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Self-healing cement concrete composites for resilient infrastructures: A review

机译:用于弹性基础设施的自修复水泥混凝土复合材料:综述

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摘要

Cracks in cement concrete composites, whether autogenous or loading-initiated, are almost inevitable and often difficult to detect and repair, posing a threat to safety and durability of concrete infrastructures, especially for those with strict sealing requirements. The sustainable development of infrastructures calls for the birth of self-healing concrete composites, which has the built-in ability to autonomously repair narrow cracks. This paper reviews the fabrication, characterization, mechanisms and performances of autogenous and autonomous healing concretes. Autogenous healing materials such as mineral admixtures, fibers, nanofillers and curing agents, as well as autonomous healing methods such as electrodeposition, shape memory alloys, capsules, vascular and microbial technologies, have been proven to be effective to partially or even fully repair small cracks. As a result, the mechanical properties and durability of concrete infrastructure can be restored to some extent. However, autonomous healing techniques have shown a better performance in healing cracks than most of autogenous healing methods that are limited to healing of cracks having a width narrower than 150 mu m. Self-healing concrete with biomimetic features, such as self-healing concrete based on shape memory alloys, capsules, vascular networks or bacteria, is a frontier subject in the field of material science. Self-healing technology provides concrete infrastructures with the ability to adapt and respond to the environment, exhibiting a great potential to facilitate the creation of a wide variety of resilient materials and infrastructures.
机译:水泥混凝土复合材料的裂缝,无论是自生的还是由载荷引发的,几乎是不可避免的,并且通常难以检测和修复,这对混凝土基础设施的安全性和耐用性构成了威胁,尤其是对于那些要求严格密封的建筑。基础设施的可持续发展要求自我修复的混凝土复合材料的诞生,这种复合材料具有自动修复狭窄裂缝的内置能力。本文综述了自生和自主愈合混凝土的制备,表征,机理和性能。诸如矿物掺合料,纤维,纳米填料和固化剂之类的自体愈合材料,以及电沉积,形状记忆合金,胶囊,血管和微生物技术等自体愈合方法已被证明可有效地部分甚至完全修复小裂缝。 。结果,可以在一定程度上恢复混凝土基础设施的机械性能和耐久性。但是,自主愈合技术在愈合裂缝方面表现出比大多数自生愈合方法更好的性能,而自生愈合方法仅限于愈合宽度小于150微米的裂缝。具有仿生特性的自修复混凝土,例如基于形状记忆合金,胶囊,维管网或细菌的自修复混凝土,是材料科学领域的前沿学科。自我修复技术为混凝土基础设施提供了适应环境和对环境做出反应的能力,具有极大的潜力来促进创建各种弹性材料和基础设施。

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  • 来源
    《Composites 》 |2020年第may15期| 107892.1-107892.28| 共28页
  • 作者

  • 作者单位

    Dalian Univ Technol Sch Civil Engn Dalian 116024 Peoples R China;

    Univ Cambridge Dept Engn Cambridge CB2 1PZ England;

    Univ Bradford Fac Engn & Informat Bradford BD7 1DP W Yorkshire England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Self-healing concrete composites; Autogenous; Autonomous; Crack; Recovery;

    机译:自修复混凝土复合材料;自体的自主性;裂纹;复苏;

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