by X-ray micro-computed tomography (micro-CT) with 0.2 mm brass filter, voltage and the current equal 130 keV and 61 mu A, respectively. The voxel size of the X-ray micro-CT was 39.68 mu m. Experiments revealed that basalt fibers infused with boron oxide as a concrete dispersed reinforcement improved the ability of limiting micro-cracking area and bridging macro-cracking by up to 28%. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了用5kg / m(3)个与氧化硼(BBF)的新型玄武岩纤维增强混凝土辐射屏蔽,机械和断裂性能的实验研究。然而,目前进行关于其他剂量的进一步研究,即1kg / m(3),10kg / m(3),15kg / m(3)和20kg / m(3)。中子源的实验表明,作为分散的混凝土增强件的添加BBF可以将普通混凝土的中子辐射屏蔽达到25%。在机械测试的基础上,证明压缩强度,用BBF加固的混凝土的拉伸分裂强度和弯曲比普通混凝土的类似值越低至15%。同时,BBF混凝土的收缩菌株比普通混凝土更低约10%。通过使用带有36百万像素矩阵的相机来研究样品表面上的裂缝处理区域的开发,其允许获得18μm的像素尺寸,导致长度分辨率等于约60像素/ mm,而3D分析3D通过X射线微型计算机断层扫描(Micro-CT)进行裂缝的材料微结构,空隙,裂缝曲率,分别具有0.2mm黄铜滤波器,电压和电流等于130keV和61μA。 X射线微型CT的体素尺寸为39.68μm。实验表明,玄武岩纤维用氧化硼作为混凝土分散的增强件改善了将微裂纹区域和桥接宏开裂的能力提高了高达28%的能力。 (c)2020 elestvier有限公司保留所有权利。

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