Journal article
Nonlinear static and transient isogeometric analysis of functionally graded microplates based on the modified strain gradient theory
S Thai, HT Thai, TP Vo, H Nguyen-Xuan
Engineering Structures | ELSEVIER SCI LTD | Published : 2017
Abstract
The objective of this study is to develop an effective numerical model within the framework of an isogeometric analysis (IGA) to investigate the geometrically nonlinear responses of functionally graded (FG) microplates subjected to static and dynamic loadings. The size effect is captured based on the modified strain gradient theory with three length scale parameters. The third-order shear deformation plate theory is adopted to represent the kinematics of plates, while the geometric nonlinearity is accounted based on the von Kármán assumption. Moreover, the variations of material phrases through the plate thickness follow the rule of mixture. By using Hamilton's principle, the governing equat..
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Funding Acknowledgements
This research study was supported by a Postgraduate Research Scholarship at La Trobe University. This financial support is gratefully acknowledged.