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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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Computations of Numerical Solutions in Polymer Flows Using Giesekus Constitutive Model in the hpk Framework with Variationally Consistent Integral Forms

TL;DR: In this article, numerical solutions of boundary value problems (BVPs) for 1-D and 2-D polymer flows using the Giesekus constitutive model in the hpk mathematical and finite element (FE) computational framework utilizing variationally consistent (VC) integral forms are presented.
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Computations of Evolutions for Isothermal Viscous and Viscoelastic Flows in Open Domains

TL;DR: In this paper, numerical computations of evolutions described by the initial value problems (IVPs) in isothermal incompressible viscous and viscoelastic flows in open domains using a space-time finite element model in the hpk framework with space time variationally consistent integral forms are presented.
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A contemporary approach to the MSE paradigm powered by Artificial Intelligence from a review focused on Polymer Matrix Composites

TL;DR: Artificial Intelligence (AI) is a broad discipline that uses powerful algorithms to emulate important aspects of human intelligence as mentioned in this paper, and is increasingly applied in the Industry 4.0 revolution.
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A Mixed Updated Lagrangian Formulation for Plane Elastic Problems

TL;DR: A mixed finite-element model based on the incremental nonlinear theory of solid bodies is developed and its numerical accuracy is evaluated by applying the model to a number of plane elastic problems.
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Impact performance of Al/SiC functionally graded circular plates

TL;DR: In this paper, the effect of ceramic reinforcement on the impact performance of functionally graded (FG) circular plates has been investigated using powder stacking-hot pressing technique and the results showed that the Al/SiC FG circular plates exhibited better impact resistance than Al/Al 2 O 3 FG circular plate.