Beyond the Surface Module 1 - Indentation Series: From Basic to Advanced Indentation Testing - Part 2: Advanced Indentation - Cyclic Modes
Beyond the Surface Module 1 - Indentation Series
From Basic to Advanced Indentation Testing is an in-depth webinar series comprising four comprehensive sessions designed to take you from foundational concepts to advanced techniques in indentation testing. By registering for a single webinar, you will automatically be enrolled in the entire series—there's no need to submit separate registrations for each session. This streamlined approach ensures you have access to the full range of topics covered, from introductory principles to sophisticated methods, all aimed at enhancing your expertise and practical skills in materials testing.
December 3, 2024: Part 2: Advanced Indentation - Cyclic Modes
In this webinar, we will delve into the complexities of cyclic indentation modes and the valuable insights they provide. The session will cover fundamental concepts such as cyclic mode principles, examining how they contribute to understanding material behavior under repeated loading conditions. We will explore the relationship between properties and depth, analyze the intricacies of stress and strain in cyclic testing, and review the storage and loss moduli that describe material viscoelastic properties.
At the end of this webinar, attendees will be familiar with the core theory and practice of cyclic indentation methods, understand the properties and insights gained from these testing modes, and be able to identify technical challenges that can be addressed with cyclic mode data.
Mark R Haase is an Advanced Application Scientist at Anton Paar, and has been with the company for six years. They work with many material characterization techniques, including scratch, indentation, tribology, particle sizing, gas sorption, atomic force microscopy, and rheology. Mark supports the use of these techniques in research and industry with training and method development. Prior to joining Anton Paar, Mark's studies included nanocarbon materials and green energy systems.
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