3D profilometer for 3D printing

A109 aims to design and fabricate 3D profilometer, after making improvement such as shorter processing time and more accurate profile measurement. Existing profilometer that unable to carry out synchronizes among camera and projector and causes time delay on research studies, is now being integrated...

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Main Author: Chung, Jia Jye
Other Authors: Anand Krishna Asundi
Format: Final Year Project
Language:English
Published: 2016
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Online Access:http://hdl.handle.net/10356/68498
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-684982023-03-04T18:26:13Z 3D profilometer for 3D printing Chung, Jia Jye Anand Krishna Asundi School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering::Machine design and construction A109 aims to design and fabricate 3D profilometer, after making improvement such as shorter processing time and more accurate profile measurement. Existing profilometer that unable to carry out synchronizes among camera and projector and causes time delay on research studies, is now being integrated to enhance the overall efficiency of the 3D profilometer, and also the preparation system for 3D printing. 3D printing is a new trend of prototyping technology, and this additive manufacturing(AM) gradually replace conventional subtractive manufacturing or formative manufacturing. To obtain good surface quality and strong physical construction of a model, accurate data point of geometry incorporate with suitable Additive Manufacturing(AM) system are the keys to make it possible. High precision, fast processing time and automated noncontact surface profile and shape measurement device is hence extensively needed. In this report, description on how to use to integrate Digital Light Processing (DLP) fringe projector with camera with CMOS sensor to built up a profilometer, and work under the working principle of triangulation theory. With the combination of triangulation setup and structured light illumination, the 3D profilometer can measure fringe distortion to get the surface analysis. Clear surface analysis based on point cloud will be able to help system to carry out modeling for 3D printing. Software development on triggering CMOS camera and DLP fringe projector is also a challenge for this project. Bachelor of Engineering (Mechanical Engineering) 2016-05-26T05:05:55Z 2016-05-26T05:05:55Z 2016 Final Year Project (FYP) http://hdl.handle.net/10356/68498 en Nanyang Technological University 78 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering::Machine design and construction
spellingShingle DRNTU::Engineering::Mechanical engineering::Machine design and construction
Chung, Jia Jye
3D profilometer for 3D printing
description A109 aims to design and fabricate 3D profilometer, after making improvement such as shorter processing time and more accurate profile measurement. Existing profilometer that unable to carry out synchronizes among camera and projector and causes time delay on research studies, is now being integrated to enhance the overall efficiency of the 3D profilometer, and also the preparation system for 3D printing. 3D printing is a new trend of prototyping technology, and this additive manufacturing(AM) gradually replace conventional subtractive manufacturing or formative manufacturing. To obtain good surface quality and strong physical construction of a model, accurate data point of geometry incorporate with suitable Additive Manufacturing(AM) system are the keys to make it possible. High precision, fast processing time and automated noncontact surface profile and shape measurement device is hence extensively needed. In this report, description on how to use to integrate Digital Light Processing (DLP) fringe projector with camera with CMOS sensor to built up a profilometer, and work under the working principle of triangulation theory. With the combination of triangulation setup and structured light illumination, the 3D profilometer can measure fringe distortion to get the surface analysis. Clear surface analysis based on point cloud will be able to help system to carry out modeling for 3D printing. Software development on triggering CMOS camera and DLP fringe projector is also a challenge for this project.
author2 Anand Krishna Asundi
author_facet Anand Krishna Asundi
Chung, Jia Jye
format Final Year Project
author Chung, Jia Jye
author_sort Chung, Jia Jye
title 3D profilometer for 3D printing
title_short 3D profilometer for 3D printing
title_full 3D profilometer for 3D printing
title_fullStr 3D profilometer for 3D printing
title_full_unstemmed 3D profilometer for 3D printing
title_sort 3d profilometer for 3d printing
publishDate 2016
url http://hdl.handle.net/10356/68498
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