Rui Zhao

About

Dr. Rui Zhao is a Professor at the Department of Astronautic Science and Mechanics, Harbin Institute of Technology, China. He received his B.Eng. degree in Engineering Mechanics, M.Eng. degree in Aerospace Engineering, and Ph.D. degree in General and Fundamental Mechanics from the Harbin Institute of Technology. He has been a joint Ph.D. student at the University of Michigan from Sep. 2015 to Sep. 2016. Prof. Rui Zhao’s primary research interests are in the areas of structural dynamics and vibration control. He has participated in several national key research projects. He has published more than 20 journal papers in high-impact journals. He has served as a reviewer for many scientific journals. He has received the Best Paper Award at the 12th National Conference on Vibration Theory and Applications (NVTA2017). He has been a committee member of the Modal Analysis and Testing Committee of the Chinese Society for Vibration Engineering (CSVE) since 2017.

Work

Harbin Institute of Technology
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Lecturer

China

Education

Harbin Institute of Technology
China

Ph.D.

University of Michigan
United States of America

Joint Ph.D. Student

Harbin Institute of Technology
China

M.S.

Harbin Institute of Technology
China

B.S.

Publications

Study on the effect of nonlinear inertia on the vibration isolation performance of quasi-zero-stiffness isolators

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Journal of Vibration and Control

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Supersonic Panel Flutter Analysis by Using the Polygonal Finite Element Method

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International Journal of Structural Stability and Dynamics

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Directly Self-Starting Second-Order Explicit Integration Methods with Dissipation Control and Adjustable Bifurcation Points for Second-Order Initial Value Problems

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International Journal of Structural Stability and Dynamics

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Dynamic topology optimization considering the influence of the non‐uniform temperature field

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International Journal for Numerical Methods in Engineering

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Three optimal families of three‐sub‐step dissipative implicit integration algorithms with either second, third, or fourth‐order accuracy for second‐order nonlinear dynamics

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International Journal for Numerical Methods in Engineering

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On designing and developing single‐step second‐order implicit methods with dissipation control and zero‐order overshoots via subsidiary variables

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International Journal for Numerical Methods in Engineering

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A novel instantaneous frequency estimation method for operational time-varying systems using short-time multivariate variational mode decomposition

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Journal of Vibration and Control

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On Enhanced Second-Order Explicit Integration Methods with Controllable Algorithmic Dissipation and Adjustable Sub-Step Size for Hyperbolic Problems

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International Journal of Applied Mechanics

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Stochastic model updating method for estimates of arbitrary distributed parameters using resampling technique

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Applied Mathematical Modelling

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A quasi-zero-stiffness device capable of vibration isolation and energy harvesting using piezoelectric buckled beams

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Energy

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Interval model updating using universal grey mathematics and Gaussian process regression model

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Mechanical Systems and Signal Processing

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Dynamic modeling and experimental analyses of Stewart platform with flexible hinges

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Journal of Vibration and Control

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Impact Series Shaker Excitation Approach for Structural Modal Testing in Thermal Environments

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Experimental Techniques

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Time‐Varying Modal Parameters Identification by Subspace Tracking Algorithm and Its Validation Method

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Shock and Vibration

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Time-Varying Modal Parameters Identification by Subspace Tracking Algorithm and Its Validation Method

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Shock and Vibration

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Effect of thermal stresses on frequency band structures of elastic metamaterial plates

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Journal of Sound and Vibration

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Experimental and simulation investigation of temperature effects on modal characteristics of composite honeycomb structure

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Composite Structures

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Generalized thermoelastic band structures of Rayleigh wave in one-dimensional phononic crystals

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Meccanica

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Output-only modal estimation using sparse component analysis and density-based clustering algorithm

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Measurement

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Sound transmission loss of composite and sandwich panels in thermal environment

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Composites Part B: Engineering

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Thermal post-buckling and vibration analysis of a symmetric sandwich beam with clamped and simply supported boundary conditions

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Archive of Applied Mechanics

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Time discontinuous finite element method for transient response analysis of linear time-varying structures

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Meccanica

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Topological spin-Hall edge states of flexural wave in perforated metamaterial plates

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Journal of Physics D: Applied Physics

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Vibro-acoustic response of a clamped rectangular sandwich panel in thermal environment

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Applied Acoustics

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Piecewise shear deformation theory and finite element formulation for vibration analysis of laminated composite and sandwich plates in thermal environments

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Composite Structures

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Buckling and vibro-acoustic response of the clamped composite laminated plate in thermal environment

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International Journal of Mechanical Sciences

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Modal density and mode counts of sandwich panels in thermal environments

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Composite Structures

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A new modeling method for flexible multibody systems

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Multibody System Dynamics

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A piecewise shear deformation theory for free vibration of composite and sandwich panels

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Composite Structures

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An efficient transient analysis method for linear time-varying structures based on multi-level substructuring method

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Computers & Structures

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Dynamic modeling and robust nonlinear control of a six-DOF active micro-vibration isolation manipulator with parameter uncertainties

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Mechanism and Machine Theory

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Modal density of sandwich panels based on an improved ordinary sandwich panel theory

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Composite Structures

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Thermal vibration characteristics of fiber-reinforced mullite sandwich structure with ceramic foams core

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Composite Structures

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Hamilton's law of variable mass system and time finite element formulations for time-varying structures based on the law

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International Journal for Numerical Methods in Engineering

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Hamilton's law of variable mass system and time finite element formulations for time‐varying structures based on the law

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International Journal for Numerical Methods in Engineering

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