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Meeting 2021 TMS Annual Meeting & Exhibition
Symposium Advances in Surface Engineering III
Presentation Title Phase-field Approach on Modeling Wetting of Rough Surfaces
Author(s) Dong-Uk Kim, Michael Tonks
On-Site Speaker (Planned) Dong-Uk Kim
Abstract Scope Wetting property which results in the wetting states such as Wenzel or Cassie-Baxter states is one of key factor of surface engineering. The contact state is determined by capillarity reaction between fluids and surfaces, induced by the balance of interfacial tensions of the coinciding interfaces, as well as roughness of the surfaces with morphology in capillarity length scale, which hinders theoretical analysis of wetting phenomena due to its complexity. In this study, we propose a computational model to analyze wetting phenomena on rough surfaces using phase-field approach which is an interfacial tracking method capable of dealing with capillarity reactions on virtually arbitrary shaped surfaces interacting with viscous fluids. It was revealed that the model is capable of rendering both Wenzel and Cassie-Baxter contact states.
Proceedings Inclusion? Planned:
Keywords Surface Modification and Coatings, Modeling and Simulation, Computational Materials Science & Engineering

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Damage Tolerance of TiC-laden Tribaloy T400 Suspension-powder Plasma-sprayed Composite Biocompatible Coating
Effect of Potassium Hydroxide (KOH) Additives on Corrosion Behavior of Coatings Formed by Plasma Electrolytic Oxidation (PEO) Method on the Titanium Substrate
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Electropolishing of Bronze in Concentrated H3PO4
Enhancement of Liquid Metal Wetting by Patterning Particles on Oxide Surfaces
Magnetron Sputtered Micro-lattice Structures: Expanding the Materials Working Space of Lattice Materials
Modifying Corrosion Performance of Plasma Electrolytic Oxidation (PEO) Coatings using Potassium Hydroxide (KOH) and Potassium Fluoride (KF) Additives
Nitriding-assisted Surface Enhancement of Multi- principal Element Alloys
Phase-field Approach on Modeling Wetting of Rough Surfaces
Surface Modification by In-situ Grown VC Reinforced Composite Layer on Steel Substrate Using TIG Arcing Process
Trace Element Distributions in Al-Zn Based Coating Alloys on Steel Substrates

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