John J. Lewandowski, Mohsen Seifi
In recent years, metal additive manufacturing (AM) has gained significant attention due to its ability to produce complex geometries and customized components. This review aims to assess the mechanical properties associated with various metal AM techniques, including but not limited to selective laser melting, electron beam melting, and binder jetting. A comprehensive analysis of the mechanical behavior of metals produced through these AM methods is performed, focusing on tensile strength, ductility, hardness, and fatigue resistance. The methodology adopted involves a thorough review of existing literature and published studies, highlighting experimental results and comparative performance metrics across different metal alloys. The results indicate that while AM methods can achieve exceptional mechanical properties, variations exist depending on the specific process, material, and post-processing treatments employed. Furthermore, challenges related to microstructural control and defect formation are critically examined, emphasizing the need for standardized testing protocols to ensure reliability and performance in practical applications. The review concludes with recommendations for future research directions aimed at optimizing the mechanical properties of metal AM components.
@article{727f9aab-d8d5-4fae-9e9f-001b6759a8a3,
title={METAL ADDITIVE MANUFACTURING: A REVIEW OF MECHANICAL PROPERTIES (POSTPRINT)},
author={John J. Lewandowski and Mohsen Seifi},
year={2016},
language={en}
}TY - JOUR TI - METAL ADDITIVE MANUFACTURING: A REVIEW OF MECHANICAL PROPERTIES (POSTPRINT) AU - John J. Lewandowski AU - Mohsen Seifi PY - 2016 LA - en ER -
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