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范书立
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副教授   硕士生导师

性别: 男

毕业院校: 大连理工大学

学位: 博士

所在单位: 水利工程系

学科: 水工结构工程. 防灾减灾工程及防护工程. 工程管理

办公地点: 抗震实验大厅202

联系方式: 0411-84706429

电子邮箱: shuli@dlut.edu.cn

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当前位置: 中文主页 >> 科学研究 >> 论文成果
Damage Evaluation of Concrete Column under Impact Load Using a Piezoelectric-Based EMI Technique.

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论文类型: 期刊论文

发表时间: 2018-01-01

发表刊物: Sensors (Basel, Switzerland)

收录刊物: SCIE

卷号: 18

期号: 5

ISSN号: 1424-8220

关键字: structural health monitoring; piezoceramic transducer; electro-mechanical impedance; concrete damage; impact loading; damage monitoring

摘要: One of the major causes of damage to column-supported concrete structures, such as bridges and highways, are collisions from moving vehicles, such as cars and ships. It is essential to quantify the collision damage of the column so that appropriate actions can be taken to prevent catastrophic events. A widely used method to assess structural damage is through the root-mean-square deviation (RMSD) damage index established by the collected data; however, the RMSD index does not truly provide quantitative information about the structure. Conversely, the damage volume ratio that can only be obtained via simulation provides better detail about the level of damage in a structure. Furthermore, as simulation can also provide the RMSD index relating to that particular damage volume ratio, the empirically obtained RMSD index can thus be related to the structural damage degree through comparison of the empirically obtained RMSD index to numerically-obtained RMSD. Thus, this paper presents a novel method in which the impact-induced damage to a structure is simulated in order to obtain the relationship between the damage volume ratio to the RMSD index, and the relationship can be used to predict the true damage degree by comparison to the empirical RMSD index. In this paper, the collision damage of a bridge column by moving vehicles was simulated by using a concrete beam model subjected to continuous impact loadings by a freefalling steel ball. The variation in admittance signals measured by the surface attached lead zirconate titanate (PZT) patches was used to establish the RMSD index. The results demonstrate that the RMSD index and the damage ratio of concrete have a linear relationship for the particular simulation model.

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