Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion

The FYP-URECA research investigates the free-form manufacturing of PH 15-5 stainless steel via laser powder bed fusion. Free-form fabrication requires effective support structures. Therefore, functions, types, and optimization method of support structures were discussed extensively in this report. F...

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Main Author: Phua, Shin Zert
Other Authors: Yeong Wai Yee
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/158952
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1589522023-03-04T20:12:50Z Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion Phua, Shin Zert Yeong Wai Yee School of Mechanical and Aerospace Engineering Singapore Centre for 3D Printing WYYeong@ntu.edu.sg Engineering::Mechanical engineering The FYP-URECA research investigates the free-form manufacturing of PH 15-5 stainless steel via laser powder bed fusion. Free-form fabrication requires effective support structures. Therefore, functions, types, and optimization method of support structures were discussed extensively in this report. Furthermore, from literature review, it is found that, there is a lack of research done to investigate the effect of support structure on mechanical properties. The project successfully identified block support as the optimal choice for free-form fabrication. By applying Taguchi analysis, it is discovered that hatch teeth height has no effect on the removability of support structure. Conversely, Hatch teeth top length and hatch teeth base interval affects the removability of support structure. In terms of porosity, operating laser power of 375W and 500mm/s will achieve the lowest amount of porosity. In terms of hardness, no conclusive hardness trend can be identified in PH15-5 stainless steel. Solution heat treatment and ageing process can be used to strengthen the hardness and homogenize hardness distribution. Through microstructural analysis, the increase in hardness is due to the increase in carbide phase fractions after heat treatment. Recommended area for future research includes in situ monitoring to perform free-form manufacturing and heat simulation to optimize support structures. Bachelor of Engineering (Mechanical Engineering) 2022-06-08T03:57:49Z 2022-06-08T03:57:49Z 2022 Final Year Project (FYP) Phua, S. Z. (2022). Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/158952 https://hdl.handle.net/10356/158952 en B428 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Mechanical engineering
spellingShingle Engineering::Mechanical engineering
Phua, Shin Zert
Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion
description The FYP-URECA research investigates the free-form manufacturing of PH 15-5 stainless steel via laser powder bed fusion. Free-form fabrication requires effective support structures. Therefore, functions, types, and optimization method of support structures were discussed extensively in this report. Furthermore, from literature review, it is found that, there is a lack of research done to investigate the effect of support structure on mechanical properties. The project successfully identified block support as the optimal choice for free-form fabrication. By applying Taguchi analysis, it is discovered that hatch teeth height has no effect on the removability of support structure. Conversely, Hatch teeth top length and hatch teeth base interval affects the removability of support structure. In terms of porosity, operating laser power of 375W and 500mm/s will achieve the lowest amount of porosity. In terms of hardness, no conclusive hardness trend can be identified in PH15-5 stainless steel. Solution heat treatment and ageing process can be used to strengthen the hardness and homogenize hardness distribution. Through microstructural analysis, the increase in hardness is due to the increase in carbide phase fractions after heat treatment. Recommended area for future research includes in situ monitoring to perform free-form manufacturing and heat simulation to optimize support structures.
author2 Yeong Wai Yee
author_facet Yeong Wai Yee
Phua, Shin Zert
format Final Year Project
author Phua, Shin Zert
author_sort Phua, Shin Zert
title Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion
title_short Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion
title_full Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion
title_fullStr Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion
title_full_unstemmed Free-form manufacturing of pH 15-5 stainless steel via laser powder bed fusion
title_sort free-form manufacturing of ph 15-5 stainless steel via laser powder bed fusion
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/158952
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