ICMCTF2019 Monday Afternoon
Sessions | Time Periods | Topics | Schedule Overview
Hover over a paper or session to view details.
Click a Session in the first column to view session papers.
Session | Monday, May 20, 2019 | |||||||||||
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1:40 PM | 2:40 PM | 3:40 PM | 4:40 PM | |||||||||
B1-2-MoA |
Harlan™: High Rate-High Density Pulsed Magnetron Sputtering Source for Depositing Metal & Ceramic Coatings for Industrial Applications.
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Arc Sources for Low Defect Coatings and High Target Utilization
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Cutting Tools in the Era of Industrial Internet of Things and Additive Manufacturing
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Overstoichiometric Transition Metal Nitride Films
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Introducing of New Hybrid LACS® Technology (Lateral ARC and Central Sputtering by Rotating Cathodes)
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Edge-related Effects During Arc-PVD Deposition Processes
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Reactive Sputtering for Highly Oriented HfN Film Growth on Si(100) Substrate
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Study of Orthorhombic ZnSnN2 Fabricated using Zn–Sn3N4 Composition Spreads through Combinatorial Reactive Sputtering
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Angular Resolved Mass-energy Analyses of Species Emitted from a d.c. Magnetron Sputtered NiW-target
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Effect Produced by Architecture of Nanolayer Composite Coatings Deposited with Filtered Cathodic Vacuum Arc Deposition (FCVAD) Technology on their Mechanical and Performance Properties
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Effects of Nitrogen Flow Rate and Substrate Bias on Structure and Properties of Molybdenum Nitride Thin Film
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B3-2-MoA |
Transfer of DLC Coating Processes between Different Coating Machines Assisted by Plasma Simulation
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Stress-Free ta-C Industrially Deposited by PLD for High Performance Stamping Applications: Results and Challenges of 1st Production Year
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Hollow Cathode Discharges for Rapid DLC
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Hard Cr-doped DLC Coatings Deposited by Low-frequency HiPIMS with Enhanced Tribomechanical Behavior at High Temperature
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Effect of Pulse Shape and Plasma Composition (Ar + Ne) on the Properties of Hard DLC Films Deposited by HiPIMS: Correlation with Substrate Ion Fluxes
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The Comparison of Deposition Processes, Composition and Properties of Hydrogenated W-C:H Coatings Prepared by Different Sputtering Techniques
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The Mechanism of Graphite Nucleation in Amorphous Carbon Films Deposited with the Condition of Energetic Bombardment and High Temperature
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D1-2-MoA |
Recent Development of Biocompatible Thin Film Metallic Glass Materials
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Antibacterial and Biocompatible Properties of Ga-doped TaON Thin Films
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TiO2 Nanotubes Produced in Aqueous Electrolytes with CMC for Biomaterials Application
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Electrochemical Evaluation of Titanium Oxide Coatings Deposited on Magnesium Alloys
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Metallization of Polymers for Medical Applications
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Characteristics of a Composite Ceramic Coating Fabricated on Mg-1.2Zn-0.5Ca-0.5Mn Alloy Towards Biodegradable Bone Implants
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H2-2-MoA |
Assessing the Mechanical Properties of Thin Organic Semiconductor Coatings
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In Situ TEM Activation Volume Measurements
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In-situ Microscale Mechanical Testing of Metal/Ceramic Interfacial Regions
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Nano-wedging: A Novel Test Method to Combine Nanoscale Strain Mapping with Multiaxial Stress States
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Micromechanical Characterisation of Ag/Au Multilayers by Means of Bulge and Nanoindentation Testing
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Size Effect on Superplastic Flow – In situ Micromechanical Characterization of Superplastic Zn-22% Al
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Studies on the Mechanisms in Hexagonal Close Packed Metal Nanolaminates
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Critical Assessment of the Criteria for Minimum Indentation Spacing
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Surface Laboratory Assistant – The New Combination of Measurement Device and Analysis Software
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TS3+ |
Electro-mechanical Reliability of Flexible Electronics: An Overview of Testing and Characterization Techniques
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Bending Fatigue of Al/Mo Bilayers on Polymer Substrates with Varied Al Layer Thickness
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Enabling High-Power Flexible Devices through Tailored Nanocomposite Interface Materials
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Plasma Polymers…A Family of Materials that is Full of Surprises
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Environmental Challenges of Thin Film Systems on Polymer Substrates for Space Applications
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Sputtered Thin Film Sensors for Self-sensing Composite Materials
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A New Method for Influencing Coating Properties on Polymer Substrates at Low Temperature: High Power Impulse Magnetron Sputtering (HIPIMS) with Positive Voltage Reversal
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Tribological Challenges and Surface Engineering Solutions for Extreme Environments and Lightweight Materials
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