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Meeting 2022 TMS Annual Meeting & Exhibition
Symposium Materials in Sport
Presentation Title Materials Science and Engineering of Multiscale Foams for High Performance Footware
Author(s) Arun Sundar Singaravelu, Max Drexler, Jasmine Rupert, Chris Holmes, Eshan Ganju, Nikhilesh Chawla
On-Site Speaker (Planned) Nikhilesh Chawla
Abstract Scope Energy return in footwear is connected to damping behavior of midsole foams, which stems from the combination of cellular structure and polymeric material behavior. Traditional EVA foams, for example, have been replaced by BOOSTTM foams, which have a multi-scale structure, consisting of porous beads at meso-scale and thousands of small closed cells within beads at micro-scale. In this talk, I will describe experiments and simulations that address the critical link between foam structure and compression behavior of multiscale, high performance foams, by using a three-dimensional (3D) virtual microstructure obtained by lab-scale and x-ray synchrotron tomography. The approach involves capturing the microstructure by novel and sophisticated in situ testing in an x-ray synchrotron, followed by x-ray tomography and image analysis, and 3D reconstruction of the microstructure. The effect of the functionally graded foam microstructure and the effect of strain rate on the damage evolution were studied and will be discussed.
Proceedings Inclusion? Planned:
Keywords Characterization,

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Mechanical Behavior Comparison between Cloth and Elastomeric Kinesiotapes Used in Athletic Training and Rehabilitation
Adding a New Dimension to Activewear Fabrics: One-Way Transport Leveraging Biomimicry Science instead of Chemical Treatments for Perspiration Transport
Additive Manufacturing for Adjustable Putters
Material Characterization of Nordic Ski Waxes
Materials Science and Engineering of Multiscale Foams for High Performance Footware
Measuring Cool Touch of Key Sports Performance Apparel T-shirt Materials Using a Modified Transient Plane Source (MTPS) Sensor to Inform Future Technology Development
Viscoelastic Self-sensing Nano-composite Materials and Their Use in Sports Applications
"Stuck on You": Functional Friction Measurements of Doctored Baseballs Coated with "Sticky Substances"

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