Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy Variations

This paper proposes a new vibration-based structural health monitoring method for the identification of delamination defects in composite bulkheads used in small-length fiber-based ships. The core of this work is to find out if the variations of vibration energy can be efficiently used as a key perf...

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Main Authors: Cristobal Garcia, Alfonso Jurado, Oscar Zaba, Publio Beltran
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/8/2843
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spelling doaj-e33e0d6b22794e00b31cda1e57f4c71f2021-04-17T23:03:16ZengMDPI AGSensors1424-82202021-04-01212843284310.3390/s21082843Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy VariationsCristobal Garcia0Alfonso Jurado1Oscar Zaba2Publio Beltran3Técnicas y Servicios de Ingeniería S.L., Avda. Pio XII, 44, 28016 Madrid, SpainTécnicas y Servicios de Ingeniería S.L., Avda. Pio XII, 44, 28016 Madrid, SpainTécnicas y Servicios de Ingeniería S.L., Avda. Pio XII, 44, 28016 Madrid, SpainTécnicas y Servicios de Ingeniería S.L., Avda. Pio XII, 44, 28016 Madrid, SpainThis paper proposes a new vibration-based structural health monitoring method for the identification of delamination defects in composite bulkheads used in small-length fiber-based ships. The core of this work is to find out if the variations of vibration energy can be efficiently used as a key performance indicator for the detection and quantification of delamination defects in marine composite bulkheads. For this purpose, the changes of vibrational energy exerted by delamination defects in sandwich and monolithic composite panel bulkheads with different types of delamination phenomenon are investigated using a non-destructive test. Experiments show that the overall vibration energy of the bulkheads is directly dependent on the damage conditions of the specimens and therefore, the variations of this parameter are a good indicator of the incorporation of delamination defects in composite bulkheads. Additionally, the overall vibration energy changes also give interesting information about the severity of the delamination defect in the panels. Hence, this methodology based on vibratory energy can be used to accurately determine delamination defects in medium-sized composite bulkheads with the advantages of being a simple and cost-effective approach. The findings of this research possess important applications for the identification of delamination failures in composite components such as bulkheads, turbine blades, and aircraft structures, among others.https://www.mdpi.com/1424-8220/21/8/2843composite laminatesdelaminationsensing systemsvibration-based monitoringnon-destructive evaluationvibrations
collection DOAJ
language English
format Article
sources DOAJ
author Cristobal Garcia
Alfonso Jurado
Oscar Zaba
Publio Beltran
spellingShingle Cristobal Garcia
Alfonso Jurado
Oscar Zaba
Publio Beltran
Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy Variations
Sensors
composite laminates
delamination
sensing systems
vibration-based monitoring
non-destructive evaluation
vibrations
author_facet Cristobal Garcia
Alfonso Jurado
Oscar Zaba
Publio Beltran
author_sort Cristobal Garcia
title Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy Variations
title_short Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy Variations
title_full Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy Variations
title_fullStr Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy Variations
title_full_unstemmed Detection and Quantification of Delamination Failures in Marine Composite Bulkheads via Vibration Energy Variations
title_sort detection and quantification of delamination failures in marine composite bulkheads via vibration energy variations
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-04-01
description This paper proposes a new vibration-based structural health monitoring method for the identification of delamination defects in composite bulkheads used in small-length fiber-based ships. The core of this work is to find out if the variations of vibration energy can be efficiently used as a key performance indicator for the detection and quantification of delamination defects in marine composite bulkheads. For this purpose, the changes of vibrational energy exerted by delamination defects in sandwich and monolithic composite panel bulkheads with different types of delamination phenomenon are investigated using a non-destructive test. Experiments show that the overall vibration energy of the bulkheads is directly dependent on the damage conditions of the specimens and therefore, the variations of this parameter are a good indicator of the incorporation of delamination defects in composite bulkheads. Additionally, the overall vibration energy changes also give interesting information about the severity of the delamination defect in the panels. Hence, this methodology based on vibratory energy can be used to accurately determine delamination defects in medium-sized composite bulkheads with the advantages of being a simple and cost-effective approach. The findings of this research possess important applications for the identification of delamination failures in composite components such as bulkheads, turbine blades, and aircraft structures, among others.
topic composite laminates
delamination
sensing systems
vibration-based monitoring
non-destructive evaluation
vibrations
url https://www.mdpi.com/1424-8220/21/8/2843
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AT alfonsojurado detectionandquantificationofdelaminationfailuresinmarinecompositebulkheadsviavibrationenergyvariations
AT oscarzaba detectionandquantificationofdelaminationfailuresinmarinecompositebulkheadsviavibrationenergyvariations
AT publiobeltran detectionandquantificationofdelaminationfailuresinmarinecompositebulkheadsviavibrationenergyvariations
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