Capability Of 3D Printing Technology In Producing Molar Teeth Prototype

3D printing technology is used to build a prototype of thirty molar teeth. Additive manufacturing has referred to solid free-form manufacturing, computer automated manufacturing, and layered manufacturing. In addition, RP models can be utilized for testing in order to evaluate the precision of devel...

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Main Authors: Ahmad, Mohd Nazri, Abdul Rasib, Amir Hamzah, Tarmeze, A. A.
Format: Article
Language:English
Published: Praise Worthy Prize 2020
Online Access:http://eprints.utem.edu.my/id/eprint/24919/2/17949-40355-1-PB.PDF
http://eprints.utem.edu.my/id/eprint/24919/
https://www.praiseworthyprize.org/jsm/index.php?journal=irea&page=article&op=view&path%5B%5D=24039
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spelling my.utem.eprints.249192021-03-01T10:24:53Z http://eprints.utem.edu.my/id/eprint/24919/ Capability Of 3D Printing Technology In Producing Molar Teeth Prototype Ahmad, Mohd Nazri Abdul Rasib, Amir Hamzah Tarmeze, A. A. 3D printing technology is used to build a prototype of thirty molar teeth. Additive manufacturing has referred to solid free-form manufacturing, computer automated manufacturing, and layered manufacturing. In addition, RP models can be utilized for testing in order to evaluate the precision of development of molar teeth. Meanwhile, reverse engineering technology is to scan the image data of thirty original teeth in order to form a high-resolution 3D surface data. Lately, the application of 3D printing technology in orthodontic practices has increased. However, before introducing 3D printing technology to new areas of orthodontics, its accuracy and how the technology can be used need to be evaluated. The thirty extracted molar teeth have been selected as a sample of the study. The stereolithography files of thirty teeth have been converted into physical models using two types of 3D printing technologies which are powder base (Project 460plus) and liquid based (Project HD3500). The result of this study is to measure the capability of powder and liquid based Rapid Prototyping technology by using the paired t-test. The analysis will create an alpha, which is the significant level for each parameter. Otherwise, the null hypothesis is attempted in order to find evidence against the hypothesis test. The p-value has been less than 0.05, therefore, the rejection of the null hypothesis is justified. Lastly, the aim of this paper is to verify that powder and liquid based 3D printing technologies are accurate to be used in orthodontic application Praise Worthy Prize 2020-03 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/24919/2/17949-40355-1-PB.PDF Ahmad, Mohd Nazri and Abdul Rasib, Amir Hamzah and Tarmeze, A. A. (2020) Capability Of 3D Printing Technology In Producing Molar Teeth Prototype. International Journal On Engineering Applications, 8 (2). pp. 64-70. ISSN 2281-2881 https://www.praiseworthyprize.org/jsm/index.php?journal=irea&page=article&op=view&path%5B%5D=24039 10.15866/irea.v8i2.17949
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description 3D printing technology is used to build a prototype of thirty molar teeth. Additive manufacturing has referred to solid free-form manufacturing, computer automated manufacturing, and layered manufacturing. In addition, RP models can be utilized for testing in order to evaluate the precision of development of molar teeth. Meanwhile, reverse engineering technology is to scan the image data of thirty original teeth in order to form a high-resolution 3D surface data. Lately, the application of 3D printing technology in orthodontic practices has increased. However, before introducing 3D printing technology to new areas of orthodontics, its accuracy and how the technology can be used need to be evaluated. The thirty extracted molar teeth have been selected as a sample of the study. The stereolithography files of thirty teeth have been converted into physical models using two types of 3D printing technologies which are powder base (Project 460plus) and liquid based (Project HD3500). The result of this study is to measure the capability of powder and liquid based Rapid Prototyping technology by using the paired t-test. The analysis will create an alpha, which is the significant level for each parameter. Otherwise, the null hypothesis is attempted in order to find evidence against the hypothesis test. The p-value has been less than 0.05, therefore, the rejection of the null hypothesis is justified. Lastly, the aim of this paper is to verify that powder and liquid based 3D printing technologies are accurate to be used in orthodontic application
format Article
author Ahmad, Mohd Nazri
Abdul Rasib, Amir Hamzah
Tarmeze, A. A.
spellingShingle Ahmad, Mohd Nazri
Abdul Rasib, Amir Hamzah
Tarmeze, A. A.
Capability Of 3D Printing Technology In Producing Molar Teeth Prototype
author_facet Ahmad, Mohd Nazri
Abdul Rasib, Amir Hamzah
Tarmeze, A. A.
author_sort Ahmad, Mohd Nazri
title Capability Of 3D Printing Technology In Producing Molar Teeth Prototype
title_short Capability Of 3D Printing Technology In Producing Molar Teeth Prototype
title_full Capability Of 3D Printing Technology In Producing Molar Teeth Prototype
title_fullStr Capability Of 3D Printing Technology In Producing Molar Teeth Prototype
title_full_unstemmed Capability Of 3D Printing Technology In Producing Molar Teeth Prototype
title_sort capability of 3d printing technology in producing molar teeth prototype
publisher Praise Worthy Prize
publishDate 2020
url http://eprints.utem.edu.my/id/eprint/24919/2/17949-40355-1-PB.PDF
http://eprints.utem.edu.my/id/eprint/24919/
https://www.praiseworthyprize.org/jsm/index.php?journal=irea&page=article&op=view&path%5B%5D=24039
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score 13.214268