dc.contributorNiño Fonseca, Johanny Franchesco
dc.contributorhttps://orcid.org/0000-0003-1073-7500
dc.contributorhttps://scienti.minciencias.gov.co/cvlac/visualizador/generarCurriculoCv.do?cod_rh=0000779660
dc.contributorUniversidad Santo Tomás
dc.creatorOrtega Cortes, Sebastián
dc.date.accessioned2021-07-15T20:54:54Z
dc.date.available2021-07-15T20:54:54Z
dc.date.created2021-07-15T20:54:54Z
dc.date.issued2021-07-15
dc.identifierOrtega Cortes S. (2021). Diseño y fabricación de un dispositivo para alesado en agujeros y articulaciones de los brazos en las retroexcavadoras [Trabajo de Pregrado Ingeniería Mecanica]. Repositorio institucional.
dc.identifierhttp://hdl.handle.net/11634/34935
dc.identifierreponame:Repositorio Institucional Universidad Santo Tomás
dc.identifierinstname:Universidad Santo Tomás
dc.identifierrepourl:https://repository.usta.edu.co
dc.description.abstractDuring the normal operation of yellow machinery, relative movement occurs between the parts that are in contact, this movement, accompanied by high workloads, generates mechanical wear on the elements and structures that hold them, it is common to find changes diameter or variations of the geometry in the main parts such as arms, pins and buckets, the repair of this type of wear is carried out by reconstructing the hole by means of welding, to later carry out the operation called boring, which It consists of adjusting the reconstructed diameter to the initial standard, using chip removal roughing. As a second option, it is contemplated to replace the affected parts, although this option is considered impractical. During the present investigation, the conceptual and theoretical design of a machine that manages to carry out the boring process, its subsequent construction, and start-up in difficult-to-access areas was proposed. For this, a finite element model was developed where the geometry corresponds to the real machine built. As a final result, the construction and start-up of the machine is presented, which is in operation in the department of Caquetá.
dc.languagespa
dc.publisherUniversidad Santo Tomás
dc.publisherPregrado Ingeniería Mecánica
dc.publisherFacultad de Ingeniería Mecánica
dc.relationR. P. Marquez and O. A. P. Marin, “Diseño y construccion de una maquina alesadora pala la empresa inducosta LTDA,” 2001
dc.relationA. Nápoles and X. Salueña, “Módulo 5 . Mecanizado por arranque de viruta,” in Tecnologia mecanica, 2000, pp. 5–20.
dc.relationR. Norton, Diseño de Maquinas un enfoque integrado. PEARSON, 2011
dc.relationR. G. B. y J. K. Nisbett, Diseño en ingeniería mecánica de Shigley, vol. 9. Mc Graw Hill, 2012
dc.relation“Fracturas por Fatiga | Aceros Levinson.” [Online]. Available: https://www.aceroslevinson.com/2017/03/fracturas-por-fatiga/. [Accessed: 27-Nov-2020].
dc.relation“Engineering Materials, Their Mechanical Properties and Applications - Joseph Marin .” [Online]. Available: https://books.google.com.co/books?id=P8bRAAAAMAAJ&hl=es&source=gbs_similarbooks. [Accessed: 03-Dec-2020].
dc.relationC. R. Mischke, “Prediction of stochastic endurance strength,” J. Vib. Acoust. Trans. ASME, 1987.
dc.relationR. Kuguel, “A relation between the theoretical stress concentration factor and fatigue notch factor deduced from concept of highly stress volume,” Am. Soc. Test. Mater., 1961.
dc.relationW. F. Gale and T. C. Totemeier, Smithells Metals Reference Book. 2003.
dc.relationG. Sines, Metal fatigue. New York: McGraw-Hill, 1959.
dc.relationI. G. Bavaresco, “PROCEDIMIENTO PARA EL DISEÑO DE EJES PARA EL DISEÑO DE EJES.”
dc.relationlucia maria aversa Villela, “Diseño en ingenieria mecanica de Shigley,” J. Chem. Inf. Model., vol. 53, no. 9, pp. 1689–1699, 2013.
dc.relation“Metal Cutting Principles - Hardcover - Milton C. Shaw - Oxford University Press.” [Online]. Available: https://global.oup.com/ushe/product/metal-cutting-principles-9780195142068?cc=us&lang=en&. [Accessed: 03-Dec-2020].
