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Advancement of selective laser melting by laser beam shaping
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Advancement of selective laser melting by laser beam shapingby Tim Marten Wischeropp.
作者:
Wischeropp, Tim Marten.
出版者:
Berlin, Heidelberg :Springer Berlin Heidelberg :2021.
面頁冊數:
xx, 186 p. :ill. (chiefly col.), digital ;24 cm.
Contained By:
Springer Nature eBook
標題:
LasersIndustrial applications.
電子資源:
https://doi.org/10.1007/978-3-662-64585-7
ISBN:
9783662645857$q(electronic bk.)
Advancement of selective laser melting by laser beam shaping
Wischeropp, Tim Marten.
Advancement of selective laser melting by laser beam shaping
[electronic resource] /by Tim Marten Wischeropp. - Berlin, Heidelberg :Springer Berlin Heidelberg :2021. - xx, 186 p. :ill. (chiefly col.), digital ;24 cm. - Light engineering fur die praxis,2522-8455. - Light engineering fur die praxis..
Introduction -- Fundamentals -- Numerical Model -- Experimental Set-Up -- Effect of Laser Beam Profile on SLM Process -- Industrial Relevance of Results -- Summary and Outlook.
Selective Laser Melting (SLM), also referred to as Laser Powder Bed Fusion (L-PBF), offers significant advantages for the manufacturing of complex, high-quality parts. However, its market share is still small compared to conventional manufacturing technologies. Major drawbacks hindering an industrial ramp-up are low productivity, high part costs and issues with quality and reproducibility. Comprehensive research has been done to overcome these challenges, but little attention has been paid to addressing them by optimizing the laser beam profile. Therefore, the author examines the effect of the laser beam profile on the productivity and process stability through both numerical and experimental investigations. The results show clear advantages an optimized laser beam profile offers. The content First comprehensive research on the effect of the laser beam profile on SLM process Understand the effect of the laser beam profile on the process stability and feasible productivity of the SLM process Discover the benefits in terms of manufacturing costs and time that are offered by an optimized laser beam profile The author Tim Marten Wischeropp studied mechanical engineering at the Technical University of Hamburg (TUHH), Germany. After graduating with a focus on product development, he worked as a research fellow at the Institute of Laser and System Technologies (TUHH) as well as group leader for 3D printing at the LZN Laser Zentrum Nord GmbH. Since 2018 he leads the design department at the Fraunhofer Institution for Additive Manufacturing Technologies IAPT.
ISBN: 9783662645857$q(electronic bk.)
Standard No.: 10.1007/978-3-662-64585-7doiSubjects--Topical Terms:
206813
Lasers
--Industrial applications.
LC Class. No.: TA1677 / .W57 2021
Dewey Class. No.: 621.366
Advancement of selective laser melting by laser beam shaping
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Introduction -- Fundamentals -- Numerical Model -- Experimental Set-Up -- Effect of Laser Beam Profile on SLM Process -- Industrial Relevance of Results -- Summary and Outlook.
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Selective Laser Melting (SLM), also referred to as Laser Powder Bed Fusion (L-PBF), offers significant advantages for the manufacturing of complex, high-quality parts. However, its market share is still small compared to conventional manufacturing technologies. Major drawbacks hindering an industrial ramp-up are low productivity, high part costs and issues with quality and reproducibility. Comprehensive research has been done to overcome these challenges, but little attention has been paid to addressing them by optimizing the laser beam profile. Therefore, the author examines the effect of the laser beam profile on the productivity and process stability through both numerical and experimental investigations. The results show clear advantages an optimized laser beam profile offers. The content First comprehensive research on the effect of the laser beam profile on SLM process Understand the effect of the laser beam profile on the process stability and feasible productivity of the SLM process Discover the benefits in terms of manufacturing costs and time that are offered by an optimized laser beam profile The author Tim Marten Wischeropp studied mechanical engineering at the Technical University of Hamburg (TUHH), Germany. After graduating with a focus on product development, he worked as a research fellow at the Institute of Laser and System Technologies (TUHH) as well as group leader for 3D printing at the LZN Laser Zentrum Nord GmbH. Since 2018 he leads the design department at the Fraunhofer Institution for Additive Manufacturing Technologies IAPT.
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