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Self-healing and expansion characteristics of cementitious composites with high volume fly ash and MgO-type expansive agent

机译:高掺量粉煤灰和MgO型膨胀剂水泥基复合材料的自修复和膨胀特性。

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摘要

Discovering new cement based materials characterised with self-healing capability is essential for sustainable infrastructure with longer service life. Engineered cementitious composite (ECC) with high potential of micro-crack healing can enhance ductility and durability of concrete structures. MgO-type expansive agent (MEA) having low water demand and with the ability of densification of concrete microstructure was utilized in this research to develop ECC-MgO self-healing system. The effect of dosages of MEA and fly ash of different types as cement replacements was investigated based on lower expansion characteristics of ECC-MgO bar specimens through both water and autoclave linear expansion tests. The performance of ECC-MgO self-healing system was examined based on compressive strength recovery of pre-cracked cubic specimens and matrix micro-structural densification through Scanning Electron Microscope (SEM). Test results indicated that 5% lightly burnt MgO in combination with high volume of Class-F fly ash with 55% cement replacement should be used to design ECC-MgO self healing system just to heal micro-cracks without affecting the durability. The higher compressive strength of 50% and 80% pre-cracked ECC-MgO cubic specimens cured under accelerated autoclaved conditions compared to ECC-control (without MEA) confirmed the self-healing capability and potential of the proposed ECC-MgO system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:发现具有自我修复功能的新型水泥基材料对于使用寿命更长的可持续基础设施至关重要。具有微裂纹修复潜力的工程胶结复合材料(ECC)可以增强混凝土结构的延展性和耐久性。本研究利用低需水量和具有混凝土微结构致密化能力的MgO型膨胀剂(MEA)开发ECC-MgO自愈体系。通过水和高压釜的线性膨胀试验,基于ECC-MgO钢筋试样的较低膨胀特性,研究了不同类型的MEA和粉煤灰作为水泥替代品的用量的影响。基于预破裂立方试样的抗压强度恢复和通过扫描电子显微镜(SEM)进行的基质微结构致密化,检验了ECC-MgO自愈系统的性能。测试结果表明,应使用5%轻度燃烧的MgO与高体积的F级粉煤灰结合55%的水泥替代品来设计ECC-MgO自愈系统,以治愈微裂纹而不影响耐用性。与在没有MEA的情况下进行ECC控制相比,在加速高压灭菌条件下固化的50%和80%的预破裂ECC-MgO立方样品的抗压强度更高,证实了所提出的ECC-MgO系统的自修复能力和潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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