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Effect of powder size and processing parameters on surface, density and mechanical properties of 316L elaborated by Laser Powder Bed Fusion – ESAFORM 2021
Recent innovations in laser additive manufacturing of titanium alloys - IOPscience
PDF) LASER PATH PLANNING AND POWER CONTROL STRATEGIES FOR POWDER BED FUSION SYSTEMS
The effect of hydrogen on gas porosity in Laser Powder Bed Fusion of AlSi10Mg
M. DONMEZ, National Institute of Standards and Technology, NIST, Intelligent Systems Division
PDF) Process-structure multi-objective inverse optimisation for additive manufacturing of lattice structures using a physics-enhanced data-driven method
A route for avoiding defects during additive manufacturing
Towards understanding side-skin surface characteristics in laser powder bed fusion, Journal of Materials Research
Evolution of Laser Powder Bed Fusion Additive Manufacturing of Copper and Copper Alloys (Part-2) – Ardent Metallurgist
Towards material and process agnostic features for the classification of pore types in metal additive manufacturing - ScienceDirect
Ho YEUNG, PhD
A Numerical Study on the Keyhole Formation During Laser Powder Bed Fusion Process
PDF) Analysis and possible estimation of keyhole depths evolution, using laser operating parameters and material properties