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About this Symposium
Meeting Materials Science & Technology 2019
Symposium Advances in Surface Engineering
Sponsorship
Organizer(s) Brian Skinn, Faraday Technology, Inc.
Timothy Hall, Faraday Technology Inc
Sandip P. Harimkar, Oklahoma State University
Michael D. Roach, University of Mississippi Medical Center
Rajeev K. Gupta, North Carolina State University
Scope This symposium aims to provide a forum for reporting novel surface engineering methods for introduction of useful properties, and for advanced methods of evaluating such properties. In particular, it will emphasize advanced scalable processing methods, suitable for implementation in an industrial setting. The symposium is envisioned to encompass surface engineering methods as separated into two broad categories, surface decoration and surface structure modification. Decoration approaches would include application of particles (CNTs; metal, oxide, ceramic, or plastic particles; etc.) or films (e.g., graphene/reduced graphene oxide, functionally-graded coatings, particle-included coatings, laminate coatings, ceramic coatings, etc.) to substrates, whereas surface structure modification approaches would include roughening, polishing, anodizing, deburring, etching (e.g., through photolithographic masks), micromachining, etc. A wide range of functional properties could be imparted by such modifications, in categories including mechanical (tribological, tribocorrosive), physical (hydrophobicity, hydrophilicity), chemical (catalysis, corrosion resistance), electrochemical (electrocatalysis, surface area enhancement), and electrical (insulative, as by oxides; conductive, as by graphene/reduced graphene oxide). It is envisioned that these enhanced properties will be relevant to areas of application including engines, high energy physics, capacitors, batteries, biomedical implants, fuel cell electrodes and balance of plant components, and many others.
Abstracts Due 04/05/2019
Proceedings Plan Definite: At-meeting proceedings
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

A Comparative Study of the Effects of Surface Treatments and Finishes on the High Temperature Oxidation Behavior of Alloy 800 in a 400 °C Steam Environment
Atomistic Origins of Temperature-dependent Shear Strength in 2D Materials
Design on Interpretable Convolutional Neural Networks for Surface Roughness Analysis
Determination of Bonding Strength of Cold Sprayed Splats Using In-situ Nano-scratch Technique
Development of Multifunctional Coatings via Anodizing
Extreme Modification of Surface Wettability by Nanosecond Laser Treatment
Fabrication and Analysis of Biomimetic Micro-patterned Ionic Polymer-metal Composite (IPMC) Thin-film Actuators
Method of Thermal Spray Coating Fiber-reinforced Composite Materials
Nanostructured Aluminum Decoration of Multi-walled Carbon Nanotubes (MWCNTs)
P2-47: Study on Structure and Properties of High Speed Steel Powder Coatings Sprayed on Surface of Steels for Cutlery 8Cr13MoV
P2-48: Effect of Heat Input on Nano-tribological and Corrosion Properties of Fe-based Amorphous/ Nanocrystalline Coating
P2-49: Mechanical and Electrochemical Behavior of an Economical Fe-based Amorphous / Nanocrystalline Composite Coating Synthesized by High Velocity Oxy-fuel Thermal Spraying
P2-50: Electrochemical Characterization of Plasma-treated Titanium Alloys


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