Limitations of the inherent strain method in simulating powder bed fusion processes M Bugatti, Q Semeraro Additive Manufacturing 23, 329-346, 2018 | 184 | 2018 |
Towards real-time in-situ monitoring of hot-spot defects in L-PBF: A new classification-based method for fast video-imaging data analysis M Bugatti, BM Colosimo Journal of Intelligent Manufacturing 33 (1), 293-309, 2022 | 52 | 2022 |
The intelligent recoater: A new solution for in-situ monitoring of geometric and surface defects in powder bed fusion M Bugatti, BM Colosimo Additive Manufacturing Letters 3, 100048, 2022 | 15 | 2022 |
Effect of overhanging surfaces on the evolution of substrate topography and internal defects formation in laser powder bed fusion M Bugatti, Q Semeraro, BM Colosimo Journal of Manufacturing Processes 77, 588-606, 2022 | 8 | 2022 |
Limitations of the inherent strain method in simulating powder bed fusion processes. Addit Manuf 23: 329–346 M Bugatti, Q Semeraro | 5 | 2018 |
Unlocking New In-Situ Defect Detection Capabilities in Additive Manufacturing with Machine Learning and a Recoater-Based Imaging Architecture M Bugatti, M Grasso, BM Colosimo Selected Topics in Manufacturing: Emerging Trends from the Perspective of …, 2023 | 1 | 2023 |
A new method for in-situ process monitoring of AM cooling rate-related defects M Bugatti, BM Colosimo Procedia CIRP 99, 325-329, 2021 | 1 | 2021 |
Predicting the roughness of overhanging surfaces in laser powder bed fusion via in-situ thermal imaging M Bugatti, BM Colosimo Journal of Manufacturing Processes 124, 1340-1348, 2024 | | 2024 |
In-situ monitoring in additive manufacturing: novel solutions for process qualification M Bugatti | | 2021 |
Thermo-mechanical simulation of a selective laser melting additive manufacturing process M BUGATTI Politecnico di Milano, 2015 | | 2015 |
Towards In-Situ Monitoring of 3d Surface Topography in Laser Powder Bed Fusion Additive Manufacturing Via Polarized Imaging F Lucà, P Chiarotti, M Bugatti, M Grasso, S Rigone, E Zappa, ... | | |