Free-Edge Stress Analysis of Functionally Graded Material Layered Biocomposite Laminates

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초록

A stress function based theory is proposed to obtain free-edge stress distributions for three-dimensional, orthotropic, linearly elastic rectangular biocomposite laminates with surface-bonded functionally graded materials (FGM). The assumed stress fields automatically satisfy the pointwise equilibrium equation, as well as traction-free and free edge boundary conditions. The complementary virtual work principle, followed by the general eigenvalue solution procedure, is used to obtain 3-D free edge stress states. A typical stacking sequence of composite laminate is used as numerical investigation with surface bonded FGMs. It is shown that with proper exponential factor of FGMs, the interlaminar stresses at the FGM layer interface can be reduced significantly, in return to prevent debonding of FGM layers. This approach can be useful in the design of functionally graded material layered biocomposite structures.

키워드

Functionally Graded MaterialBiocomposite LaminateStress FunctionFree-EdgeComplementary Virtual WorkSHEAR-DEFORMATION-THEORYCELLULOSE ELECTROACTIVE PAPEREXTENDED KANTOROVICH METHODCYLINDRICAL-SHELL STRUCTUREDIRAC DISTRIBUTION FUNCTIONROBUST DESIGN OPTIMIZATIONSMART COMPOSITE STRUCTURESFINITE-ELEMENT-ANALYSISGLOBAL-LOCAL APPROACHHIGHER-ORDER THEORY
제목
Free-Edge Stress Analysis of Functionally Graded Material Layered Biocomposite Laminates
저자
Huang, BinKim, Heung Soo
DOI
10.1166/jnn.2014.9553
발행일
2014-10
유형
Article
저널명
Journal of Nanoscience and Nanotechnology
14
10
페이지
7451 ~ 7457