Coefficient of Thermal Expansion of AlSi10Mg, 316L Stainless Steel and Ti6Al4V Alloys Made with Laser Powder Bed Fusion. [PDF]
Emanet S +5 more
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The Anisotropic Osteoinductive Capacity of a Nickel-Titanium Alloy Fabricated Through Laser Powder Bed Fusion. [PDF]
Sun Y +5 more
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Feasibility Study on Reusing Recycled Premixed Multi-Material Powder in the Laser Powder Bed Fusion Process for Thermal Management Application. [PDF]
Gao S, Qu S, Ding J, Mo H, Song X.
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Influence of laser powder bed fusion build orientation on the corrosion resistance of CoCrWMo alloy considering dislocation density character and lattice microstrain. [PDF]
Stanisławska A +8 more
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The effects of recycling pharmaceutical formulations in laser powder bed fusion 3D printing - the influence of physical phenomena on printing performance. [PDF]
Kooijman W +4 more
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Role of Laser Powder Bed Fusion Process Factors in Determining the Porosity Formation in 3D Printing of Stainless Steel 316L: Theoretical Modeling and Experimental Verification. [PDF]
Stwora A, Teimouri R, Habel J.
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Microstructure and corrosion resistance of hybrid additively manufactured Ti-6Al-4V via laser powder bed fusion. [PDF]
Mohamed OF +5 more
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Enhancing the Printability of Laser Powder Bed Fusion-Processed Aluminum 7xxx Series Alloys Using Grain Refinement and Eutectic Solidification Strategies. [PDF]
Uba CU, Ding H, Chen Y, Guo S, Raush JR.
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A Review of Simulation Tools Utilization for the Process of Laser Powder Bed Fusion. [PDF]
Kaščák Ľ +4 more
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Evaluation of Laser Powder Bed Fusion-Fabricated 316L/CuCrZr Bimetal Joint. [PDF]
Zhai W, Li G, Zhou W.
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