Design & Development of Adjustable Handheld 3D Scanner Jig

The handheld 3D scanner makes modelling process even faster and easier. However, the main problem when using a handheld scanner is the inability of the operator to firmly hold the scanner without shaking during the scanning process thus will cause the scanned object to be inaccurate. Automated robot...

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发表在:International Journal of Emerging Technology and Advanced Engineering
主要作者: 2-s2.0-85143405552
格式: 文件
语言:English
出版: IJETAE Publication House 2022
在线阅读:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85143405552&doi=10.46338%2fijetae1122_17&partnerID=40&md5=3afb7891e478b8932795dbd483f9ca4f
id Abdullah A.H.; Yusof M.H.; Hamid A.H.A.; Noh M.H.M.; Mazlan M.A.; Rashid H.
spelling Abdullah A.H.; Yusof M.H.; Hamid A.H.A.; Noh M.H.M.; Mazlan M.A.; Rashid H.
2-s2.0-85143405552
Design & Development of Adjustable Handheld 3D Scanner Jig
2022
International Journal of Emerging Technology and Advanced Engineering
12
11
10.46338/ijetae1122_17
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85143405552&doi=10.46338%2fijetae1122_17&partnerID=40&md5=3afb7891e478b8932795dbd483f9ca4f
The handheld 3D scanner makes modelling process even faster and easier. However, the main problem when using a handheld scanner is the inability of the operator to firmly hold the scanner without shaking during the scanning process thus will cause the scanned object to be inaccurate. Automated robotic arms may reduce the shortfalls, but it may increase the operational cost. In this project, a cost-effective, life-size, and flexible jig which integrate with the handheld 3D scanner was developed. The objectives of this project are (i) to design a low-cost jig for handheld 3D scanner with integration of autonomous system, and (ii) to fabricate and analyse the performance of the proposed flexible jig. The development process involved several stages, including the detail design process, control system development, jig fabrication and testing. Integration of Arduino Integrated Development Environment system is utilised to operate the device's mechanism to the system and further support the operation process and handling. A portable, life-size, cost-effective, and quick processing 3D scanner jig was successfully developed with minimum human error to produce an accurate measurement, and better modelling data. © 2022 International Journal of Emerging Technology and Advanced Engineering. All rights reserved.
IJETAE Publication House
22502459
English
Article
All Open Access; Bronze Open Access
author 2-s2.0-85143405552
spellingShingle 2-s2.0-85143405552
Design & Development of Adjustable Handheld 3D Scanner Jig
author_facet 2-s2.0-85143405552
author_sort 2-s2.0-85143405552
title Design & Development of Adjustable Handheld 3D Scanner Jig
title_short Design & Development of Adjustable Handheld 3D Scanner Jig
title_full Design & Development of Adjustable Handheld 3D Scanner Jig
title_fullStr Design & Development of Adjustable Handheld 3D Scanner Jig
title_full_unstemmed Design & Development of Adjustable Handheld 3D Scanner Jig
title_sort Design & Development of Adjustable Handheld 3D Scanner Jig
publishDate 2022
container_title International Journal of Emerging Technology and Advanced Engineering
container_volume 12
container_issue 11
doi_str_mv 10.46338/ijetae1122_17
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85143405552&doi=10.46338%2fijetae1122_17&partnerID=40&md5=3afb7891e478b8932795dbd483f9ca4f
description The handheld 3D scanner makes modelling process even faster and easier. However, the main problem when using a handheld scanner is the inability of the operator to firmly hold the scanner without shaking during the scanning process thus will cause the scanned object to be inaccurate. Automated robotic arms may reduce the shortfalls, but it may increase the operational cost. In this project, a cost-effective, life-size, and flexible jig which integrate with the handheld 3D scanner was developed. The objectives of this project are (i) to design a low-cost jig for handheld 3D scanner with integration of autonomous system, and (ii) to fabricate and analyse the performance of the proposed flexible jig. The development process involved several stages, including the detail design process, control system development, jig fabrication and testing. Integration of Arduino Integrated Development Environment system is utilised to operate the device's mechanism to the system and further support the operation process and handling. A portable, life-size, cost-effective, and quick processing 3D scanner jig was successfully developed with minimum human error to produce an accurate measurement, and better modelling data. © 2022 International Journal of Emerging Technology and Advanced Engineering. All rights reserved.
publisher IJETAE Publication House
issn 22502459
language English
format Article
accesstype All Open Access; Bronze Open Access
record_format scopus
collection Scopus
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