Fatigue is a complex, localized phenomenon affecting lattice structures at the level of struts and junctions. This study examines the fatigue properties of Laser-Powder Bed Fusion (L …
Abstract Traditional Extreme Value Statistics (EVS) applied to block maxima sampled anomalies of components produced by Laser-Powder Bed Fusion may produce important …
Additively manufactured (AMed) components often contain volumetric defects that significantly impact mechanical and fatigue properties across various material systems …
Understanding the fatigue behavior and accurately predicting the fatigue life of laser powder bed fusion (L-PBF) parts remain a pressing challenge due to complex failure mechanisms …
X Zhang, S Zhao, M Wang - Materials, 2024 - mdpi.com
Keyhole tungsten inert gas (keyhole TIG) welding is renowned for its advanced efficiency, necessitating a real-time defect detection method that integrates deep learning and …
B Xu, H Ouidadi, NV Handel… - Journal of …, 2024 - asmedigitalcollection.asme.org
Defects shape, volume, and orientation all have a direct impact on the mechanical properties of Laser Powder Bed Fused (L-PBF-ed) parts. Therefore, it is necessary to …
HA Zhou, J Theunissen, M Kemmerling… - arXiv preprint arXiv …, 2024 - arxiv.org
Reliably manufacturing defect free products is still an open challenge for Laser Powder Bed Fusion processes. Particularly, pores that occur frequently have a negative impact on …