Title of article :
Optimisation of hybrid high-modulus/high-strength carbon fibre reinforced plastic composite drive shafts
Author/Authors :
O. Montagnier، نويسنده , , Ch. Hochard، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2013
Pages :
13
From page :
88
To page :
100
Abstract :
This study deals with the optimisation of hybrid composite drive shafts operating at subcritical or supercritical speeds, using a genetic algorithm. A formulation for the flexural vibrations of a composite drive shaft mounted on viscoelastic supports including shear effects is developed. In particular, an analytic stability criterion is developed to ensure the integrity of the system in the supercritical regime. Then it is shown that the torsional strength can be computed with the maximum stress criterion. A shell method is developed for computing drive shaft torsional buckling. The optimisation of a helicopter tail rotor driveline is then performed. In particular, original hybrid shafts consisting of high-modulus and high-strength carbon fibre reinforced epoxy plies were studied. The solutions obtained using the method presented here made it possible to greatly decrease the number of shafts and the weight of the driveline under subcritical conditions, and even more under supercritical conditions. This study yielded some general rules for designing an optimum composite shaft without any need for optimisation algorithms.
Keywords :
Drive shaft , Optimisation , Hybrid carbon fibre reinforced plastic
Journal title :
Materials and Design
Serial Year :
2013
Journal title :
Materials and Design
Record number :
1072887
Link To Document :
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