Reliability of Selective Laser Melted AlSi12 Alloy for Quasistatic and Fatigue Applications

Reliability of Selective Laser Melted AlSi12 Alloy for Quasistatic and Fatigue Applications

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Reliability of Selective Laser Melted AlSi12 Alloy for Quasistatic and Fatigue Applications

Reliability of Selective Laser Melted AlSi12 Alloy for Quasistatic and Fatigue Applications

Sale price  $49.49 Regular price $54.99

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Werkstofftechnische Berichte │ Reports of Materials Science and Engineering

Reliability of Selective Laser Melted AlSi12 Alloy for Quasistatic and Fatigue Applications

Shafaqat Siddique

Technology & Engineering / Materials Science / General

Selective laser melting (SLM) has established itself as the most prominent additive manufacturing (AM) process for metallic structures in aerospace, automotive and medical industries. For a reliable employment of this process, it has to conform to the demanding requirements of these industries in terms of quasistatic and, especially, fatigue performance. Shafaqat Siddique identifies the influence of SLM processing conditions on the microstructural features, and their corresponding influence on the mechanical behavior of the processed AlSi12 alloy structures. The author also gives insight into integrated manufacturing by combining conventional and SLM processes to get the synergic benefits. Requirements for fatigue-resistant designs in additive manufacturing are highlighted, and a novel method is developed for agile fatigue life prediction.

About the Author

Shafaqat Siddique worked as Scientific Assistant at TU Dortmund University, Department of Materials Test Engineering (WPT), headed by Prof. Dr.-Ing. Frank Walther, and completed his Ph.D. research in cooperation with Laser Zentrum Nord (LZN) in Hamburg. He continues his post-doctoral research at TU Dortmund University, Germany.

Shafaqat Siddique worked as Scientific Assistant at TU Dortmund University, Department of Materials Test Engineering (WPT), headed by Prof. Dr.-Ing. Frank Walther, and completed his Ph.D. research in cooperation with Laser Zentrum Nord (LZN) in Hamburg. He continues his post-doctoral research at TU Dortmund University, Germany.


Publication Date: 22 September 2018
Publisher: Springer Fachmedien Wiesbaden
Imprint: Springer Vieweg
ISBN-13: 9783658234249
Format: Paperback softback
Page Count: 146

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