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Principles and applications of ultrasonic-based nondestructive methods for self-healing in cementitious materials

机译:超声波基水泥基材料自愈的原理与应用

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摘要

Recently, self-healing technologies have emerged as a promising approach to extend the service life of social infrastructure in the field of concrete construction. However, current evaluations of the self-healing technologies developed for cementitious materials are mostly limited to lab-scale experiments to inspect changes in surface crack width (by optical microscopy) and permeability. Furthermore, there is a universal lack of unified test methods to assess the effectiveness of self-healing technologies. Particularly, with respect to the self-healing of concrete applied in actual construction, nondestructive test methods are required to avoid interrupting the use of the structures under evaluation. This paper presents a review of all existing research on the principles of ultrasonic test methods and case studies pertaining to self-healing concrete. The main objective of the study is to examine the applicability and limitation of various ultrasonic test methods in assessing the self-healing performance. Finally, future directions on the development of reliable assessment methods for self-healing cementitious materials are suggested.
机译:最近,自我修复技术作为一种有希望的方法得以出现,可以延长混凝土建筑领域中社会基础设施的使用寿命。但是,目前对水泥材料开发的自修复技术的评估大多限于实验室规模的实验,以检查表面裂缝宽度(通过光学显微镜)和渗透率的变化。此外,普遍缺乏统一的测试方法来评估自我修复技术的有效性。特别地,关于在实际建筑中使用的混凝土的自我修复,需要非破坏性的测试方法,以避免打断​​评估中的结构的使用。本文概述了有关超声测试方法原理的所有现有研究以及与自愈混凝土有关的案例研究。这项研究的主要目的是检查各种超声测试方法在评估自我修复性能方面的适用性和局限性。最后,提出了发展自修复水泥材料可靠评估方法的未来方向。

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