D-Index & Metrics Best Publications

D-Index & Metrics

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Engineering and Technology D-index 70 Citations 17,741 450 World Ranking 289 National Ranking 16

Research.com Recognitions

Awards & Achievements

2019 - Fellow of Australian Academy of Technology and Engineering

2019 - JN Reddy Medal, TEES Center of Innovation in Mechanics for Design and Manufacturing for original and sustained contributions to the advancement of structural mechanics

2019 - Nishino Medal, East Asia-Pacific Conference on Structural Engineering and Construction (EASEC) In recognition of his distinguished achievement and contributions in the area of structural engineering and construction in the Asia-Pacific region.

2018 - Fellow of Society of Floating Solutions, Singapore

2013 - Grand Prize of the Next Generation Container Port Challenge (US$1 million)

2013 - IES Prestigious Engineering Achievement Award, Institution of Engineers Singapore

2012 - Fellow of Academy of Engineering, Singapore

2004 - Fellow of the Institution of Engineers, Singapore

2004 - Fellow of the Institution of Structural Engineers, United Kingdom

Overview

What is he best known for?

The fields of study he is best known for:

  • Structural engineering
  • Composite material
  • Mathematical analysis

His primary areas of investigation include Buckling, Boundary value problem, Vibration, Structural engineering and Mechanics. His work in Buckling addresses subjects such as Shell, which are connected to disciplines such as Aspect ratio. Chien Ming Wang has researched Boundary value problem in several fields, including Geometry, Deflection and Energy functional.

Chien Ming Wang focuses mostly in the field of Structural engineering, narrowing it down to matters related to Numerical analysis and, in some cases, Ritz method. His Mechanics research is multidisciplinary, incorporating perspectives in Scale, Stress, Bending moment and Timoshenko beam theory. The various areas that he examines in his Timoshenko beam theory study include Classical mechanics and Shear stress.

His most cited work include:

  • Reinforcing effects of graphene oxide on portland cement paste (370 citations)
  • The small length scale effect for a non-local cantilever beam: a paradox solved. (346 citations)
  • Vibration of nonlocal Timoshenko beams (345 citations)

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

Structural engineering, Buckling, Vibration, Boundary value problem and Mathematical analysis are his primary areas of study. Structural engineering connects with themes related to Numerical analysis in his study. His Buckling research includes themes of Beam, Length scale, Carbon nanotube and Classical mechanics.

His research in Beam is mostly focused on Timoshenko beam theory. Chien Ming Wang mostly deals with Normal mode in his studies of Vibration. His research in Boundary value problem intersects with topics in Bending, Geometry and Mechanics.

He most often published in these fields:

  • Structural engineering (42.52%)
  • Buckling (35.67%)
  • Vibration (20.87%)

What were the highlights of his more recent work (between 2013-2021)?

  • Buckling (35.67%)
  • Structural engineering (42.52%)
  • Vibration (20.87%)

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

His main research concerns Buckling, Structural engineering, Vibration, Boundary value problem and Mechanics. His Buckling study combines topics from a wide range of disciplines, such as Elasticity, Beam, Timoshenko beam theory, Finite difference and Finite difference method. In the subject of general Structural engineering, his work in Stiffness, Bar, Hinge and Arch is often linked to Chain model, thereby combining diverse domains of study.

His study in Boundary value problem is interdisciplinary in nature, drawing from both Bending, Length scale and Lattice. His research integrates issues of Normal mode, Aspect ratio, Mathematical analysis and Classical mechanics in his study of Length scale. His Mechanics research includes elements of Boundary element method, Equations of motion and Moving load.

Between 2013 and 2021, his most popular works were:

  • Reinforcing effects of graphene oxide on portland cement paste (370 citations)
  • Nano reinforced cement and concrete composites and new perspective from graphene oxide (271 citations)
  • On nonconservativeness of Eringen’s nonlocal elasticity in beam mechanics: correction from a discrete-based approach (122 citations)

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

  • Structural engineering
  • Composite material
  • Mathematical analysis

His scientific interests lie mostly in Buckling, Vibration, Length scale, Structural engineering and Beam. In his study, which falls under the umbrella issue of Buckling, Discrete system, Finite difference method and Finite element method is strongly linked to Finite difference. Chien Ming Wang does research in Vibration, focusing on Timoshenko beam theory specifically.

His Length scale research incorporates themes from Boundary value problem and Classical mechanics. His Structural engineering study typically links adjacent topics like Constant stress. He has researched Beam in several fields, including Axial symmetry, Displacement and Mathematical analysis, Exponential function.

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

Shear deformable beams and plates: relationships with classical solutions

C. M. Wang;J. N. Reddy;K. H. Lee.
(2000)

721 Citations

Exact Solutions for Buckling of Structural Members

Chien Ming Wang;C. Y. Wang;J. N. Reddy.
(2004)

509 Citations

The constitutive relation and small scale parameter of nonlocal continuum mechanics for modelling carbon nanotubes.

Q Wang;C M Wang.
Nanotechnology (2007)

463 Citations

Vibration of nonlocal Timoshenko beams

C M Wang;Y Y Zhang;X Q He.
Nanotechnology (2007)

458 Citations

The small length scale effect for a non-local cantilever beam: a paradox solved.

N Challamel;C M Wang.
Nanotechnology (2008)

416 Citations

Buckling analysis of micro- and nano-rods/tubes based on nonlocal Timoshenko beam theory

C M Wang;Y Y Zhang;Sai Sudha Ramesh;S Kitipornchai.
Journal of Physics D (2006)

411 Citations

Axisymmetric bending of functionally graded circular and annular plates

J.N. Reddy;C.M. Wang;S. Kitipornchai.
European Journal of Mechanics A-solids (1999)

403 Citations

Nano reinforced cement and concrete composites and new perspective from graphene oxide

Samuel Chuah;Zhu Pan;Jay G. Sanjayan;Chien Ming Wang.
Construction and Building Materials (2014)

393 Citations

CALIBRATION OF NONLOCAL SCALING EFFECT PARAMETER FOR FREE VIBRATION OF CARBON NANOTUBES BY MOLECULAR DYNAMICS

Wenhui Duan;Chien Ming Wang;Y Y Zhang.
Journal of Applied Physics (2007)

362 Citations

Hydroelastic analysis of pontoon-type VLFS: a literature survey

E. Watanabe;Tomoaki Utsunomiya;C. M. Wang.
Engineering Structures (2004)

335 Citations

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