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The influence of MgO-type expansive agent incorporated in self-healing system of Engineered cementitious Composites

机译:MgO型膨胀剂掺入工程胶凝复合材料自愈体系中的影响

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Engineered Cementitious Composites (ECCs) are found to be better replacements for traditional concretes due to their higher damage tolerance under loading, as well as the ability to induce multiple-cracking with a smaller width and potential crack healing capability. This paper presents the development and performance of an effective self-healing concrete system made of ECC and MgO-type expansive agent (MEA) (made of lightly burnt MgO powder). New measures were implemented in examining the performance of ECC-MgO self-healing system based on accelerated autoclave test to simulate the experimental results relevant to the field conditions. Test results suggested the best calcination system to be 900 degrees C with 2 h of holding time using 45 gm particle size based on higher hydration activity of MEA in a powder state. Low calcium Class-F fly ash was found to be the best supplementary cementing materials (SCMs) to produce ECC-MgO system based on lower expansion effect of MgO. The high volume of fly ash (HVFA) was used to achieve very low expansion within the crack walls just to heal hairline micro-cracks in ECC-MgO self-healing system without jeopardizing the durability. Similar behavior was shown by the MgO in powder state in terms of loss of CO2 content and remaining hydration activity as well as after utilizing it in the ECC-MgO system in water and autoclave linear expansion tests coupled with scanning electron microscope (SEM) and thermogravimetric analyses (TGA). The higher flexural strength recovery of pre-cracked ECC-MgO prismatic specimens cured under accelerated autoclaved conditions compared to their pre-cracked ECC (without MgO) counterparts confirmed the self-healing capability and potential of the proposed ECC-MgO system. Crown Copyright (C) 2017 Published by Elsevier Ltd. All rights reserved.
机译:人们发现,工程胶结复合材料(ECCs)可以更好地替代传统混凝土,原因是它们在载荷下具有更高的抗损伤性,并且能够以较小的宽度和潜在的裂纹修复能力引发多次开裂。本文介绍了由ECC和MgO型膨胀剂(MEA)(由轻度燃烧的MgO粉末制成)制成的有效的自修复混凝土系统的开发和性能。在加速高压釜试验的基础上,采取了新的措施来检验ECC-MgO自愈系统的性能,以模拟与现场条件相关的实验结果。测试结果表明,基于粉末状MEA更高的水化活性,最佳的煅烧系统应为900摄氏度,保持2小时,使用45 gm粒度的煅烧时间。低钙F级粉煤灰被认为是生产ECC-MgO系统的最佳补充胶凝材料(SCM),因为它具有较低的MgO膨胀作用。大量的粉煤灰(HVFA)用于在裂缝壁内实现极低的膨胀,仅用于修复ECC-MgO自修复系统中的细线裂纹,而不会损害耐久性。在粉末状态下,MgO表现出相似的行为,即失去了CO2含量并保留了水合活性,以及​​在ECC-MgO系统中将其用于水中和高压釜线性膨胀测试以及扫描电子显微镜(SEM)和热重分析后分析(TGA)。与在不使用MgO的情况下进行预破裂的ECC相比,在加速高压灭菌条件下固化的预破裂的ECC-MgO棱柱形试样具有更高的抗弯强度恢复能力,证实了所提出的ECC-MgO系统的自修复能力和潜力。 Crown版权所有(C)2017,由Elsevier Ltd.出版。保留所有权利。

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