Tensile behavior in selective laser melting

By the nature of selective laser melting (SLM) additive manufacturing (AM), property variations are likely to arise in specific structures of parts. The problem here is that it is hard to predict exactly how properties will be affected or conversely, how the mechanical properties in local sections o...

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Veröffentlicht in:International journal of advanced manufacturing technology Jg. 96; H. 1-4; S. 1187 - 1194
Hauptverfasser: Ortiz Rios, Cesar, Amine, Tarak, Newkirk, Joseph W.
Format: Journal Article
Sprache:Englisch
Veröffentlicht: London Springer London 01.04.2018
Springer Nature B.V
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ISSN:0268-3768, 1433-3015
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Abstract By the nature of selective laser melting (SLM) additive manufacturing (AM), property variations are likely to arise in specific structures of parts. The problem here is that it is hard to predict exactly how properties will be affected or conversely, how the mechanical properties in local sections of the built parts can be intentionally changed. There is little known about how build geometry and grain structures unique to SLM affects the mechanical properties of SLM parts. To address this issue, various SLM manufactured parts, created using the Renishaw ™ AM 250, were tested for significant variation in mechanical properties. Specifically, the use of both mini tensile tests and Automated Ball Indentation (ABI) is employed to incrementally test localized sections. ABI has the potential to greatly improve the ability to monitor properties. This research advances collective understanding of AM and leads to methods that assure property uniformity or intentional manipulation of mechanical properties.
AbstractList By the nature of selective laser melting (SLM) additive manufacturing (AM), property variations are likely to arise in specific structures of parts. The problem here is that it is hard to predict exactly how properties will be affected or conversely, how the mechanical properties in local sections of the built parts can be intentionally changed. There is little known about how build geometry and grain structures unique to SLM affects the mechanical properties of SLM parts. To address this issue, various SLM manufactured parts, created using the Renishaw™ AM 250, were tested for significant variation in mechanical properties. Specifically, the use of both mini tensile tests and Automated Ball Indentation (ABI) is employed to incrementally test localized sections. ABI has the potential to greatly improve the ability to monitor properties. This research advances collective understanding of AM and leads to methods that assure property uniformity or intentional manipulation of mechanical properties.
By the nature of selective laser melting (SLM) additive manufacturing (AM), property variations are likely to arise in specific structures of parts. The problem here is that it is hard to predict exactly how properties will be affected or conversely, how the mechanical properties in local sections of the built parts can be intentionally changed. There is little known about how build geometry and grain structures unique to SLM affects the mechanical properties of SLM parts. To address this issue, various SLM manufactured parts, created using the Renishaw ™ AM 250, were tested for significant variation in mechanical properties. Specifically, the use of both mini tensile tests and Automated Ball Indentation (ABI) is employed to incrementally test localized sections. ABI has the potential to greatly improve the ability to monitor properties. This research advances collective understanding of AM and leads to methods that assure property uniformity or intentional manipulation of mechanical properties.
Author Amine, Tarak
Newkirk, Joseph W.
Ortiz Rios, Cesar
Author_xml – sequence: 1
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  surname: Ortiz Rios
  fullname: Ortiz Rios, Cesar
  organization: School of Engineering and Applied Science, Gonzaga University
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  givenname: Tarak
  surname: Amine
  fullname: Amine, Tarak
  email: taa89b@mail.mst.edu
  organization: Mechanical Engineering Division, Higher Colleges of Technology
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  givenname: Joseph W.
  surname: Newkirk
  fullname: Newkirk, Joseph W.
  organization: Department of Materials Science and Engineering, Missouri Science & Technology
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ContentType Journal Article
Copyright Springer-Verlag London Ltd., part of Springer Nature 2018
Copyright Springer Science & Business Media 2018
The International Journal of Advanced Manufacturing Technology is a copyright of Springer, (2018). All Rights Reserved.
Springer-Verlag London Ltd., part of Springer Nature 2018.
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Issue 1-4
Keywords Additive manufacturing
Selective laser melting
Stainless steel
Mechanical property variations
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Snippet By the nature of selective laser melting (SLM) additive manufacturing (AM), property variations are likely to arise in specific structures of parts. The...
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SubjectTerms CAE) and Design
Computer-Aided Engineering (CAD
Engineering
Indentation
Industrial and Production Engineering
Laser beam melting
Mechanical Engineering
Mechanical properties
Media Management
Original Article
Rapid prototyping
Tensile tests
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Title Tensile behavior in selective laser melting
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