World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
32
Citations
4315
World Ranking
3149
National Ranking
1069

Overview

J.L. Mantari is affiliated with the University of New Mexico in the United States and specializes in engineering with a focus on mechanics of materials and civil and structural engineering. Their research integrates aspects of control and systems engineering, mechanical engineering, and materials chemistry, contributing to a comprehensive approach in structural analysis and optimization.

Their main topics of research include:

  • Composite Structure Analysis and Optimization
  • Structural Load-Bearing Analysis
  • Structural Analysis and Optimization
  • Numerical methods in engineering
  • Vibration and Dynamic Analysis
  • Structural Analysis of Composite Materials
  • Nonlocal and gradient elasticity in micro/nano structures

Mantari has published extensively, with 63 papers in the field of engineering. The subfields covered by their work notably include mechanics of materials with 28 publications and civil and structural engineering with 26 publications. Other areas addressed in their research are control and systems engineering and mechanical engineering.

Frequent publication venues for their work include:

  • Mechanics of Advanced Materials and Structures
  • Engineering Structures
  • Composite Structures
  • Curved and Layered Structures
  • Engineering Analysis with Boundary Elements

Notable recent papers authored by or involving Mantari cover various aspects of elasticity, thermo-mechanical analysis, and numerical methods applied to composite and multilayered shell structures:

  • 3D elasticity numerical solution for the static behavior of FGM shells, 2020, Engineering Structures
  • Exact solution of thermo-mechanical analysis of laminated composite and sandwich doubly-curved shell, 2020, Composite Structures
  • Computational semi-analytical method for the 3D elasticity bending solution of laminated composite and sandwich doubly-curved shells, 2020, Engineering Structures
  • Three dimensional numerical solution for the bending study of magneto-piezo-elastic spherical and cylindrical shells, 2021, Engineering Structures
  • 3D semi-analytical solution of hygro-thermo-mechanical multilayered doubly-curved shells, 2022, Engineering Structures

They have collaborated frequently with several researchers including J.C. Monge, Ronaldo Walter Laureano, J. Yarasca, Ahmet Sinan Öktem, and Xueqian Zhou, reflecting a network of joint research activities primarily in the domain of structural mechanics and materials engineering.

Best Publications

  • A new trigonometric shear deformation theory for isotropic, laminated composite and sandwich plates

    J.L. Mantari;A.S. Oktem;C. Guedes Soares

  • A new higher order shear deformation theory for sandwich and composite laminated plates

    J.L. Mantari;A.S. Oktem;C. Guedes Soares

  • Static and dynamic analysis of laminated composite and sandwich plates and shells by using a new higher-order shear deformation theory

    J.L. Mantari;A.S. Oktem;C. Guedes Soares

  • A novel higher-order shear deformation theory with stretching effect for functionally graded plates

    J.L. Mantari;C. Guedes Soares

  • Bending response of functionally graded plates by using a new higher order shear deformation theory

    J.L. Mantari;A.S. Oktem;C. Guedes Soares

  • Bending analysis of thick exponentially graded plates using a new trigonometric higher order shear deformation theory

    J.L. Mantari;C. Guedes Soares

  • Generalized hybrid quasi-3D shear deformation theory for the static analysis of advanced composite plates

    J.L. Mantari;C. Guedes Soares

  • Bending and free vibration analysis of isotropic and multilayered plates and shells by using a new accurate higher-order shear deformation theory

    J.L. Mantari;A.S. Oktem;C. Guedes Soares

  • Analysis of isotropic and multilayered plates and shells by using a generalized higher-order shear deformation theory

    J.L. Mantari;C. Guedes Soares

  • A new tangential-exponential higher order shear deformation theory for advanced composite plates

    J.L. Mantari;E.M. Bonilla;C. Guedes Soares

  • Static analysis of functionally graded plates using new non-polynomial displacement fields via Carrera Unified Formulation

    J. L. Mantari;I. A. Ramos;Erasmo Carrera;Marco Petrolo

  • A new trigonometric layerwise shear deformation theory for the finite element analysis of laminated composite and sandwich plates

    J. L. Mantari;A. S. Oktem;C. Guedes Soares

  • Static response of functionally graded plates and doubly-curved shells based on a higher order shear deformation theory

    A.S. Oktem;J.L. Mantari;C. Guedes Soares

  • Free vibration and buckling of laminated beams via hybrid Ritz solution for various penalized boundary conditions

    J.L. Mantari;F.G. Canales

  • Optimized sinusoidal higher order shear deformation theory for the analysis of functionally graded plates and shells

    J.L. Mantari;C. Guedes Soares

  • A trigonometric plate theory with 5-unknowns and stretching effect for advanced composite plates

    J.L. Mantari;C. Guedes Soares

  • A refined FSDT for the static analysis of functionally graded sandwich plates

    J.L. Mantari;E.V. Granados

  • Free vibration of single and sandwich laminated composite plates by using a simplified FSDT

    J.L. Mantari;M. Ore

  • Finite element formulation of a generalized higher order shear deformation theory for advanced composite plates

    J.L. Mantari;C. Guedes Soares

  • Generalized layerwise HSDT and finite element formulation for symmetric laminated and sandwich composite plates

    J.L. Mantari;C. Guedes Soares

Frequent Co-Authors

C. Guedes Soares
C. Guedes Soares Instituto Superior Técnico
Erasmo Carrera
Erasmo Carrera Polytechnic University of Turin
Thuc P. Vo
Thuc P. Vo La Trobe University
Ahmed Elsheikh
Ahmed Elsheikh University of Liverpool
Huu-Tai Thai
Huu-Tai Thai University of Melbourne
J. N. Reddy
J. N. Reddy Texas A&M University
Alfonso Pagani
Alfonso Pagani Polytechnic University of Turin

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