New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations

Detalhes bibliográficos
Autor(a) principal: Revilla-Leon, Marta
Data de Publicação: 2017
Outros Autores: Olea-Vielba, Marina, Esteso-Díaz, Ana, Martinez-Klemm, Iñaki, Reuss Rodriguez-Vilaboa, Jose Manuel, Özcan, Mutlu
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Brazilian Dental Science
Texto Completo: https://ojs.ict.unesp.br/index.php/cob/article/view/1364
Resumo: There are 7 categories for the additive manufacturing (AM) technologies and a wide variety of materials that can be used to build a computer aided designed (CAD) 3-Dimensional (3D) object. The present article reviews the main AM processes for polymers for dental applications: stereolithography (SLA), direct light processing (DLP), material jetting (MJ) and material extrusion (ME). The manufacturing process, accuracy and precision of these methods will be reviewed, as well as, their prosthodontic applications. Keywords: 3D printing; Additive manufacturing technologies; Direct light processing; Fused deposition modelling; Material extrusion; Material jetting; Multijet printing; Prosthodontics; Stereolitography.
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spelling New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorationsThere are 7 categories for the additive manufacturing (AM) technologies and a wide variety of materials that can be used to build a computer aided designed (CAD) 3-Dimensional (3D) object. The present article reviews the main AM processes for polymers for dental applications: stereolithography (SLA), direct light processing (DLP), material jetting (MJ) and material extrusion (ME). The manufacturing process, accuracy and precision of these methods will be reviewed, as well as, their prosthodontic applications. Keywords: 3D printing; Additive manufacturing technologies; Direct light processing; Fused deposition modelling; Material extrusion; Material jetting; Multijet printing; Prosthodontics; Stereolitography.Institute of Science and Technology of São José dos Campos2017-12-20info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfapplication/vnd.openxmlformats-officedocument.wordprocessingml.documentapplication/vnd.openxmlformats-officedocument.wordprocessingml.documentimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpegimage/jpeghttps://ojs.ict.unesp.br/index.php/cob/article/view/136410.14295/bds.2017.v20i4.1364Brazilian Dental Science; Vol. 20 No. 4 (2017): Oct. - Dec. / 2017 - Published December 2017; 149-156Brazilian Dental Science; v. 20 n. 4 (2017): Oct. - Dec. / 2017 - Published December 2017; 149-1562178-6011reponame:Brazilian Dental Scienceinstname:Universidade Estadual Paulista Júlio de Mesquita Filho (UNESP)instacron:UNESPenghttps://ojs.ict.unesp.br/index.php/cob/article/view/1364/1206https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2871https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2872https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2873https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2874https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2875https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2876https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2877https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2878https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2879https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2880https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2881https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2882https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2883https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2884https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2885https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2886https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2887https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2888https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2889https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2890https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2891https://ojs.ict.unesp.br/index.php/cob/article/view/1364/2892Copyright (c) 2017 Brazilian Dental Scienceinfo:eu-repo/semantics/openAccessRevilla-Leon, MartaOlea-Vielba, MarinaEsteso-Díaz, AnaMartinez-Klemm, IñakiReuss Rodriguez-Vilaboa, Jose ManuelÖzcan, Mutlu2020-01-28T12:12:49Zoai:ojs.pkp.sfu.ca:article/1364Revistahttp://bds.ict.unesp.br/PUBhttp://ojs.fosjc.unesp.br/index.php/index/oaisergio@fosjc.unesp.br||sergio@fosjc.unesp.br2178-60112178-6011opendoar:2022-11-08T16:30:10.970625Brazilian Dental Science - Universidade Estadual Paulista Júlio de Mesquita Filho (UNESP)true
dc.title.none.fl_str_mv New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
title New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
spellingShingle New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
Revilla-Leon, Marta
title_short New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
title_full New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
title_fullStr New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
title_full_unstemmed New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
title_sort New fabrication method using additive manufacturing technologies for the pattern of pressed lithium disilicate onlay restorations
author Revilla-Leon, Marta
author_facet Revilla-Leon, Marta
Olea-Vielba, Marina
Esteso-Díaz, Ana
Martinez-Klemm, Iñaki
Reuss Rodriguez-Vilaboa, Jose Manuel
Özcan, Mutlu
author_role author
author2 Olea-Vielba, Marina
Esteso-Díaz, Ana
Martinez-Klemm, Iñaki
Reuss Rodriguez-Vilaboa, Jose Manuel
Özcan, Mutlu
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv Revilla-Leon, Marta
Olea-Vielba, Marina
Esteso-Díaz, Ana
Martinez-Klemm, Iñaki
Reuss Rodriguez-Vilaboa, Jose Manuel
Özcan, Mutlu
description There are 7 categories for the additive manufacturing (AM) technologies and a wide variety of materials that can be used to build a computer aided designed (CAD) 3-Dimensional (3D) object. The present article reviews the main AM processes for polymers for dental applications: stereolithography (SLA), direct light processing (DLP), material jetting (MJ) and material extrusion (ME). The manufacturing process, accuracy and precision of these methods will be reviewed, as well as, their prosthodontic applications. Keywords: 3D printing; Additive manufacturing technologies; Direct light processing; Fused deposition modelling; Material extrusion; Material jetting; Multijet printing; Prosthodontics; Stereolitography.
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dc.rights.driver.fl_str_mv Copyright (c) 2017 Brazilian Dental Science
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dc.publisher.none.fl_str_mv Institute of Science and Technology of São José dos Campos
publisher.none.fl_str_mv Institute of Science and Technology of São José dos Campos
dc.source.none.fl_str_mv Brazilian Dental Science; Vol. 20 No. 4 (2017): Oct. - Dec. / 2017 - Published December 2017; 149-156
Brazilian Dental Science; v. 20 n. 4 (2017): Oct. - Dec. / 2017 - Published December 2017; 149-156
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