Desarrollo de un prototipo de máquina dobladora de alambre para aplicaciones en mecánica dental mediante procesamiento digital de imágenes
| dc.contributor.advisor | Lopez Sanchez, Wilson Ricardo | |
| dc.contributor.author | Barrero Medina, Sara Valentina | |
| dc.contributor.orcid | Lopez Sanchez, Wilson Ricardo [0000-0002-1377-0667] | |
| dc.date.accessioned | 2025-11-26T16:59:05Z | |
| dc.date.available | 2025-11-26T16:59:05Z | |
| dc.date.created | 2025-11-05 | |
| dc.description | Este trabajo presenta el desarrollo de un prototipo de máquina dobladora de alambre para aplicaciones en mecánica dental. Se implementó un sistema de procesamiento digital de imágenes con el fin de obtener la longitud de los dientes y calcular los movimientos requeridos para la elaboración de una placa dental seleccionada. El prototipo, con tres grados de libertad, fue construido y evaluado mediante la comparación de su funcionamiento con las secuencias de doblado y la elaboración de arcos dentales comúnmente empleadas en ortodoncia. | |
| dc.description.abstract | This work presents the development of a prototype wire bending machine for dental mechanics applications. A digital image processing system was implemented to obtain tooth lengths and calculate the movements required for fabricating a selected dental plate. The prototype, with three degrees of freedom, was built and evaluated by comparing its performance with the bending sequences and fabrication of dental arches commonly used in orthodontics. | |
| dc.format.mimetype | ||
| dc.identifier.uri | http://hdl.handle.net/11349/99952 | |
| dc.language.iso | spa | |
| dc.publisher | Universidad Distrital Francisco José De Caldas | |
| dc.relation.references | Dr. Abelardo Mínguez. Aparatos dentales: qué son y qué tipos hay - am odontologia, 11 2021. | |
| dc.relation.references | Beatriz Peña. ¿qué es y qué hace un protésico dental? - gaceta dental, 10 2021 | |
| dc.relation.references | Dimitrije Petrovic, Nebojsa Krunic, and Milena Kostic. Risk factors and preventive measures for occupational diseases in dental technicians. Vojnosanitetski pregled, 70:959–963, 2013. | |
| dc.relation.references | Gobierno De Navarra. DocumentaciÓn bÁsica trastornos músculo-esqueléticos de origen laboral, 10 2007. | |
| dc.relation.references | OMS. Trastornos musculoesqueléticos, 02 2021. | |
| dc.relation.references | Mohamed El-Helaly, Hanan H. Balkhy, and Laura Vallenius. Carpal tunnel syndrome among laboratory technicians in relation to personal and ergonomic factors at work. Journal of Occupational Health, 59:513–520, 11 2017. | |
| dc.relation.references | Sociedad Española de Ortodoncia y Ortopedia Dentofacial. Lo que debe saber sobre ortodoncia, 2016 | |
| dc.relation.references | Alba Hernanz. Aparatos fijos en ortodoncia, ¿qué debes saber? • alba hernanz, 10 2022. | |
| dc.relation.references | Kinza Yasar. What is computer numerical control (cnc)? definition from searcherp, 03 2023. | |
| dc.relation.references | G and m codes: Understanding the cnc programming languages, 03 2021. | |
| dc.relation.references | yiguo. Código m en cnc: Funciones y tipos explicados - zintilon, 01 2024. | |
| dc.relation.references | ROBOTICS. Cnc básico: Los 3 movimientos básicos en una máquina cnc, 08 2020. | |
| dc.relation.references | Códigos g90 y g91 en cnc - phoenix manufacturing, 08 2024. | |
| dc.relation.references | Ronan Ye. What is computer numerical control (cnc) technology: Working and applications, 02 2023. | |
| dc.relation.references | Michelle Nemeth. What is cam?, 09 2022 | |
| dc.relation.references | What is an electric motor? | aspina, 03 2021 | |
| dc.relation.references | Bradley. Ac and dc motors: Differences and advantages | types of electric motors, 07 2019. | |
| dc.relation.references | Robert Acosta, David Argüello, Rodney Robalino, and Secundino Marrero. Caracterización de los motores paso a paso y su aplicación, 2021. | |
| dc.relation.references | Allegro MicroSystems, Inc. A4988 DMOS Microstepping Driver with Translator and Overcurrent Protection. Allegro MicroSystems, 2010. Datasheet, Rev. 1.0. | |
| dc.relation.references | J. Cáceres Tello. La visión artificial y las operaciones morfológicas en imágenes binarias. In Campus Multidisciplinar en Percepción e Inteligencia, CMPI-2006, pages 570–575. Universidad de Castilla-La Mancha, 2006. | |
| dc.relation.references | José Mira, Ana E. Delgado, María T. López, Antonio Fernández-Caballero, and Miguel A. Fernández. Una arquitectura bioinspirada para el modelado computacional de los mecanismos de atención visual selectiva. In Campus Multidisciplinar en Percepción e Inteligencia, CMPI-2006, pages 425–437, 2006. | |
