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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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Stress wave propagation in a through-thickness functionally graded adhesive layer

TL;DR: In this article, an improved mathematical model is presented to investigate the stress wave propagation in two circular cylinders bonded with a functionally graded adhesive layer, and the model is applied to the case of two cylinders with different adhesives.
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Least-squares finite element analysis of flow of a generalized Newtonian fluid past a circular cylinder

TL;DR: In this article, a mixed least-squares finite element model with spectral/hp approximations is developed for the analysis of steady, two-dimensional flows of generalized Newtonian fluids obeying the Carreau-Yasuda constitutive model.
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Multiscale analysis of impact mitigation in soft tissues using nanotube reinforced composites

TL;DR: In this article, a multiscale homogenization-based analysis of the constituent properties of soft tissues and underlying endoskeleton are developed for impact mitigation using nanotube-reinforced composite shields.
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A numerical method for elastic-plastic torsion by variational inequality

TL;DR: In this paper, a numerical procedure to solve the elastic-plastic torsion of a bar using the variational inequality concept was proposed, and the finite element method with SOR (successive over relaxation) technique was employed to solve this problem as a constrained minimuzation problem.
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Shortening Effect on Buckling Behavior of Reddy Plates and Prismatic Plate Structures

TL;DR: In this paper, a closed-form solution based on the Reddy third-order shear deformation plate theory is proposed for the buckling of both flat and stiffened plates, simply supported on two opposite edges.