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- W2019400294 abstract "Based upon the interfacial spring-layer model, a state-space approach for the energy release rate analysis of stiffened laminates with a planar delamination was presented. The main advantages of the present method are that thesamemeshisusedforeachlayer,andonlytheso-calledstatevariablesatthetopandbottomsurfacesofstructure inthe finalcontrolequationofstructuresareinvolved.Ontheotherhand,theoscillatorysingularstressesaroundthe delamination front are avoided as a result. Instead, stress resultant jumps are found in the sublaminate across the delamination front. Moreover, the technique accounts for the compatibility of displacements and stresses between layers and the transverse shear deformation in the control equation of structure. To avoid the possibility of material penetration phenomenon of the delaminated region, the unilateral frictionless contact interface is adopted in the interfacialspringlayerbetweensublaminates.Withtheaidofthevirtualcrackclosuretechnique,theaccuracyofthe method was assessed by comparing the results with existing examples. The effects of stiffeners on the distribution of the energy release modes I, II, and III of the delaminated laminates with two stiffeners were analyzed by the present method." @default.
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- W2019400294 date "2011-10-01" @default.
- W2019400294 modified "2023-09-24" @default.
- W2019400294 title "State Space Approach for Energy Release Rate Analysis of Delaminated Laminates with Stiffeners" @default.
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- W2019400294 doi "https://doi.org/10.2514/1.j050610" @default.
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