| dc.relation.references | Rafael C Gonzalez and Richard E Woods. Digital Image Processing. Pearson, 4 edition, 2018. | |
| dc.relation.references | Dwayne Phillips. Image processing in c second edition, 04 2000. | |
| dc.relation.references | Admin General. Procesamiento digital de imagenes, 08 2020. | |
| dc.relation.references | John Canny. A computational approach to edge detection. IEEE Transactions on Pattern Analysis and Machine Intelligence, 8(6):679–698, 1986. | |
| dc.relation.references | Jorge Valverde Rebaza. Detección de bordes mediante el algoritmo de canny. Escuela Académico Profesional di Informática. Universidad Nacional de Trujillo, 4, 2007. | |
| dc.relation.references | Luis Vives, Hever Mejía, Kevin Vilcherrez, and Marcelo Vassallo. Visión artificial: Aplicación de filtros y segmentación en imágenes de hojas de café. Revista de Ingeniería: Ciencia, Tecnología e Innovación, 1(2):71–79, 2014. | |
| dc.relation.references | Manuel Martín Ortíz. Procesamiento Digital de Imágenes, 2013. | |
| dc.relation.references | Nora La Serna Palomino and Ulises Román Concha. Técnicas de segmentación en procesamiento digital de imágenes. Revista de Ingeniería de Sistemas e Informática, 6(2):9–16, 2009. | |
| dc.relation.references | G. Bradski and A. Kaehler. Learning OpenCV. O’Reilly, 2008. | |
| dc.relation.references | Intel Corporation. Open computer vision library announcement, 2000. | |
| dc.relation.references | OpenCV Team. Opencv documentation, 2023. | |
| dc.relation.references | V. M. Arévalo, J. González, and G. Ambrosio. La librería de visión artificial opencv. Universidad de Málaga, 2003. | |
| dc.relation.references | Rahimah Abdul Hamid, Kenta Morisaki, and Teruaki Ito. B-CODE Generation for a CNC Dentistry Wire Bending Mechanism, 2020. | |
| dc.relation.references | Rahimah Abdul Hamid and Teruaki Ito. Automatic extraction of vertices coordinates for cnc code generation for dental wire bending. International Journal of Agile Systems and Management, 10(3-4):321–340, 2017. | |
| dc.relation.references | Zhou Wang, A.C. Bovik, H.R. Sheikh, and E.P. Simoncelli. Image quality assessment: from error visibility to structural similarity. IEEE Transactions on Image Processing, 13(4):600–612, 2004. | |
| dc.relation.references | F. Williams, J. Acosta, A. Meneses, E. Morzán, S. Pastor, and N. Tomona. Manual de procedimientos de laboratorio en ortodoncia. Universidad Peruana Cayetano Heredia, s.f. Guía institucional, Facultad de Estomatología. | |
| dc.relation.references | Alfredo Gilbert. Lamda: Lingual archwire manufacturing and design aid, 2009. Material de instrucción. Facultad de Odontología, Universidad de Washington. | |
| dc.relation.references | X. Nie, W. Hu, and Y. Zhang. Lamda system: Lingual archwire manufacturing and design aid. Documento técnico, 2012. Disponible en compilación de artículos sobre robótica en ortodoncia. | |
| dc.relation.references | G. Zhang, J. Lin, X. Lin, and C. Wang. Research on bending robot of orthodontic archwire. In 2009 IEEE International Conference on Mechatronics and Automation, pages 4264–4269. IEEE, 2009. | |
| dc.relation.references | SureSmile Technologies. SureSmile Method, 2010. Documento técnico interno, SureSmile Training Materials. | |
| dc.relation.references | J. Zhang, W. Hu, C. Sun, and X. Nie. A review of the research progress of orthodontic archwire bending robot for fixed appliances. Applied Sciences, 13(5):3142, 2023. | |
| dc.relation.references | Universidad de Sevilla. Capítulo 6: Engranajes. https://biblus.us.es/bibing/proyectos/abreproy/4483/ fichero/6.+Engranajes.pdf, s.f. Recuperado de Biblus, Universidad de Sevilla. | |
| dc.relation.references | Jiang Jin-gang, Zhang Yong-de, Jin Ming-liang, and Wei Chun-ge. Bending process analysis and structure design of orthodontic archwire bending robot. Int J Smart Home, 7(5):345–352, 2013. | |
| dc.relation.references | Allahyar Geramy, Reza Mahmoudi, Ali Reza Geranmayeh, Elahe Soltanmohamadi Borujeni, Homa Farhadifard, and Hojat Darvishpour. A comparison of mechanical characteristics of four common orthodontic loops in different ranges of activation and angular bends: The concordance between experiment and finite element analysis. International Orthodontics, 16(1):42–59, 2018. | |
| dc.relation.references | Zhengdong Zhou, Zeyi Yang, Zefeng Song, Yuan Gong, Zhaozhao Li, Zhi Cai, Mengyao Yuan, and Xiaoxi Yuan. Design and development of a novel desktop robot for orthodontic archwire forming. Robotics and Autonomous Systems, 196:105243, 2026. | |
| dc.relation.references | 13 parts of a cnc machine — cnc block diagram, 12 2023. | |
