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  • Symposia
    • A. Coatings for Use at High Temperatures
    • B. Hard Coatings and Vapor Deposition Technologies
    • C. Fundamentals and Technology of Multifunctional Materials and Devices
    • D. Coatings for Biomedical and Healthcare Applications
    • E. Tribology and Mechanical Behavior of Coatings and Engineered Surfaces
    • F. New Horizons in Coatings and Thin Films
    • G. Surface Engineering – Applied Research and Industrial Applications
    • H. Advanced Characterization Techniques for Coatings, Thin Films, and Small Volumes
    • TS1. Anti- and De-icing Surface Engineering
    • TS2. New Horizons in Boron-Containing Coatings: Modeling, Synthesis and Applications
    • TS3. In-silicio Design of Novel Materials by Quantum Mechanics and Classical Methods
    • TS4. Photocatalytic and Superhydrophilic Surfaces
    • TS5. Thin Films on Polymer Substrates: Flexible Electronics and Beyond
  • Short Courses
    • Plasmas in Physical Vapor Deposition, Including Arcs and HiPIMS – 4/26/20
    • In-situ and Ex-situ Ellipsometry Characterizations of Thin Films – 4/26/20
    • NEW! Design and Deposition of Hard and Superhard Coatings – 4/27/20
    • Reactive Magnetron Sputter Deposition – 4/27/20
    • NEW! Atmospheric Pressure Plasma: Principles, Sources and Applications – 4/28/20
    • Practical Thin Film Characterization – 4/28/20
    • Fundamentals of HiPIMS Plasmas for Thin Film Deposition – 4/29/20
    • Nanomechanics and Tribology of Thin Film Coatings – 4/29/20
    • Industrial Surface Engineering: Fundamentals, Practice and Applications – 4/30/20
    • Understanding and Control Stresses in PVD Thin Films – 4/30/20
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Nanomechanics and Tribology of Thin Film Coatings – 4/29/20

Steve Bull
Professor, Cookson Group Chair of Engineering Materials University Newcastle upon Tyne, UK

Adrian Leyland
Senior Lecturer in Surface Technology
The University of Sheffield, Sheffield, UK

Course Objectives
  • To understand the rationale for measuring coating
    mechanical properties independent of substrate and how coating microstructure affects such properties
  • To learn measuring the elastic, plastic and fracture properties of thin films and coatings.
  • To understand the use of appropriate measurement techniques to monitor effects of stress generation and relaxation in coated systems
  • To gain an appreciation of Coatings Tribology and coating/treatment selection for particular applications
  • To understand how coating property data can be used to design better Surface Engineering solutions
Course Description

This course aims to give an understanding of the factors which control the mechanical properties of thin films and coatings and how these properties may be reliably measured. The differences between coating properties and those of the coating/substrate system (and the influence of micro-/nano-structure on wear and friction behavior) will be highlighted. The differences between mechanical property data used for design and that which can be measured by a simple test will be emphasised. Extraction of mechanical property data for thick coatings using conventional mechanical tests will be discussed – as will difficulties in measuring submicron coatings by conventional test methods. A discussion on the use of indentation and scratch tests is followed by a review of instrumented indentation – and how to extract reliable property data. The importance of the scale of the deformed volume with respect to the microstructural dimensions (and how size effects modify the data for small indenter penetrations) will be explained. The importance of mechanical properties and residual stress on coating adhesion will also be illustrated. Robust thin-film property data (such as Hardness and Elastic modulus, correctly extracted from instrumented indentation) can be used as design tools to optimize the coating/substrate system for different applications.  A comprehensive overview of key tribological design criteria will be provided, including (for example) use of the H/E ratio as a mechanical design consideration for selecting appropriate coating and substrate pairings (including substrate pre-treatments, where needed). Practical examples and case studies will be used to exemplify Surface Engineering solutions to wear/friction issues.

Course Content
  • The importance of mechanical properties of coatings, interfacial regions and coating/substrate systems
  • Designed vs. measured properties in thin films and microstructure/mechanical property relationships
  • Assessment of thick coatings using conventional mechanical tests
  • Factors affecting indentation testing for thin film property assessment
  • Measurement and assessment of factors affecting coating/substrate adhesion
  • Coatings tribology considerations for wear and friction control
  • Design criteria for substrate and coating/treatment selection
Who should attend?

Engineers, scientists and students interested in mechanical property evaluation of coatings and the design of coatings and treatments to address issues of wear, friction and other functional property requirements.

Course Materials

Course notes (PowerPoint files) and reference lists will be provided.

Date/Time: Wednesday, April 29, 8:30 a.m.-4:30 p.m.
Cost: $500 Regular/$130 Student

Short Course Registration

All short courses include detailed course notes, morning and afternoon breaks. Lunch is not included in the course registration fee.

Courses run from 8:30 a.m. to 4:30 p.m.

Individual and Company Group discounts available!

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Key Dates

ICMCTF Awards Deadline:
October 1, 2019

Late News Abstract Deadline:
February 5, 2020

Early Registration Deadline:
March 20, 2020

Hotel Reservation Deadline:
March 20, 2020

Manuscript Deadline:
March 20, 2020

Downloads

  • Call for Abstracts FlIer
  • Presentation & Poster Guidelines

Contact

ICMCTF
Yvonne Towse

Conference Administrator
125 Maiden Lane; Suite 15B
New York, N.Y. 10038
icmctf@icmctf.org

 

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