Corrigendum to “Nonlinear dynamic response of imperfect eccentrically stiffened FGM double curved shallow shells on elastic foundation” [Compos. Struct. 99 (2013) 88–96]
Author:
Funder
Mechanics of the National Foundation for Science and Technology Development of Vietnam-NAFOSTED
Publisher
Elsevier BV
Subject
Civil and Structural Engineering,Ceramics and Composites
Reference36 articles.
1. Vibration of functionally graded cylindrical shells;Loy;Int Mech Sci,1999
2. Influence of boundary conditions on the frequency characteristics of a rotating truncated circular conical shell;Lam;J Sound Vib,1999
3. Vibration characteristics of FGM cylindrical shells under various boundary conditions;Pradhan;J Appl Acoust,2000
4. Dynamic stability analysis of functionally graded cylindrical shells under periodic axial loading;Ng;Int J Solids Struct,2001
5. Generalized differential quadrate for free vibration of rotating composite laminated conical shell with various boundary conditions;Ng;Int J Mech Sci,2003
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