| dc.relation.references | GDM news 28 junio and 2021. Motores asÍncronos y sÍncronos, 06 2021. | |
| dc.relation.references | Qué es un servomotor y para qué se utiliza, 10 2021. | |
| dc.relation.references | AdvancedMotionControls Staff. Qué es un servomotor: Definición, orígenes, componentes, tipos y aplicaciones - advanced motion controls, 01 2024. | |
| dc.relation.references | Micro Automación. Servomotores: control, precisión y velocidad - micro automación, 2019. | |
| dc.relation.references | Mahesh A Patel, Ankit R Patel, Dhaval R Vyas, and Ketul M Patel. Use of pwm techniques for power quality improvement. International Journal of Recent Trends in Engineering, 1(4):99, 2009. | |
| dc.relation.references | Shawn Dietrich. Understanding the basics of pulse width modulation (pwm), 03 2022. | |
| dc.relation.references | Nicolás A. Ardizzi. Fundamentos del sonido: Frecuencia, periodo, longuitud de onda, 08 2011. | |
| dc.relation.references | What‘s mcu in cnc mahicne? function of machine control unit, 03 2023. | |
| dc.relation.references | Carmen Corral Téllez. ¿quÉ es la ortodoncia? | |
| dc.relation.references | Alejandro Robas Madrid. ¿qué significa ortodoncia preventiva? - rob dental, 03 2017 | |
| dc.relation.references | Stanford Medicine Children’s Health. default - stanford children’s health. | |
| dc.relation.references | Procesado de imágenes digitales. https://la.mathworks.com/discovery/digital-image-processing.html. | |
| dc.relation.references | Luis Hernán, Yoandrys Morales Tamayo, and Danilo Fabricio. Incidencia de la tecnología cnc en la industria 4.0. Revista Ingenio Global, 3:37–54, 08 2024. | |
| dc.relation.references | Carlos Gonzalo Sánchez Marín, María del Socorro Maribel Liñán Fernández, Carlos Gonzalo Sánchez Marín, and María del Socorro Maribel Liñán Fernández. Prevalencia de síntomas músculo-esqueléticos de la mano en estudiantes de odontología. Odovtos International Journal of Dental Sciences, 20:113–119, 08 2018. | |
| dc.relation.references | Mohammed O. Farhan, Mohanned M.H. AL-Khafaji, and Muhannad Q. Abood. Design and implementation of a versatile flexible 3d wire bending machine with accuracy algorithm. Advances in Science and Technology Research Journal, 18(1):244–254, 2024. | |
| dc.relation.references | Rahimah Abdul Hamid and Teruaki Ito. Integration of cad/cam in developing the cnc dental wire bending machine. Journal of Advanced Mechanical Design, Systems, and Manufacturing, 12(3):JAMDSM0079–JAMDSM0079, 2018. | |
| dc.relation.references | Nashwan Adnan OTHMAN, Mehmet Umut SALUR, Mehmet KARAKOSE, and Ilhan AYDIN. An embedded realtime object detection and measurement of its size. In 2018 International Conference on Artificial Intelligence and Data Processing (IDAP), pages 1–4, 2018. | |
| dc.relation.references | Yahong Hu Lixin Wang, Jiafa Mao and Weigou Sheng. Tooth identification based on teeth structure feature. Systems Science & Control Engineering, 8(1):521–533, 2020. | |
| dc.relation.references | Rahimah Abdul Hamid and Teruaki Ito. B-code generation for a cnc dentistry wire bending mechanism. 2017 | |
| dc.relation.references | Richard Szeliski. Computer Vision: Algorithms and Applications. Springer, 2010. | |
| dc.relation.references | M. García, A. Fernández, and J. López. Performance benchmarking of computer vision libraries. Journal of Real-Time Image Processing, 18:1253–1267, 2021. | |
| dc.relation.references | Ivan Virgala, Michal Kelemen, Alexander Gmiterko, and Tomáš Lipták. Control of stepper motor by microcontroller. Journal of Automation and Control, 3(3):131–134, 2015. | |
| dc.rights.acceso | Abierto (Texto Completo) | |
| dc.rights.accessrights | OpenAccess | |
| dc.subject | Máquina dobladora de alambre | |
| dc.subject | Mecánica dental | |
| dc.subject | Procesamiento digital de imágenes | |
| dc.subject | Prototipo | |
| dc.subject.keyword | Wire bending machine | |
| dc.subject.keyword | Dental mechanics | |
| dc.subject.keyword | Digital image processing | |
| dc.subject.keyword | Prototype | |
| dc.subject.lemb | Ingeniería Electrónica -- Tesis y disertaciones académicas | |
| dc.title | Desarrollo de un prototipo de máquina dobladora de alambre para aplicaciones en mecánica dental mediante procesamiento digital de imágenes | |
| dc.title.titleenglish | Development of a wire bending machine prototype for applications in dental mechanics using digital image processing | |
| dc.type | bachelorThesis | |
| dc.type.coar | http://purl.org/coar/resource_type/c_7a1f | |
| dc.type.degree | Monografía | |
| dc.type.driver | info:eu-repo/semantics/bachelorThesis |
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