Michael James Taylor

Affiliations: 
Santa Clara University, Santa Clara, CA, United States 
Area:
nonlinear elasticity, computing, peridynamics, membranes, shells
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"Michael Taylor"

Parents

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David Steigmann grad student 2008 UC Berkeley
 (Numerical simulation of thermo -elasticity, inelasticity and rupture in membrane theory.)
Katia Bertoldi post-doc Harvard University School of Engineering and Applied Sciences
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Publications

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Francesconi L, Baldi A, Liang X, et al. (2019) Variable Poisson’s ratio materials for globally stable static and dynamic compression resistance Extreme Mechanics Letters. 26: 1-7
Francesconi L, Taylor M, Bertoldi K, et al. (2017) Static and Modal Analysis of Low Porosity Thin Metallic Auxetic Structures Using Speckle Interferometry and Digital Image Correlation Experimental Mechanics. 58: 283-300
Taylor M, Gözen I, Patel S, et al. (2016) Peridynamic Modeling of Ruptures in Biomembranes. Plos One. 11: e0165947
Taylor M, Steigmann DJ. (2015) A two-dimensional peridynamic model for thin plates Mathematics and Mechanics of Solids. 20: 998-1010
Taylor M, Davidovitch B, Qiu Z, et al. (2015) A comparative analysis of numerical approaches to the mechanics of elastic sheets Journal of the Mechanics and Physics of Solids. 79: 92-107
Qin Z, Taylor M, Hwang M, et al. (2014) Effect of wrinkles on the surface area of graphene: toward the design of nanoelectronics. Nano Letters. 14: 6520-5
Taylor M, Francesconi L, Gerendás M, et al. (2014) Low porosity metallic periodic structures with negative Poisson's ratio. Advanced Materials (Deerfield Beach, Fla.). 26: 2365-70
Taylor M, Bertoldi K, Steigmann DJ. (2014) Spatial resolution of wrinkle patterns in thin elastic sheets at finite strain Journal of the Mechanics and Physics of Solids. 62: 163-180
Taylor M, Steigmann DJ. (2009) Simulation of laminated thermoelastic membranes Journal of Thermal Stresses. 32: 448-476
Taylor M, Steigmann DJ. (2006) Entropie thermoelasticity of thin polymeric films Acta Mechanica. 183: 1-22
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