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A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement †

In many areas, the analysis of a cylindrical structure is necessary, and a form to analyze it is by evaluating the diameter changes. Some areas can be cited: pipelines for oil or gas distribution and radial growth of trees whose diameter changes are directly related to irrigation and the radial expa...

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Autores principales: Cardoso, Victor H. R., Caldas, Paulo, Giraldi, Maria Thereza R., Fernandes, Cindy Stella, Frazão, Orlando, Costa, João C. W. Albuquerque, Santos, José Luís
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9227895/
https://www.ncbi.nlm.nih.gov/pubmed/35746342
http://dx.doi.org/10.3390/s22124560
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author Cardoso, Victor H. R.
Caldas, Paulo
Giraldi, Maria Thereza R.
Fernandes, Cindy Stella
Frazão, Orlando
Costa, João C. W. Albuquerque
Santos, José Luís
author_facet Cardoso, Victor H. R.
Caldas, Paulo
Giraldi, Maria Thereza R.
Fernandes, Cindy Stella
Frazão, Orlando
Costa, João C. W. Albuquerque
Santos, José Luís
author_sort Cardoso, Victor H. R.
collection PubMed
description In many areas, the analysis of a cylindrical structure is necessary, and a form to analyze it is by evaluating the diameter changes. Some areas can be cited: pipelines for oil or gas distribution and radial growth of trees whose diameter changes are directly related to irrigation and the radial expansion since it depends on the water soil deficit. For some species, these radial variations can change in around 5 mm. This paper proposes and experimentally investigates a sensor based on a core diameter mismatch technique for diameter changes measurement. The sensor structure is a combination of a cylindrical piece developed using a 3D printer and a Mach–Zehnder interferometer. The pieces were developed to assist in monitoring the diameter variation. It is formed by splicing an uncoated short section of MMF (Multimode Fiber) between two standard SMFs (Singlemode Fibers) called SMF-MMF-SMF (SMS), where the MMF length is 15 mm. The work is divided into two main parts. Firstly, the sensor was fixed at two points on the first developed piece, and the diameter reduction caused dips or peaks shift of the transmittance spectrum due to curvature and strain influence. The fixation point (FP) distances used are: 5 mm, 10 mm, and 15 mm. Finally, the setup with the best sensitivity was chosen, from first results, to develop another test with an optimization. This optimization is performed in the printed piece where two supports are created so that only the strain influences the sensor. The results showed good sensitivity, reasonable dynamic range, and easy setup reproduction. Therefore, the sensor could be used for diameter variation measurement for proposed applications.
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spelling pubmed-92278952022-06-25 A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement † Cardoso, Victor H. R. Caldas, Paulo Giraldi, Maria Thereza R. Fernandes, Cindy Stella Frazão, Orlando Costa, João C. W. Albuquerque Santos, José Luís Sensors (Basel) Article In many areas, the analysis of a cylindrical structure is necessary, and a form to analyze it is by evaluating the diameter changes. Some areas can be cited: pipelines for oil or gas distribution and radial growth of trees whose diameter changes are directly related to irrigation and the radial expansion since it depends on the water soil deficit. For some species, these radial variations can change in around 5 mm. This paper proposes and experimentally investigates a sensor based on a core diameter mismatch technique for diameter changes measurement. The sensor structure is a combination of a cylindrical piece developed using a 3D printer and a Mach–Zehnder interferometer. The pieces were developed to assist in monitoring the diameter variation. It is formed by splicing an uncoated short section of MMF (Multimode Fiber) between two standard SMFs (Singlemode Fibers) called SMF-MMF-SMF (SMS), where the MMF length is 15 mm. The work is divided into two main parts. Firstly, the sensor was fixed at two points on the first developed piece, and the diameter reduction caused dips or peaks shift of the transmittance spectrum due to curvature and strain influence. The fixation point (FP) distances used are: 5 mm, 10 mm, and 15 mm. Finally, the setup with the best sensitivity was chosen, from first results, to develop another test with an optimization. This optimization is performed in the printed piece where two supports are created so that only the strain influences the sensor. The results showed good sensitivity, reasonable dynamic range, and easy setup reproduction. Therefore, the sensor could be used for diameter variation measurement for proposed applications. MDPI 2022-06-17 /pmc/articles/PMC9227895/ /pubmed/35746342 http://dx.doi.org/10.3390/s22124560 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cardoso, Victor H. R.
Caldas, Paulo
Giraldi, Maria Thereza R.
Fernandes, Cindy Stella
Frazão, Orlando
Costa, João C. W. Albuquerque
Santos, José Luís
A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement †
title A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement †
title_full A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement †
title_fullStr A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement †
title_full_unstemmed A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement †
title_short A Simple Optical Sensor Based on Multimodal Interference Superimposed on Additive Manufacturing for Diameter Measurement †
title_sort simple optical sensor based on multimodal interference superimposed on additive manufacturing for diameter measurement †
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9227895/
https://www.ncbi.nlm.nih.gov/pubmed/35746342
http://dx.doi.org/10.3390/s22124560
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