In this paper, a new type of hybrid fundamental solution-based finite element method (HFS-FEM) is developed for analyzing plane piezoelectric problems with defects by employing fundamental solutions (or Green's functions) as internal interpolation functions. The hybrid method is formulated based on two independent assumptions: an intra-element field covering the element domain and an inter-element frame field along the element boundary. Both general elements and a special element with a central elliptical hole or crack are developed in this work. The fundamental solutions of piezoelectricity derived from the elegant Stroh formalism are employed to approximate the intra-element displacement field of the elements, while the polynomial shape f...
This paper concerns the determination of singular electromechanical stress field in piezoelectrics. ...
The solutions for a mode III crack growing along an arbitrary propagation path in a piezoelectric pl...
AbstractUsing the hypersingular integral equation method based on body force method, a planar crack ...
In this paper, a new type of hybrid finite element method (FEM), hybrid fundamental-solution-based F...
The present paper develops a new type of hybrid finite element model with regular and special fundam...
An overview on the development of hybrid fundamental solution based finite element method (HFS-FEM) ...
An overview on the development of hybrid fundamental solution based finite element method (HFS-FEM) ...
An ultra-accurate hybrid smoothed finite element method (HS-FEM) is presented for the analysis of pi...
A special finite element based on the complex potential theory and hybrid variational principle is p...
In this paper we present a hybrid finite element method (HFS-FEM) to model efficiently and accuratel...
The cracked piezoelectric problem is observed numerically. To simulate the characteristic singularit...
A micromechanics boundary element (BE) algorithm is developed to predict the overall properties of a...
A hybrid finite element method (FEM) is developed for determining stress intensity factor of opening...
AbstractThe interactions of electro-elastic fields with voids and cracks contained in a piezoelectri...
This paper presents a hybrid finite element model (FEM) with a new type of general solution as inter...
This paper concerns the determination of singular electromechanical stress field in piezoelectrics. ...
The solutions for a mode III crack growing along an arbitrary propagation path in a piezoelectric pl...
AbstractUsing the hypersingular integral equation method based on body force method, a planar crack ...
In this paper, a new type of hybrid finite element method (FEM), hybrid fundamental-solution-based F...
The present paper develops a new type of hybrid finite element model with regular and special fundam...
An overview on the development of hybrid fundamental solution based finite element method (HFS-FEM) ...
An overview on the development of hybrid fundamental solution based finite element method (HFS-FEM) ...
An ultra-accurate hybrid smoothed finite element method (HS-FEM) is presented for the analysis of pi...
A special finite element based on the complex potential theory and hybrid variational principle is p...
In this paper we present a hybrid finite element method (HFS-FEM) to model efficiently and accuratel...
The cracked piezoelectric problem is observed numerically. To simulate the characteristic singularit...
A micromechanics boundary element (BE) algorithm is developed to predict the overall properties of a...
A hybrid finite element method (FEM) is developed for determining stress intensity factor of opening...
AbstractThe interactions of electro-elastic fields with voids and cracks contained in a piezoelectri...
This paper presents a hybrid finite element model (FEM) with a new type of general solution as inter...
This paper concerns the determination of singular electromechanical stress field in piezoelectrics. ...
The solutions for a mode III crack growing along an arbitrary propagation path in a piezoelectric pl...
AbstractUsing the hypersingular integral equation method based on body force method, a planar crack ...