Works (9)
2019 article
Active subspace analysis and uncertainty quantification for a polydomain ferroelectric phase-field model
Leon, L. S., Miles, P. R., Smith, R. C., & Oates, W. S. (2019, July 3). Journal of Intelligent Material Systems and Structures, Vol. 30, pp. 2027–2051.
2019 article
Global sensitivity analysis of fractional-order viscoelasticity models
Miles, P. R., Pash, G., Smith, R. C., & Oates, W. S. (2019, March 29). BEHAVIOR AND MECHANICS OF MULTIFUNCTIONAL MATERIALS XIII, Vol. 10968.
2018 article
Uncertainty analysis of dielectric elastomer membranes under electromechanical loading
Gao, W., Miles, P. R., Moura, A. G., Hussaini, M. Y., & Oates, W. S. (2018, November 2). Smart Materials and Structures.
2013 conference paper
Homogenized energy model and markov chain Monte Carlo simulations for macro fiber composites operating in broadband regimes
Proceedings of the ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems, vol 1, 321–327.
2010 article
A Non-linear Optimal Control Design using Narrowband Perturbation Feedback for Magnetostrictive Actuators
Oates, W. S., Zrostlik, R., Eichhorn, S., & Smith, R. (2010, November 1). Journal of Intelligent Material Systems and Structures, Vol. 21, pp. 1681–1693.
2009 article
Optimal Tracking Using Magnetostrictive Actuators Operating in Nonlinear and Hysteretic Regimes
Oates, W. S., & Smith, R. C. (2009, March 19). Journal of Dynamic Systems Measurement and Control, Vol. 131.
2007 article
Nonlinear Optimal Control Techniques for Vibration Attenuation Using Magnetostrictive Actuators
Oates, W. S., & Smith, R. C. (2007, March 29). Journal of Intelligent Material Systems and Structures, Vol. 19, pp. 193–209.
2006 article
Mechanism of electric fatigue crack growth in lead zirconate titanate
WESTRAM, I., OATES, W., LUPASCU, D., RODEL, J., & LYNCH, C. (2006, November 1). Acta Materialia.
2005 article
Heterogeneity Influence on Electric Field Induced Piezoelectric Microfracture
Oates, W. S. (2005, August 25). Journal of Intelligent Material Systems and Structures.