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Advancements in 3D Printing: Directed Energy Deposition Techniques, Defect Analysis, and Quality Monitoring

Muhammad Mu’az Imran, Azam Che Idris

2024English3D printingadditive manufacturingdirected energy depositionmetal manufacturingdefect analysisquality monitoring

Abstract

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This paper provides a comprehensive analysis of recent advancements in additive manufacturing, a transformative approach to industrial production that allows for the layer-by-layer construction of complex parts directly from digital models. Focusing specifically on Directed Energy Deposition, it begins by clarifying the fundamental principles of metal additive manufacturing as defined by International Organization of Standardization and American Society for Testing and Materials standards, with an emphasis on laser- and powder-based methods that are pivotal to Directed Energy Deposition. It explores the critical process mechanisms that can lead to defect formation in the manufactured parts, offering in-depth insights into the factors that influence these outcomes. Additionally, the unique mechanisms of defect formation inherent to Directed Energy Deposition are examined in detail. The review also covers the current landscape of process evaluation and non-destructive testing methods essential for quality assurance, including both traditional and contemporary in situ monitoring methods to ensure the integrity of the produced components.

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Cite This Work

@article{dc87d4f9-9a9b-4977-8ff8-a7fef5357c55,
  title={Advancements in 3D Printing: Directed Energy Deposition Techniques, Defect Analysis, and Quality Monitoring},
  author={Muhammad Mu’az Imran and Azam Che Idris},
  year={2024},
  language={English}
}
TY  - JOUR
TI  - Advancements in 3D Printing: Directed Energy Deposition Techniques, Defect Analysis, and Quality Monitoring
AU  - Muhammad Mu’az Imran
AU  - Azam Che Idris
PY  - 2024
LA  - English
ER  -

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