In this paper, we present a method to analyse the dynamic and steady response of non-homogeneous composite materials. Diering from the existing works reported in literature, the present method can be used for arbitrarily varying material properties through thickness direction and the crack number ca
โฆ LIBER โฆ
Multi-cracks problem for piezoelectric materials strip subjected to dynamic loading
โ Scribed by Hai-Ming Huang; Hui-Ji Shi; Ya-Jun Yin
- Book ID
- 104272942
- Publisher
- Elsevier Science
- Year
- 2002
- Tongue
- English
- Weight
- 140 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0093-6413
No coin nor oath required. For personal study only.
โฆ Synopsis
This paper analyses and models the dynamic interaction among permeable multi-cracks in a piezoelectric strip under anti-plane shear waves by the Schmidt method. The Fourier transform is applied and then two pairs of triple integral equations can be solved using the Schmidt method. The results show that the stress and the electric displacement intensity factors of cracks depend on not only the crack length and the piezoelectric coefficient, but also the thickness of the piezoelectric strip, the distance between multi-cracks and the frequency of incident wave.
๐ SIMILAR VOLUMES
Cracks problem for non-homogeneous compo
โ
B.L. Wang; J.C. Han; S.Y. Du
๐
Article
๐
2000
๐
Elsevier Science
๐
English
โ 368 KB
Fatigue crack propagation in a piezoelec
โ
F. Narita; Y. Shindo
๐
Article
๐
1999
๐
Springer Vienna
๐
English
โ 414 KB
Nonaxisymmetric Dynamic Problem of a Pen
โ
Yang, Ji Hyuck; Lee, Kang Yong
๐
Article
๐
2004
๐
The American Society of Mechanical Engineers
๐
English
โ 97 KB
Dynamic behavior of a crack in a functio
โ
J.-L. Sun; Z.-G. Zhou; B. Wang
๐
Article
๐
2005
๐
Springer Vienna
๐
English
โ 405 KB
Analysis of bonded piezoelectric materia
โ
Sheng-Hu Ding; Xing Li; Li-Fang Guo
๐
Article
๐
2010
๐
Elsevier Science
๐
English
โ 608 KB
Dynamic propagation problem of mode I se
โ
N. C. Lร; Y. H. Cheng; X. G. Li; J. Cheng
๐
Article
๐
2010
๐
John Wiley and Sons
๐
English
โ 194 KB