Thomas J. Pence
Affiliations: | Mechanical engineering | Michigan State University, East Lansing, MI |
Area:
continuum mechanics, elasticity, stress analysis, materials scienceWebsite:
https://www.egr.msu.edu/~pence/Google:
"Thomas J. Pence"Bio:
https://ieeexplore.ieee.org/author/37681669400
https://www.researchgate.net/profile/Thomas-Pence
https://scholar.google.com/citations?user=Haz1pycAAAAJ&hl=en
Pence, Thomas James (1983) The Emergence and Propagation of a Phase Boundary in an Elastic Bar. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/85D8-5A19.
Cross-listing: Materials Tree
Parents
Sign in to add mentorJames K Knowles | grad student | 1983 | Caltech | |
(Phase Boundary Propagation in an Elastic Bar) |
Children
Sign in to add traineeHua Deng | grad student | Michigan State | |
Jose Merodio | grad student | Michigan State | |
Ralph Joseph Worthington | grad student | Michigan State | |
Lydia S. Novozhilova | grad student | 2004 | Michigan State |
Hasan Demirkoparan | grad student | 2005 | Michigan State |
Yen Thi Nguyen | grad student | 2011-2018 | Michigan State University (MSU) |
Vahid Zamani | grad student | 2014-2018 | Michigan State |
Ashraf Hadoush | post-doc | 2012-2015 | Carnegie Mellon University in Qatar |
Kun Gou | post-doc | 2013-2015 | Michigan State |
Heiko Topol | post-doc | 2013-2015 | Carnegie Mellon University in Qatar |
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Publications
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Topol H, Demirkoparan H, Pence TJ. (2020) On collagen fiber morphoelasticity and homeostatic remodeling tone. Journal of the Mechanical Behavior of Biomedical Materials. 104154 |
Wichman IS, Nguyen YT, Pence TJ. (2020) A model for crack formation during active solid pyrolysis of a char-forming solid: crack patterns; surface area generation; volatile mass efflux Combustion Theory and Modelling. 1-23 |
Gou K, Topol H, Demirkoparan H, et al. (2019) Stress-swelling Finite Element Modeling of Cervical Response with Homeostatic Collagen Fiber Distributions. Journal of Biomechanical Engineering |
Nguyen YT, Pence TJ, Wichman IS. (2019) Crack formation during solid pyrolysis: evolution, pattern formation and statistical behaviour. Proceedings. Mathematical, Physical, and Engineering Sciences. 475: 20190211 |
Topol H, Demirkoparan H, Pence TJ. (2019) Morphoelastic fiber remodeling in pressurized thick-walled cylinders with application to soft tissue collagenous tubes European Journal of Mechanics - a/Solids. 77: 103800 |
Demirkoparan H, Pence TJ. (2019) Swelling-induced twisting and shearing in fiber composites: the effect of the base matrix mechanical response Emergent Materials. 3: 87-101 |
Topol H, Gou K, Demirkoparan H, et al. (2018) Hyperelastic modeling of the combined effects of tissue swelling and deformation-related collagen renewal in fibrous soft tissue. Biomechanics and Modeling in Mechanobiology |
Zamani V, Pence TJ, Demirkoparan H, et al. (2018) Hyperelastic models for the swelling of soft material plugs in confined spaces International Journal of Non-Linear Mechanics. 106: 297-309 |
Gou K, Pence TJ. (2017) Computational Modeling of Tracheal Angioedema due to Swelling of the Submucous Tissue Layer. International Journal For Numerical Methods in Biomedical Engineering |
Zamani V, Pence TJ. (2017) Swelling, Inflation, and a Swelling-Burst Instability in Hyperelastic Spherical Shells International Journal of Solids and Structures. 125: 134-149 |