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Recent Advances on SHM of Reinforced Concrete and Masonry Structures Enabled by Self-Sensing Structural Materials

Opened Access Recent Advances on SHM of Reinforced Concrete and Masonry Structures Enabled by Self-Sensing Structural Materials

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Autor: Ubertini, Filippo
D’Alessandro, Antonella
Downey, Austin
García-Macías, Enrique
Laflamme, Simon
Castro-Triguero, Rafael
Departamento: Universidad de Sevilla. Departamento de Mecánica de Medios Contínuos y Teoría de Estructuras
Fecha: 2017
Publicado en: Proceedings, 2 (3), 1-6.
Tipo de documento: Artículo
Resumen: Structural Health Monitoring is aimed at transforming civil structures into self-diagnosing systems able to automatically reveal the occurrence of a fault or a damage after a critical event such as an earthquake. While data science is presently experiencing tremendous advances leading to the availability of powerful tools and algorithms for extracting relevant information by effectively fusing data provided by different types of sensors, one of the main bottlenecks still limiting the development of SHM in the field of civil engineering is the general lack of reliable sensing technologies that are scalable at the large scale. A very promising solution to this large scale challenge would be leveraging the construction materials for strain sensing and direct damage detection. In this direction, the authors have recently proposed smart concretes and smart bricks that are piezoresistive concretes and clay bricks obtained by doping traditional construction materials with conductiv...
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Cita: Ubertini, F., D’Alessandro, A., Downey, A., García-Macías, E., Laflamme, S. y Castro-Triguero, R. (2017). Recent Advances on SHM of Reinforced Concrete and Masonry Structures Enabled by Self-Sensing Structural Materials. Proceedings, 2 (3), 1-6.
Tamaño: 1.312Mb
Formato: PDF

URI: https://hdl.handle.net/11441/71763

DOI: 10.3390/ecsa-4-04889

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