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Y.S. Li

Researcher at Hebei University of Engineering

Publications -  6
Citations -  178

Y.S. Li is an academic researcher from Hebei University of Engineering. The author has contributed to research in topics: Piezoelectricity & Fracture mechanics. The author has an hindex of 4, co-authored 6 publications receiving 132 citations.

Papers
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Bending and free vibration of functionally graded piezoelectric beam based on modified strain gradient theory

TL;DR: In this article, a size-dependent functionally graded piezoelectric beam model was developed using a variational formulation based on the modified strain gradient theory and Timoshenko beam theory.
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Free vibration of the one-dimensional piezoelectric quasicrystal microbeams based on modified couple stress theory

TL;DR: In this article, the free vibration of one-dimensional (1D) piezoelectric quasicrystal (PQC) microbeam is investigated, and the effects of the geometry, electric voltage, material length scale parameter and boundary conditions on natural frequency of the PQC microbeam are demonstrated.
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Bending of sinusoidal functionally graded piezoelectric plate under an in-plane magnetic field

TL;DR: In this article, the bending of a simply supported functionally graded piezoelectric plate under an in-plane magnetic field was investigated and the governing equations were derived by the principle of the virtual work considering the Lorentz magnetic force obtained from the Maxwell's relation.
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Dynamic fracture analysis of an annular interfacial crack between dissimilar magnetoelectroelastic layers

TL;DR: In this article, the authors investigated the transient response of an annular interfacial crack between dissimilar magnetoelectroelastic layers under impacts, using Laplace and Hankel transform techniques.
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Electroelastic behaviour of an annular interfacial crack between dissimilar piezoelectric layers

TL;DR: In this paper, an annular interfacial crack between dissimilar piezoelectric layers subjected to electroelastic loadings was investigated under an electrically impermeable boundary condition on the crack surface by using the Hankel transform technique and the Cauchy singular integral equation method.