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AE-based damage identification of concrete structures under monotonic and fatigue loading
Highlight The whole process of concrete damage was analyzed based on a variety of acoustic emission analysis methods. Based on acoustic emission, the key points of damage of concrete under fatigue and monotonic load were extracted. The correlation between the b-value and the correlation dimension illustrates that the crack change within the concrete is an orderly process developing from disorder.
Abstract This study investigates the entire process of concrete damage by monitoring the damage process of concrete beams under monotonic and fatigue loading in real-time using acoustic emission (AE). It analyzes the changes in RA/AF and b-value, correlation dimension, and time–frequency during the damage process. The results showed that the damage process of concrete is divided into four stages, the key points of the damage process can be accurately extracted using parameter analysis, and the dominant frequency of AE at the key points is smaller. Changes in AF/RA and b-value indicate that the shear crack eventually causes the specimen's damage. In addition, the correlation between the b-value and the correlation dimension illustrates that the crack change within the concrete is an orderly process developing from disorder. The study's findings can provide a reference for the stability monitoring and damage prediction of concrete structures.
AE-based damage identification of concrete structures under monotonic and fatigue loading
Highlight The whole process of concrete damage was analyzed based on a variety of acoustic emission analysis methods. Based on acoustic emission, the key points of damage of concrete under fatigue and monotonic load were extracted. The correlation between the b-value and the correlation dimension illustrates that the crack change within the concrete is an orderly process developing from disorder.
Abstract This study investigates the entire process of concrete damage by monitoring the damage process of concrete beams under monotonic and fatigue loading in real-time using acoustic emission (AE). It analyzes the changes in RA/AF and b-value, correlation dimension, and time–frequency during the damage process. The results showed that the damage process of concrete is divided into four stages, the key points of the damage process can be accurately extracted using parameter analysis, and the dominant frequency of AE at the key points is smaller. Changes in AF/RA and b-value indicate that the shear crack eventually causes the specimen's damage. In addition, the correlation between the b-value and the correlation dimension illustrates that the crack change within the concrete is an orderly process developing from disorder. The study's findings can provide a reference for the stability monitoring and damage prediction of concrete structures.
AE-based damage identification of concrete structures under monotonic and fatigue loading
Liu, Miaoyan (author) / Lu, Jun (author) / Ming, Pan (author) / Song, Jia (author)
2023-03-18
Article (Journal)
Electronic Resource
English
Concrete Damage under Fatigue Loading in Uniaxial Compression
Online Contents | 2017
|Concrete Damage under Fatigue Loading in Uniaxial Compression
Online Contents | 2017
|Concrete Damage under Fatigue Loading in Uniaxial Compression
British Library Online Contents | 2017
|