dc.relationE. Hernández Chinea, “Diseño De Una Mandrinadora Portátil,” 2015.
dc.relationF. A. A. Choton, “Diseño de una maquina portatil para mandrinar los alojamientos de los pines en los cucharones de los cargadores frontales 966h CAT de la empresa consorcio minero horizonte S.A (CMH),” 2017.
dc.relationJ. S. E. I. R. L. Arequipa and F. M. Nina, ““ Diseño de Prototipo de Barrenadora Portátil Para Mejorar el Proceso de Barrenado en la Empresa RESER Ingeniero industrial,” 2019.
dc.relationDavid G. Ullman, The Mechanical Design Process. 2008.
dc.relationH. Jutz, E. Scharkus, and R. Lobert, Tablas para la industria metalúrgica. 1984.
dc.relation“211 | SKF.” [Online]. Available: https://www.skf.com/co/products/rolling-bearings/ball-bearings/deep-groove-ball-bearings/productid-211. [Accessed: 27-Nov-2020].
dc.relation“TECNOTRANS S.A.S. - Reductores y Motorreductores.” [Online]. Available: http://0db05e57.colombia.publicar.guru/reductores-y-motorreductores.html. [Accessed: 27-Nov-2020].
dc.relation“Bujes de Fijación Intermec.” [Online]. Available: https://www.intermec.com.co/sist_fijacion.php. [Accessed: 03-Dec-2020].
dc.relation“Bronce SAE 65 | UNS C90700 | Okendo.” [Online]. Available: https://okendo.mx/bronce-sae-65. [Accessed: 03-Dec-2020].
dc.relation“Propiedades mecanicas bronce Sae 65,” p. 450.
dc.relation“#2025279 - What is the intention of importing a cdb file as input to Mechanical using an External Data component?,” ANSYS.INC. [Online]. Available: https://support.ansys.com/AnsysCustomerPortal/en_us/Knowledge+Resources/Solutions/External Data/2025279. [Accessed: 03-Dec-2020].
dc.relation“Contact Types and Behaviours in Ansys | Mechead.com.” [Online]. Available: https://www.mechead.com/contact-types-and-behaviours-in-ansys/. [Accessed: 03-Dec-2020].
dc.relation“#1000300 - With which methods does pinch control work?,” ANSYS.INC. [Online]. Available: https://support.ansys.com/AnsysCustomerPortal/en_us/Knowledge+Resources/Solutions/Meshing/1000300. [Accessed: 03-Dec-2020].
dc.relation“Esta es la forma de calcular el porcentaje de error.” [Online]. Available: https://www.greelane.com/es/ciencia-tecnología-matemáticas/ciencia/how-to-calculate-percent-error-609584/. [Accessed: 03-Dec-2020].
dc.relation“#341421 - How can I *GET the maximum equivalent stress (von Mises) of a BEAM188 or BEAM189 structure?,” ANSYS.INC. [Online]. Available: https://support.ansys.com/AnsysCustomerPortal/en_us/Knowledge+Resources/Solutions/Mechanical APDL (f. ANSYS)/341421. [Accessed: 03-Dec-2020].
dc.relationJ. andres C. Dean, “Análisis modal de un autobús 1.,” 2014.
dc.relation“#2052072 - Why dont I get zero frequency modes in a Modal analysis for the DOFs that are not constrained?,” ANSYS.INC. [Online]. Available: https://support.ansys.com/AnsysCustomerPortal/en_us/Knowledge+Resources/Solutions/Mechanical/2052072. [Accessed: 03-Dec-2020].
dc.relation“#2042298 - How evaluate the fatigue of a structure in a Random Vibration analysis ? How to use ANSYS Workbench to evaluate...,” ANSYS.INC. [Online]. Available: https://support.ansys.com/AnsysCustomerPortal/en_us/Knowledge+Resources/Solutions/Mechanical/2042298. [Accessed: 03-Dec-2020].
dc.rightshttp://creativecommons.org/licenses/by-nc-nd/2.5/co/
dc.rightsAbierto (Texto Completo)
dc.rightsinfo:eu-repo/semantics/openAccess
dc.rightshttp://purl.org/coar/access_right/c_abf2
dc.rightsAtribución-NoComercial-SinDerivadas 2.5 Colombia
dc.titleDiseño y fabricación de un dispositivo para alesado en agujeros y articulaciones de los brazos en las retroexcavadoras


Este ítem pertenece a la siguiente institución