World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
44
Citations
7704
World Ranking
1616
National Ranking
195

Overview

Shengping Shen is affiliated with Xi'an Jiaotong University in China and has contributed extensively to the fields of engineering and materials science. With a primary focus on materials chemistry and mechanical engineering, Shen's research spans a variety of specialized topics related to advanced materials and mechanical behaviors.

The scientist's work has explored areas including:

  • Nonlocal and gradient elasticity in micro/nano structures
  • Vibration control and rheological fluids
  • Advanced materials and mechanics
  • Advanced sensor and energy harvesting materials
  • High-temperature coating behaviors
  • Innovative energy harvesting technologies
  • High entropy alloys studies

Shen has collaborated frequently with other researchers in the field, including:

  • Wenshan Yu
  • Liang Xu
  • Yihan Wu
  • Qian Deng
  • Feng Deng

The scientist's research has been published in various academic venues, with the most frequent publication outlets being:

  • SSRN Electronic Journal
  • Journal of Applied Physics
  • Journal of Physics D Applied Physics
  • Advanced Functional Materials
  • Applied Physics Letters

Notable recent papers include:

  • The impact of flexoelectricity on materials, devices, and physics, 2020, Journal of Applied Physics
  • Homologous recombination deficiency (HRD) can predict the therapeutic outcomes of immuno-neoadjuvant therapy in NSCLC patients, 2022, Journal of Hematology & Oncology
  • Stabilizing mechanism of single-atom catalysts on a defective carbon surface, 2020, npj Computational Materials
  • Electromechanical analysis of direct and converse flexoelectric effects under a scanning probe tip, 2020, Journal of the Mechanics and Physics of Solids
  • Rayleigh wave propagation in a homogeneous centrosymmetric flexoelectric half-space, 2020, Ultrasonics

Shengping Shen's research integrates interdisciplinary approaches within engineering and materials science to address complex phenomena in materials chemistry, mechanics of materials, and civil and structural engineering. This body of work contributes to understanding mechanical behaviors and developing innovative technologies in materials and sensor engineering.

Best Publications

  • The Meshless Local Petrov-Galerkin (MLPG) Method: A Simple \& Less-costly Alternative to the Finite Element and Boundary Element Methods

    Satya N. Atluri;Shengping Shen

  • The meshless local Petrov-Galerkin (MLPG) method

    Satya N. Atluri;Shengping Shen

  • A theory of flexoelectricity with surface effect for elastic dielectrics

    Shengping Shen;Shuling Hu

  • Variational principles and governing equations in nano-dielectrics with the flexoelectric effect

    ShuLing Hu;ShengPing Shen

  • Effects of surface and flexoelectricity on a piezoelectric nanobeam

    Xu Liang;Shuling Hu;Shengping Shen

  • Electric Field Gradient Theory with Surface Effect for Nano-Dielectrics

    Shuling Hu;Shengping Shen

  • Electromechanical responses of piezoelectric nanoplates with flexoelectricity

    Wenjun Yang;Xu Liang;Shengping Shen

  • The mechanical properties of bamboo and vascular bundles

    Hongbo Li;Hongbo Li;Shengping Shen

  • Meshless Local Petrov-Galerkin (MLPG) Approaches for Solving the Weakly-Singular Traction {\&} Displacement Boundary Integral Equations

    S. N. Atluri;Z. D. Han;S. Shen

  • Mixed finite elements for flexoelectric solids

    Feng Deng;Qian Deng;WenShan Yu;Shengping Shen

  • Size-dependent buckling and vibration behaviors of piezoelectric nanostructures due to flexoelectricity

    Xu Liang;Shuling Hu;Shengping Shen

  • Flexoelectret: An Electret with a Tunable Flexoelectriclike Response.

    Xin Wen;Dongfan Li;Kai Tan;Qian Deng

  • Analysis of materials with strain-gradient effects: A meshless local Petrov-Galerkin (MLPG) approach, with nodal displacements only

    Z.Tang;S. Shen;S.N. Atluri

  • The basis of meshless domain discretization: the meshless local Petrov–Galerkin (MLPG) method

    Satya N. Atluri;Shengping Shen

  • Effect of flexoelectricity on electrostatic potential in a bent piezoelectric nanowire

    Chenchen Liu;Shuling Hu;Shengping Shen

  • SIZE-DEPENDENT PIEZOELECTRICITY AND ELASTICITY DUE TO THE ELECTRIC FIELD-STRAIN GRADIENT COUPLING AND STRAIN GRADIENT ELASTICITY

    Liang Xu;Shengping Shen

  • Fracture of piezoelectric materials: energy density criterion

    Shengping Shen;Toshihisa Nishioka

  • The impact of flexoelectricity on materials, devices, and physics

    Qian Deng;Sihao Lv;Zhaoqi Li;Kai Tan

  • Interface crack in bi-piezothermoelastic media and the interaction with a point heat source

    Shengping Shen;Zhen-Bang Kuang

  • A new Bernoulli-Euler beam model based on a simplified strain gradient elasticity theory and its applications

    Xu Liang;Shuling Hu;Shengping Shen

  • Atomic-level Stress Calculation and Continuum-Molecular System Equivalence

    Shengping Shen;S. N. Atluri

  • An active control model of laminated piezothermoelastic plate

    Shengping Shen;Zhen-Bang Kuang

  • Non-equilibrium thermodynamics and variational principles for fully coupled thermal–mechanical–chemical processes

    Shuling Hu;Shengping Shen

  • General approach on chemistry and stress coupling effects during oxidation

    Yaohong Suo;Shengping Shen

  • Nanoscale mechanical energy harvesting using piezoelectricity and flexoelectricity

    Xu Liang;Shuling Hu;Shengping Shen

  • Buckling and vibration of flexoelectric nanofilms subjected to mechanical loads

    Xu Liang;Wenjun Yang;Shuling Hu;Shengping Shen

Frequent Co-Authors

Satya N. Atluri
Satya N. Atluri Texas Tech University
Wen-Quan Tao
Wen-Quan Tao Xi'an Jiaotong University
K.M. Liew
K.M. Liew City University of Hong Kong
Teng Li
Teng Li University of Maryland, College Park
Jiangyu Li
Jiangyu Li Southern University of Science and Technology
Ting Zhu
Ting Zhu Georgia Institute of Technology
Pradeep Sharma
Pradeep Sharma University of Houston
Xue Feng
Xue Feng Tsinghua University

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