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- W2028509076 abstract "The finite element method is used to analyze the thermostructural behavior of rotationally symmetric multidirectional fibrous composite structures. The analysis covers, in a single envelope, both heat transfer and the resulting elastic response associated with an anisotropic axisymmetric solid of revolution. The steady state heat transfer analysis includes all the normal modes, namely conduction, convection and radiation, and also the presence of external fluxes and internal heat generation sources. The multidirectional material model is based on a rotationally symmetric unit cell containing fibers oriented in three orthogonal planes such that they maintain material axisymmetry. Existing micromechanical theories and conventional transformation rules are employed to constitutive relations for proposed model. In the example analyses, an uncooled convergent-divergent nozzle is analyzed to project the advantages of a few advanced composites as thermostructural materials of practical importance." @default.
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- W2028509076 title "Thermostructural analysis of rotationally symmetric multidirectional fibrous composite structures" @default.
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- W2028509076 doi "https://doi.org/10.1016/s0045-7949(97)00038-2" @default.
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