Design and manufacturing of a propeller for axial-flow fan

This work presents a methodology for the design and manufacture of propellers oriented to the experimental verification of theoretical results based on the combined model. The design process begins by using algorithms in Matlab which output data contain the coordinates of the points that define the...

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Autores principales: Almazo, D., Toledo, M., Rodríguez, C.
Formato: Artículo
Lenguaje:inglés
Publicado: 2012
Materias:
Acceso en línea:http://eprints.uanl.mx/25690/7/25690.pdf
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author Almazo, D.
Toledo, M.
Rodríguez, C.
author_facet Almazo, D.
Toledo, M.
Rodríguez, C.
author_sort Almazo, D.
collection Repositorio Institucional
description This work presents a methodology for the design and manufacture of propellers oriented to the experimental verification of theoretical results based on the combined model. The design process begins by using algorithms in Matlab which output data contain the coordinates of the points that define the blade airfoils, in this case the NACA 6512 airfoil was used. The modeling for the propeller blade was made in NX7, through the imported files in Matlab and with the help of surfaces. Later, the hub and the clamps were also modeled. Finally, NX 7 also made possible to create post-processed files to the required machine. It is possible to find the block of numbers with G & M codes about the type of driver on the machine. The file extension is .ptp. These files made possible to manufacture the blade, and the hub of the propeller
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spelling eprints-256902023-07-15T21:55:11Z http://eprints.uanl.mx/25690/ Design and manufacturing of a propeller for axial-flow fan Almazo, D. Toledo, M. Rodríguez, C. TL Vehículo Motor, Aeronáutica, Astronáutica This work presents a methodology for the design and manufacture of propellers oriented to the experimental verification of theoretical results based on the combined model. The design process begins by using algorithms in Matlab which output data contain the coordinates of the points that define the blade airfoils, in this case the NACA 6512 airfoil was used. The modeling for the propeller blade was made in NX7, through the imported files in Matlab and with the help of surfaces. Later, the hub and the clamps were also modeled. Finally, NX 7 also made possible to create post-processed files to the required machine. It is possible to find the block of numbers with G & M codes about the type of driver on the machine. The file extension is .ptp. These files made possible to manufacture the blade, and the hub of the propeller 2012 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/25690/7/25690.pdf http://eprints.uanl.mx/25690/7.haspreviewThumbnailVersion/25690.pdf Almazo, D. y Toledo, M. y Rodríguez, C. (2012) Design and manufacturing of a propeller for axial-flow fan. International scholarly and scientific research & innovation, 6 (12). pp. 2637-2643.
spellingShingle TL Vehículo Motor, Aeronáutica, Astronáutica
Almazo, D.
Toledo, M.
Rodríguez, C.
Design and manufacturing of a propeller for axial-flow fan
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Design and manufacturing of a propeller for axial-flow fan
title_full Design and manufacturing of a propeller for axial-flow fan
title_fullStr Design and manufacturing of a propeller for axial-flow fan
title_full_unstemmed Design and manufacturing of a propeller for axial-flow fan
title_short Design and manufacturing of a propeller for axial-flow fan
title_sort design and manufacturing of a propeller for axial flow fan
topic TL Vehículo Motor, Aeronáutica, Astronáutica
url http://eprints.uanl.mx/25690/7/25690.pdf
work_keys_str_mv AT almazod designandmanufacturingofapropellerforaxialflowfan
AT toledom designandmanufacturingofapropellerforaxialflowfan
AT rodriguezc designandmanufacturingofapropellerforaxialflowfan