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YuanTong Gu

Researcher at Queensland University of Technology

Publications -  597
Citations -  15277

YuanTong Gu is an academic researcher from Queensland University of Technology. The author has contributed to research in topics: Finite element method & Meshfree methods. The author has an hindex of 52, co-authored 550 publications receiving 12583 citations. Previous affiliations of YuanTong Gu include Nanjing Medical University & National University of Singapore.

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A general approach to tune the vibration properties of the mounting system in the high-speed and heavy-duty engine

TL;DR: The majority of the current research on the mounting system has emphasised on the low/medium power engine, rare work has been reported for the high-speed and heavy-duty engine, the vibration charac... as discussed by the authors.
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Stress-Relaxation and Cyclic Behavior of Human Carotid Plaque Tissue.

TL;DR: This preliminary study aims to experimentally and numerically characterize the stress-relaxation and cyclic mechanical behavior of carotid plaque tissue and provides an enhanced understanding of in vivo stress- RELAXation and Cyclic behavior of the human atherosclerotic plaque tissue.
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Graphynes: an alternative lightweight solution for shock protection.

TL;DR: This study provides a fundamental understanding of the deformation and penetration mechanisms of monolayer GY nanosheets under impact, which is crucial in order to facilitate their emerging applications for impact protection.
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Investigation of cell-substrate adhesion properties of livingchondrocyte by measuring adhesive shear force and detachment using AFM and inverse FEA

TL;DR: Simulation and experimental results agree well with each other, providing a powerful tool to study the cellular adhesion process and revealed that the cells can resist normal traction better than tangential traction in the beginning of adhesion.
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Natural convection from a vertical plate embedded in a stratified medium with uniform heat source

TL;DR: In this article, an isothermal vertical plate with uniform heat source embedded in a stratified medium has been discussed, and the resulting momentum and energy equations of boundary layer approximation are made non-similar by introducing the usual nonsimilarity transformations.