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Generation of tomographic imaging for nondestructive evaluation of construction materials. IMATCONS

  • Proyecto
  • Resultados

The use of non-destructive techniques for the diagnosis of structures and building materials has increased in recent years for different reasons. The state diagnosis of structures and infrastructures is very important to ensure the proper operation, to detect deterioration processes and to perform a preventive maintenance plan. In the case of other types of building materials, such as natural stone, the inspection of the quarries may identify the quality of the material prior to the extraction, reducing costs and environmental impact.

The main purpose of this project is the development of techniques and acoustic instrumentation that will generate an image or representation of building materials that are part of large structures. In order to increase the capacity assessment of these images, they will be merged with the images generated with Ground-penetrating radar (GPR). Since, these techniques have shown greater ability to obtain status information materials in large structures, the different capabilities and information provided by these two types of images will be analyzed.  The ferromagnetic microwires will placed into concrete to increase the information produced by GPR signals. The information sought can be divided into two groups: first characterization of the material parameters (elastic parameters, porosity, durable quality, etc.) and second, the detection and evaluation of discontinuities in the material, either because to the built structure (pipes, cameras, trusses, bracing, etc.) or produced by damage or aging (cracks, micro-cracks, corrosion, etc). The results of this research will be applied to solve two problems, first to optimize quarrying natural stone material used in the construction of new buildings, as in the restoration of historical heritage, and second, for the assessment of the state of large concrete structures such as those used in power generation, wind turbines, dams, nuclear power plants, etc. The main objective of the first application will be mainly based on the characterization of the material quality from the quarry, as well as fissures, hollows and natural cracks that exist in the quarries. In the second application will be focus on the detection of any damage that may occur in these facilities, and the status of repairs for maintenance. Several companies are willing to participate as EPOs for helping to define the objectives of the project and to evaluate the results obtained, Arenisca Rosal S.L., Tecnatom S.A, and ENEL.

Publicaciones
Año: 2017
Revistas JCR
Ultrasound Transmission Tomography for Detecting and Measuring Cylindrical Objects Embedded in Concrete
Dalmay Lluveras Núñez, Miguel Ángel Molero-Armenta, Miguel Ángel García Izquierdo, Margarita González Hernández and José Javier Anaya Velayos
Sensors 17 (5) 1085, 16 pages
https://doi.org/10.3390/s17051085
G-CARMA
Año: 2019
Libros y Capítulos de Libro
A system designed to monitor in-situ the curing process of sprayed concrete
S. Aparicio Secanellas, M. G. Hernández, I. Segura, M. Morata, J. J. Anaya
Construction and Building Materials 224, 823-834
https://doi.org/10.1016/j.conbuildmat.2019.07.117
G-CARMA
Revistas JCR
A Multisensor System for the Characterization of the Field Pressure in Terrain. Accuracy, Response, and Adjustments
Isabel Sicilia, Sofía Aparicio, Borja Frutos, Eduardo Muñoz, Margarita González, José Javier Anaya
Sensors 19 (18) 3942
https://doi.org/10.3390/s19183942
G-CARMA
Microwire-based Sensor Array for Measuring Wheel loads of Vehicles
J. Olivera, S. Aparicio, M. G. Hernández, A. Zhukov, R. Varga, M. Campusano, E. Echavarria, and J. J. Anaya Velayos
Sensors 19 (21)4658, 2019. (Q1 en 2018)
http://dx.doi.org/10.3390/s19214658
G-CARMA
Año: 2020
Revistas JCR
Hygrothermal assessment of a traditional earthen wall in a dry Mediterranean climate
M.A. Mellado, F. Castilla, I. Oteiza, S. Aparicio
Building Research & Information. 1-13.
https://doi.org/10.1080/09613218.2019.1709787
G-CARMA
Influence of environmental conditions on concrete manufactured with recycled and steel slag aggregates at early ages and long term
S. Aparicio, M.G.Hernández, J.J.Anaya
Construction and Building Materials, Volume 249
https://doi.org/10.1016/j.conbuildmat.2020.118739
G-CARMA
Año: 2021
Publicaciones en revistas con otros índices
Monitorizacion de ciclos hielo - deshielo en hormigon mediante micro - sensor y galgas extensiometricas
J. Olivera, M.G. Hernández, S. Aparicio, A. Zhukov, R. Varga, J.J. Anaya
AEMAC Vol 5, nº 3, pág. 64-70, 2021
ISSN: 2531 - 0739
G-CARMA
Año: 2022
Revistas JCR
Thermal conductivity measurements of macroscopic frozen salt ice analogues of Jovian icy moons in support of the planned JUICE mission
C González Díaz, S Aparicio Secanellas, G M Muñoz Caro, J J Anaya Velayos, H Carrascosa, M G Hernández, V Muñoz-Iglesias, Á Marcos-Fernández, O Prieto-Ballesteros, R Lorente, O Witasse, N Altobelli
Monthly Notices of the Royal Astronomical Society, Volume 510, Issue 3, March 2022, Pages 4166–4179
https://doi.org/10.1093/mnras/stab3634
G-CARMA
Regresar arriba

ITEFI (CSIC), ETSI Telecomunicaciones (UPM)

Datos del proyecto

IMATCONS
Plan Estatal de Investigación Científica y Técnica y de Innovación 2013-2016, Programa Estatal de I+D+i Orientada a los Retos de la Sociedad (AEI), Fondos Feder

BIA2016-77992-R
Investigador principal
Margarita González Hernández
José Javier Anaya Velayos
Inicio: 30-12-2016 Finalización: 29-03-2020
G-CARMA
Acoustics and Non Destructive Evaluation (DAEND)
  • Environmental Acoustics (GAA)
  • G Carma: Materials Characterization by Non Destructive Evaluation
  • ULAB, Ultrasounds for Liquid Analysis and Bioengineering
Information and Communication Technologies (TIC)
  • Cybersecurity and Privacy Protection Research Group (GiCP)
  • Research group on Cryptology and Information Security (GiCSI)
    • Quantum Communications Laboratory (LCQE)
  • Multichannel Ultrasonic Signal Processing Group (MUSP)
Sensors and Ultrasonic Systems (DSSU)
  • Ultrasonic Systems and Technologies (USTG)
  • Nanosensors and Smart Systems (NoySi)
  • Ultrasonic Resonators for cavitation and micromanipulation (RESULT)
  • Advanced Sensor Technology (SENSAVAN)
  • Quantum Electronics (QE)
Laboratorios
  • Laboratorio de Acústica
  • Laboratorio de Metrología Ultrasónica Médica (LMUM)
  • Laboratorio de Comunicaciones Cuánticas
  • Laboratory for International Collaboration in Advanced Biophotonics Imaging

Instituto de Tecnologías Físicas y de la Información Leonardo Torres Quevedo  - ITEFI
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