Effect of Spatially Varying Thermokinetics on the Electrochemical Response of Laser Additively Manufactured Ti6Al4V
Author:
Affiliation:
1. Laboratory for Laser Aided Additive and Subtractive Manufacturing Department of Materials Science and Engineering Center for Agile and Adaptive Additive Manufacturing University of North Texas Denton TX 76207 USA
Publisher
Wiley
Subject
Condensed Matter Physics,General Materials Science
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/adem.202100938
Reference34 articles.
1. From Powders to Dense Metal Parts: Characterization of a Commercial AlSiMg Alloy Processed through Direct Metal Laser Sintering
2. Additive Manufacturing of Metals: The Technology, Materials, Design and Production
3. Laser powder bed fusion additive manufacturing of metals; physics, computational, and materials challenges
4. Laser powder-bed fusion additive manufacturing: Physics of complex melt flow and formation mechanisms of pores, spatter, and denudation zones
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1. Electrochemical response of heterogeneous microstructure of laser directed energy deposited CoCrMo in physiological medium;Applied Physics A;2023-04-10
2. Multiphysics multi-scale computational framework for linking process–structure–property relationships in metal additive manufacturing: a critical review;International Materials Reviews;2023-02-16
3. Effect of Microstructural and Textural Anisotropy on the Tensile Properties of Selective Laser Melted and Annealed Ti6Al4VE Alloy;Advanced Engineering Materials;2022-12-08
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