H-Index & Metrics Best Publications

H-Index & Metrics

Discipline name H-index Citations Publications World Ranking National Ranking
Mechanical and Aerospace Engineering D-index 31 Citations 3,838 130 World Ranking 1140 National Ranking 26

Overview

What is he best known for?

The fields of study he is best known for:

  • Composite material
  • Finite element method
  • Structural engineering

B.N. Singh mostly deals with Structural engineering, Finite element method, Boundary value problem, Buckling and Material properties. His Structural engineering research includes themes of Composite plate, Composite material and Nonlinear system. The Finite element method study combines topics in areas such as Vibration, Zigzag and Composite number.

His Boundary value problem research includes elements of Normal mode and Shear stress. His Buckling research focuses on subjects like Differential equation, which are linked to Closed-form expression and Simple shear. His study in Material properties is interdisciplinary in nature, drawing from both Volume fraction, Monte Carlo method and Deflection.

His most cited work include:

  • Static response and free vibration analysis of FGM plates using higher order shear deformation theory (228 citations)
  • A new inverse hyperbolic shear deformation theory for static and buckling analysis of laminated composite and sandwich plates (131 citations)
  • An improved higher order zigzag theory for the static analysis of laminated sandwich plate with soft core (103 citations)

What are the main themes of his work throughout his whole career to date?

His primary areas of study are Structural engineering, Finite element method, Material properties, Boundary value problem and Buckling. His work deals with themes such as Composite number, Zigzag and Nonlinear system, which intersect with Structural engineering. B.N. Singh interconnects Mathematical analysis, Composite plate, Vibration, Transverse plane and Composite material in the investigation of issues within Finite element method.

The various areas that B.N. Singh examines in his Material properties study include Randomness, Random variable, Deflection, Mechanics and Monte Carlo method. His research investigates the connection between Boundary value problem and topics such as Shear that intersect with issues in Flexural strength. In general Buckling study, his work on Critical load often relates to the realm of Perturbation, thereby connecting several areas of interest.

He most often published in these fields:

  • Structural engineering (71.81%)
  • Finite element method (68.46%)
  • Material properties (45.64%)

What were the highlights of his more recent work (between 2016-2021)?

  • Finite element method (68.46%)
  • Structural engineering (71.81%)
  • Boundary value problem (38.26%)

In recent papers he was focusing on the following fields of study:

His main research concerns Finite element method, Structural engineering, Boundary value problem, Mathematical analysis and Composite number. His Finite element method research incorporates elements of Composite plate, Vibration, Buckling, Discretization and Trigonometry. He has included themes like Piezoelectricity, Material properties and Deformation theory in his Structural engineering study.

His Material properties study combines topics from a wide range of disciplines, such as Monte Carlo method and Displacement field. His research integrates issues of Bending, Shear stress, Shear and Virtual work in his study of Boundary value problem. His work is dedicated to discovering how Mathematical analysis, Nonlinear system are connected with Aerodynamics and Aerodynamic force and other disciplines.

Between 2016 and 2021, his most popular works were:

  • A new non-polynomial four variable shear deformation theory in axiomatic formulation for hygro-thermo-mechanical analysis of laminated composite plates (27 citations)
  • New higher order shear deformation theories for free vibration and buckling analysis of laminated and braided composite plates (24 citations)
  • An efficient higher order non-polynomial Quasi 3-D theory for dynamic responses of laminated composite plates (21 citations)

In his most recent research, the most cited papers focused on:

  • Composite material
  • Finite element method
  • Mathematical analysis

The scientist’s investigation covers issues in Structural engineering, Finite element method, Mathematical analysis, Virtual work and Material properties. His work carried out in the field of Structural engineering brings together such families of science as Vibration, Composite number and Boundary value problem. His Composite number study incorporates themes from Shear, Zigzag and Transverse plane.

His studies examine the connections between Boundary value problem and genetics, as well as such issues in Shear stress, with regards to Load factor, Deformation theory, Buckling and Instability. The concepts of his Mathematical analysis study are interwoven with issues in Inverse and Foundation. B.N. Singh combines subjects such as Deflection and Nonlinear system with his study of Material properties.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Static response and free vibration analysis of FGM plates using higher order shear deformation theory

Mohammad Talha;B.N. Singh.
Applied Mathematical Modelling (2010)

347 Citations

A new inverse hyperbolic shear deformation theory for static and buckling analysis of laminated composite and sandwich plates

Neeraj Grover;D.K. Maiti;B.N. Singh.
Composite Structures (2013)

183 Citations

An improved higher order zigzag theory for the static analysis of laminated sandwich plate with soft core

Mihir K. Pandit;Abdul H. Sheikh;Bhrigu N. Singh.
Finite Elements in Analysis and Design (2008)

150 Citations

Natural frequencies of composite plates with random material properties using higher-order shear deformation theory

B.N. Singh;D. Yadav;N.G.R. Iyengar.
International Journal of Mechanical Sciences (2001)

124 Citations

Stochastic perturbation-based finite element for buckling statistics of FGM plates with uncertain material properties in thermal environments

Mohammad Talha;B.N. Singh.
Composite Structures (2014)

107 Citations

Buckling of laminated sandwich plates with soft core based on an improved higher order zigzag theory

M.K. Pandit;B.N. Singh;A.H. Sheikh.
Thin-walled Structures (2008)

96 Citations

Analytical and finite element modeling of laminated composite and sandwich plates: An assessment of a new shear deformation theory for free vibration response

Neeraj Grover;B.N. Singh;D.K. Maiti.
International Journal of Mechanical Sciences (2013)

91 Citations

A new inverse hyperbolic zigzag theory for the static analysis of laminated composite and sandwich plates

Rosalin Sahoo;B.N. Singh.
Composite Structures (2013)

85 Citations

New Nonpolynomial Shear-Deformation Theories for Structural Behavior of Laminated-Composite and Sandwich Plates

Neeraj Grover;B. N. Singh;D. K. Maiti.
AIAA Journal (2013)

77 Citations

A new trigonometric zigzag theory for buckling and free vibration analysis of laminated composite and sandwich plates

Rosalin Sahoo;B.N. Singh.
Composite Structures (2014)

76 Citations

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