3D CAD model physical analysis using aditive manufacturing process
The purposes of this paper are evaluated the 3D physical quality models commencing of 3D Scanning and 3D CAD model using Additive Manufacturing of Fused Deposition Modeling (FDM) technique. The analysis is to determine their geometry errors. The physical evaluation model from 3D Scanning image proce...
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my.utm.633762017-05-24T04:38:50Z http://eprints.utm.my/id/eprint/63376/ 3D CAD model physical analysis using aditive manufacturing process Zakaria, Khidzir Redzuan, Norizah Foo, Jin Hoe Cham, Chern Hau TS Manufactures The purposes of this paper are evaluated the 3D physical quality models commencing of 3D Scanning and 3D CAD model using Additive Manufacturing of Fused Deposition Modeling (FDM) technique. The analysis is to determine their geometry errors. The physical evaluation model from 3D Scanning image processing and CAD model were compared. The analysis on the surface roughness and surface morphology of both models were carried out. The results from the analysis show that the quality model of the surface roughness and surface morphology of 3D Scanning model consist of less inclusion, irregular layers but rougher surface with uniform tessellation geometry. However the CAD model consists of inclusion but with consistent layer with smoother staircase surface geometry. These analysis findings show that the utilization of Additive Manufacturing approach to engineering science which is expected can be produced quality of manufacturing components in the future. 2015 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/63376/1/KhidzirZakaria2015_3DCADModelPhysicalAnalysisUsingAditiveManufacturingProcess.pdf Zakaria, Khidzir and Redzuan, Norizah and Foo, Jin Hoe and Cham, Chern Hau (2015) 3D CAD model physical analysis using aditive manufacturing process. In: ICAMT 2015, 20-22 Sept, 2015, Johor Bahru, Johor. |
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TS Manufactures Zakaria, Khidzir Redzuan, Norizah Foo, Jin Hoe Cham, Chern Hau 3D CAD model physical analysis using aditive manufacturing process |
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The purposes of this paper are evaluated the 3D physical quality models commencing of 3D Scanning and 3D CAD model using Additive Manufacturing of Fused Deposition Modeling (FDM) technique. The analysis is to determine their geometry errors. The physical evaluation model from 3D Scanning image processing and CAD model were compared. The analysis on the surface roughness and surface morphology of both models were carried out. The results from the analysis show that the quality model of the surface roughness and surface morphology of 3D Scanning model consist of less inclusion, irregular layers but rougher surface with uniform tessellation geometry. However the CAD model consists of inclusion but with consistent layer with smoother staircase surface geometry. These analysis findings show that the utilization of Additive Manufacturing approach to engineering science which is expected can be produced quality of manufacturing components in the future. |
format |
Conference or Workshop Item |
author |
Zakaria, Khidzir Redzuan, Norizah Foo, Jin Hoe Cham, Chern Hau |
author_facet |
Zakaria, Khidzir Redzuan, Norizah Foo, Jin Hoe Cham, Chern Hau |
author_sort |
Zakaria, Khidzir |
title |
3D CAD model physical analysis using aditive manufacturing process |
title_short |
3D CAD model physical analysis using aditive manufacturing process |
title_full |
3D CAD model physical analysis using aditive manufacturing process |
title_fullStr |
3D CAD model physical analysis using aditive manufacturing process |
title_full_unstemmed |
3D CAD model physical analysis using aditive manufacturing process |
title_sort |
3d cad model physical analysis using aditive manufacturing process |
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2015 |
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http://eprints.utm.my/id/eprint/63376/1/KhidzirZakaria2015_3DCADModelPhysicalAnalysisUsingAditiveManufacturingProcess.pdf http://eprints.utm.my/id/eprint/63376/ |
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