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J. N. Reddy

Researcher at Texas A&M University

Publications -  956
Citations -  73270

J. N. Reddy is an academic researcher from Texas A&M University. The author has contributed to research in topics: Finite element method & Plate theory. The author has an hindex of 106, co-authored 926 publications receiving 66940 citations. Previous affiliations of J. N. Reddy include Instituto Superior Técnico & National University of Singapore.

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Journal Article

Theoretical Formulations for Finite Element Models of Functionally Graded Beams with Piezoelectric Layers

TL;DR: In this paper, the Bernoulli-Euler and Timoshenko beam theories are used to account for through-thickness power-law variation of a two-constituent material and piezoelectric layers.
Journal ArticleDOI

Methods of Approximation in hpk Framework for ODEs in Time Resulting from Decoupling of Space and Time in IVPs

TL;DR: It is shown that variationally consistent time integral forms in hpk framework yield computational processes for ODEs in time that are unconditionally stable, provide a mechanism of higher order global differentiability approximations as well as higher degree local approximation in time.
Book ChapterDOI

Multiscale Computational Analysis of Biomechanical Systems

TL;DR: The significance of this work lies in the use of a multi-physical modelling of the complex material geometry as well as physical processes representing physiological systems, thereby establishing a suitable and efficient multi-scale computational framework.
Posted Content

Thermo-visco-plasticity under high strain rates: a micro-inertia driven dynamic flow rule

TL;DR: In this article, a theory of strain gradient thermo-visco-plasticity for isotropic polycrystalline materials under high strain rates is proposed, where the effect of micro-inertia, which arises due to dynamically evolving microstructural defects, is brought to bear on the macro-continuum through a micro-force balance.
Journal ArticleDOI

Reply to the comments of M.E. Golmakani and J. Rezatalab, Comment on “Nonlocal third-order shear deformation plate theory with application to bending and vibration of plates” (by R. Aghababaei and J.N. Reddy, Journal of Sound and Vibration 326 (2009) 277–289), Journal of Sound Vibration, 333 (2014) 3831–3835

TL;DR: In this paper, the Navier's method has been correctly applied for highlighting the specific sensitivity phenomenon of the deflection solution of a simply supported nonlocal elastic plate under uniform load, as compared to exact analytical solution.