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Detecting the Activation of a Self-Healing Mechanism in Concrete by Acoustic Emission and Digital Image Correlation

机译:通过声发射和数字图像关联检测混凝土中自愈机制的激活

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摘要

Autonomous crack healing in concrete is obtained when encapsulated healing agent is embedded into the material. Cracking damage in concrete elements ruptures the capsules and activates the healing process by healing agent release. Previously, the strength and stiffness recovery as well as the sealing efficiency after autonomous crack repair was well established. However, the mechanisms that trigger capsule breakage remain unknown. In parallel, the conditions under which the crack interacts with embedded capsules stay black-box. In this research, an experimental approach implementing an advanced optical and acoustic method sets up scopes to monitor and justify the crack formation and capsule breakage of concrete samples tested under three-point bending. Digital Image Correlation was used to visualize the crack opening. The optical information was the basis for an extensive and analytical study of the damage by Acoustic Emission analysis. The influence of embedding capsules on the concrete fracture process, the location of capsule damage, and the differentiation between emissions due to capsule rupture and crack formation are presented in this research. A profound observation of the capsules performance provides a clear view of the healing activation process.
机译:当封装的固化剂嵌入材料中时,可实现混凝土中的自主裂纹修复。混凝土元件的开裂损坏使胶囊破裂并通过愈合剂的释放激活愈合过程。以前,已经确定了自动裂纹修复后的强度和刚度恢复以及密封效率。但是,触发胶囊破裂的机制仍然未知。同时,裂纹与嵌入的胶囊相互作用的条件保持黑箱状态。在这项研究中,采用先进的光学和声学方法的实验方法为监测和证明在三点弯曲下测试的混凝土样品的裂纹形成和胶囊破损提供了依据。数字图像相关性用于可视化裂纹开口。光学信息是通过声发射分析对损坏进行广泛和分析研究的基础。本研究提出了包埋胶囊对混凝土断裂过程,包膜损坏位置以及包膜破裂和裂纹形成引起的排放之间的区别的影响。对胶囊性能的深入观察提供了愈合激活过程的清晰视图。

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