World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
53
Citations
7692
World Ranking
1028
National Ranking
121

Overview

Guoyong Jin is affiliated with Harbin Engineering University in China and specializes in engineering with a particular focus on mechanics of materials, control and systems engineering, biomedical engineering, civil and structural engineering, and computational mechanics. Their research output spans over 282 publications in these main areas of study.

Jin's work primarily addresses topics in composite structure analysis and optimization, vibration and dynamic analysis, acoustic wave phenomena research, fluid dynamics and vibration analysis, advanced numerical analysis techniques, aerodynamics and acoustics in jet flows, and structural analysis and optimization.

Significant recent papers by Guoyong Jin include:

  • "Free vibration and damping analysis of porous functionally graded sandwich plates with a viscoelastic core," 2020, Composite Structures
  • "Vibration analysis of combined conical-cylindrical shells based on the dynamic stiffness method," 2020, Thin-Walled Structures
  • "Sound absorption behaviors of metamaterials with periodic multi-resonator and voids in water," 2020, Applied Acoustics
  • "Dynamic stiffness formulation and vibration analysis of coupled conical-ribbed cylindrical-conical shell structure with general boundary condition," 2021, Ocean Engineering
  • "Vibration analysis of rotating pretwist FG sandwich blades operating in thermal environment," 2021, International Journal of Mechanical Sciences

The scientist publishes frequently in several journals, such as:

  • International Journal of Mechanical Sciences (16 publications)
  • Thin-Walled Structures (15 publications)
  • Journal of Sound and Vibration (10 publications)
  • Composite Structures (6 publications)
  • Ocean Engineering (6 publications)

Throughout their career, Guoyong Jin has collaborated frequently with several coauthors, including Tiangui Ye, Yukun Chen, Zhigang Liu, Saifeng Zhong, and Shanjun Li. These collaborations suggest interdisciplinary research efforts within engineering and related fields.

Best Publications

  • Three-dimensional exact solution for the free vibration of arbitrarily thick functionally graded rectangular plates with general boundary conditions

    Guoyong Jin;Zhu Su;Shuangxia Shi;Tiangui Ye

  • A unified solution for vibration analysis of functionally graded cylindrical, conical shells and annular plates with general boundary conditions

    Zhu Su;Guoyong Jin;Shuangxia Shi;Tiangui Ye

  • An exact solution for the free vibration analysis of laminated composite cylindrical shells with general elastic boundary conditions

    Guoyong Jin;Tiangui Ye;Yuehua Chen;Zhu Su

  • A unified approach for the vibration analysis of moderately thick composite laminated cylindrical shells with arbitrary boundary conditions

    Guoyong Jin;Tiangui Ye;Xianglong Ma;Yuehua Chen

  • Free vibration analysis of porous plates with porosity distributions in the thickness and in-plane directions using isogeometric approach

    Yaqiang Xue;Guoyong Jin;Xianglong Ma;Hailong Chen

  • An analytical method for the in-plane vibration analysis of rectangular plates with elastically restrained edges

    Jingtao Du;Wen L. Li;Guoyong Jin;Tiejun Yang

  • Free and forced vibration analysis of coupled conical–cylindrical shells with arbitrary boundary conditions

    Xianglong Ma;Xianglong Ma;Guoyong Jin;Yeping Xiong;Zhigang Liu

  • A general Fourier solution for the vibration analysis of composite laminated structure elements of revolution with general elastic restraints

    Guoyong Jin;Tiangui Ye;Xingzhao Jia;Siyang Gao

  • Free vibration of two elastically coupled rectangular plates with uniform elastic boundary restraints

    Jingtao Du;Wen L. Li;Zhigang Liu;Tiejun Yang

  • Three-dimensional vibration analysis of thick functionally graded conical, cylindrical shell and annular plate structures with arbitrary elastic restraints

    Zhu Su;Guoyong Jin;Tiangui Ye

  • A numerical solution for vibration analysis of composite laminated conical, cylindrical shell and annular plate structures

    Unknown

  • Free vibration analysis of circular cylindrical shell with non-uniform elastic boundary constraints

    Yuehua Chen;Guoyong Jin;Zhigang Liu

  • A modified Fourier series solution for vibration analysis of truncated conical shells with general boundary conditions

    Guoyong Jin;Xianglong Ma;Shuangxia Shi;Tiangui Ye

  • A unified solution for the vibration analysis of FGM doubly-curved shells of revolution with arbitrary boundary conditions

    Guoyong Jin;Tiangui Ye;Xueren Wang;Xuhong Miao

  • Free vibration analysis of composite laminated cylindrical shells using the Haar wavelet method

    Unknown

  • A simultaneous equation method-based online secondary path modeling algorithm for active noise control

    Guo-yong Jin;Tie-jun Yang;You-hong Xiao;Zhi-gang Liu

  • Vibration behaviors of a box-type structure built up by plates and energy transmission through the structure

    Yuehua Chen;Guoyong Jin;Minggang Zhu;Zhigang Liu

  • Underwater sound absorption performance of acoustic metamaterials with multilayered locally resonant scatterers

    Kangkang Shi;Guoyong Jin;Ruijie Liu;Tiangui Ye

  • A unified Chebyshev–Ritz formulation for vibration analysis of composite laminated deep open shells with arbitrary boundary conditions

    Tiangui Ye;Guoyong Jin;Zhu Su;Xingzhao Jia

  • Free vibration analysis of in-plane functionally graded plates using a refined plate theory and isogeometric approach

    Yaqiang Xue;Guoyong Jin;Hu Ding;Mingfei Chen

  • A unified formulation for vibration analysis of open shells with arbitrary boundary conditions

    Tiangui Ye;Guoyong Jin;Yuehua Chen;Shuangxia Shi

  • Free vibration analysis of functionally graded conical shells and annular plates using the Haar wavelet method

    Xiang Xie;Guoyong Jin;Tiangui Ye;Zhigang Liu

  • Vibration and damping analysis of thick sandwich cylindrical shells with a viscoelastic core under arbitrary boundary conditions

    Chuanmeng Yang;Guoyong Jin;Zhigang Liu;Xueren Wang

Frequent Co-Authors

Tiangui Ye
Tiangui Ye Harbin Engineering University
Zhigang Liu
Zhigang Liu Southwest Jiaotong University
Heow Pueh Lee
Heow Pueh Lee National University of Singapore

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