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Self-repairing cement mortars with microcapsules: A microstructural evaluation approach

机译:具有微胶囊的自修复水泥砂浆:微观结构评估方法

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摘要

Cracking is intrinsic in cement-based products, although the cementitious material can potentially self-heal cracks. However, the rate of micro-crack formation is comparably higher than that of the self-healing. Researchers are conducting experiments on self-healing phenomena and have shown that the microencapsulation method is one of the most efficient techniques to transport and mix the healing agent in the cementitious matrix.In this study, sodium silicate is stored inside the polyurethane materials to enhance the self-healing efficiency of the cementitious matrix. Initially, compression and stiffness tests are conducted to assess the recovery of mechanical properties. X-ray tomography images are also reconstructed into three-dimensional sections and self-healing recovery was assessed via porosity content, sphericity. reduction of single crack width and volumetric size. A novel method is used to identify the geometrical definition of the single micro-crack during the self-healing process known as the Structure Model Index.Micro-cracks in mortar samples were developed homogeneously through the entire section of the samples. In this process, it was established that cracks up to 203 mu m in thickness were healed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:裂纹是水泥基产品的固有特性,尽管水泥质材料可能会自我修复裂纹。然而,微裂纹形成的速率比自修复的速率高。研究人员正在对自愈现象进行实验,结果表明,微囊化方法是在胶结基质中传输和混合愈合剂的最有效技术之一。水泥基的自修复效率。最初,进行压缩和刚度测试以评估机械性能的恢复。 X射线断层扫描图像也被重建为三维截面,并通过孔隙率,球形度评估自我修复的恢复能力。减小单个裂缝的宽度和体积尺寸。一种新的方法被用来识别自修复过程中单个微裂纹的几何定义,即结构模型指数。砂浆样品中的微裂纹在整个样品区域内均匀发展。在此过程中,已确定可以修复厚度最大为203μm的裂缝。 (C)2019 Elsevier Ltd.保留所有权利。

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