Trochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part

Trochoidal milling is a well-stablished machining strategy which still allows for the introduction of new approaches. This strategy can be applied to any kind of material, although it is usually associated to advanced materials, such as titanium and nickel alloys. This study is based on the adaptati...

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Autores principales: César García-Hernández, Juan-José Garde-Barace, Juan-Jesús Valdivia-Sánchez, Pedro Ubieto-Artur, José-Antonio Bueno-Pérez, Basilio Cano-Álvarez, Miguel-Ángel Alcázar-Sánchez, Francisco Valdivia-Calvo, Rubén Ponz-Cuenca, José-Luis Huertas-Talón, Panagiotis Kyratsis
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Lenguaje:EN
Publicado: MDPI AG 2021
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Acceso en línea:https://doaj.org/article/f6a9dc04f8b848a5b10811335c4b356e
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spelling oai:doaj.org-article:f6a9dc04f8b848a5b10811335c4b356e2021-11-11T18:16:02ZTrochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part10.3390/math92127012227-7390https://doaj.org/article/f6a9dc04f8b848a5b10811335c4b356e2021-10-01T00:00:00Zhttps://www.mdpi.com/2227-7390/9/21/2701https://doaj.org/toc/2227-7390Trochoidal milling is a well-stablished machining strategy which still allows for the introduction of new approaches. This strategy can be applied to any kind of material, although it is usually associated to advanced materials, such as titanium and nickel alloys. This study is based on the adaptation of the feed speed of a milling tool with Ti-6Al-4V, so the chip width can be maintained constant without modifying the path geometry. A singularity in the experimental stage was to mill an Archimedes spiral groove instead of the conventional straight grooves. This made it possible to obtain a concave wall as well as a convex one and to optimize the amount of material used. The time efficiency compared to a constant feed, was slightly superior to 20%, reducing tool wear also. These techniques require milling machines with high mechanical and kinematic performance, as well as the absence of clearance between joints and a high acceleration capacity.César García-HernándezJuan-José Garde-BaraceJuan-Jesús Valdivia-SánchezPedro Ubieto-ArturJosé-Antonio Bueno-PérezBasilio Cano-ÁlvarezMiguel-Ángel Alcázar-SánchezFrancisco Valdivia-CalvoRubén Ponz-CuencaJosé-Luis Huertas-TalónPanagiotis KyratsisMDPI AGarticletrochoidal millingvariable feedspiral grooveCAMMathematicsQA1-939ENMathematics, Vol 9, Iss 2701, p 2701 (2021)
institution DOAJ
collection DOAJ
language EN
topic trochoidal milling
variable feed
spiral groove
CAM
Mathematics
QA1-939
spellingShingle trochoidal milling
variable feed
spiral groove
CAM
Mathematics
QA1-939
César García-Hernández
Juan-José Garde-Barace
Juan-Jesús Valdivia-Sánchez
Pedro Ubieto-Artur
José-Antonio Bueno-Pérez
Basilio Cano-Álvarez
Miguel-Ángel Alcázar-Sánchez
Francisco Valdivia-Calvo
Rubén Ponz-Cuenca
José-Luis Huertas-Talón
Panagiotis Kyratsis
Trochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part
description Trochoidal milling is a well-stablished machining strategy which still allows for the introduction of new approaches. This strategy can be applied to any kind of material, although it is usually associated to advanced materials, such as titanium and nickel alloys. This study is based on the adaptation of the feed speed of a milling tool with Ti-6Al-4V, so the chip width can be maintained constant without modifying the path geometry. A singularity in the experimental stage was to mill an Archimedes spiral groove instead of the conventional straight grooves. This made it possible to obtain a concave wall as well as a convex one and to optimize the amount of material used. The time efficiency compared to a constant feed, was slightly superior to 20%, reducing tool wear also. These techniques require milling machines with high mechanical and kinematic performance, as well as the absence of clearance between joints and a high acceleration capacity.
format article
author César García-Hernández
Juan-José Garde-Barace
Juan-Jesús Valdivia-Sánchez
Pedro Ubieto-Artur
José-Antonio Bueno-Pérez
Basilio Cano-Álvarez
Miguel-Ángel Alcázar-Sánchez
Francisco Valdivia-Calvo
Rubén Ponz-Cuenca
José-Luis Huertas-Talón
Panagiotis Kyratsis
author_facet César García-Hernández
Juan-José Garde-Barace
Juan-Jesús Valdivia-Sánchez
Pedro Ubieto-Artur
José-Antonio Bueno-Pérez
Basilio Cano-Álvarez
Miguel-Ángel Alcázar-Sánchez
Francisco Valdivia-Calvo
Rubén Ponz-Cuenca
José-Luis Huertas-Talón
Panagiotis Kyratsis
author_sort César García-Hernández
title Trochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part
title_short Trochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part
title_full Trochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part
title_fullStr Trochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part
title_full_unstemmed Trochoidal Milling Path with Variable Feed. Application to the Machining of a Ti-6Al-4V Part
title_sort trochoidal milling path with variable feed. application to the machining of a ti-6al-4v part
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/f6a9dc04f8b848a5b10811335c4b356e
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