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Solid-shell element model of assumed through-thickness electric distribution for laminate composite piezoelectric structures

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dc.creator Yi, Sung
dc.creator Yao, Lin-Quan
dc.date 2003-12-22T20:52:36Z
dc.date 2003-12-22T20:52:36Z
dc.date 2002-01
dc.date.accessioned 2013-10-09T02:33:27Z
dc.date.available 2013-10-09T02:33:27Z
dc.date.issued 2013-10-09
dc.identifier http://hdl.handle.net/1721.1/3988
dc.identifier.uri http://koha.mediu.edu.my:8181/xmlui/handle/1721
dc.description The eight-node solid-shell finite element models have been developed for the analysis of laminated composite pate/shell structures with piezoelectric actuators and sensors. To resolve the locking problems of the solid-shell elements in laminated materials and improve accuracy, the assumed natural strain method and hybrid stress method are employed. The nonlinear electric potential distribution in piezoelectric layer is described by introducing internal electric potential. The developed finite element models, especially, electric potential node model, have the advantages of simpler modeling and can obtain same effect that exact solution described.
dc.description Singapore-MIT Alliance (SMA)
dc.format 136441 bytes
dc.format application/pdf
dc.language en_US
dc.relation Advanced Materials for Micro- and Nano-Systems (AMMNS);
dc.subject laminate composite structure
dc.subject piezoelectric material
dc.subject finite element method
dc.subject hybrid stress element
dc.title Solid-shell element model of assumed through-thickness electric distribution for laminate composite piezoelectric structures
dc.type Article


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