共 19 条
[1]
Lee D.G., Kim H.S., Kim J.W., Kim J.K., Design and manufacture of an automotive hybrid aluminum/composite drive shaft, Composite Structures, 63, 1, pp. 87-99, (2004)
[2]
Khalid Y.A., Mutasher S.A., Sahari B.B., Hamouda A.M.S., Bending fatigue behavior of hybrid aluminum/composite drive shafts, Materials and Design, 28, 1, pp. 329-334, (2007)
[3]
Mutasher S.A., Prediction of the torsional strength of the hybrid aluminum/composite drive shaft, Materials and Design, 30, 2, pp. 215-220, (2009)
[4]
Talib A.R.A., Ali A., Badie M.A., Lah N.A.C., Golestaneh A.F., Developing a hybrid, carbon/glass fiber-reinforced, epoxy composite automotive drive shaft, Materials and Design, 31, 1, pp. 514-521, (2010)
[5]
Badie M.A., Mahdi E., Hamouda A.M.S., An investigation into hybrid carbon/glass fiber reinforced epoxy composite automotive drive shaft, Materials and Design, 32, 3, pp. 1485-1500, (2011)
[6]
Sevkat E., Tumer H., Residual torsional properties of composite shafts subjected to impact loadings, Materials and Design, 51, pp. 956-967, (2013)
[7]
Bauchau O.A., Krafchack T.M., Hayes J.F., Torsional buckling analysis and damage tolerance of graphite/epoxy shafts, Journal of Composite Materials, 22, 3, pp. 258-270, (1988)
[8]
Bert C.W., Kim C.D., Analysis of buckling of hollow laminated composite drive shafts, Composites Science and Technology, 53, 3, pp. 343-351, (1995)
[9]
Shokrieh M.M., Hasani A., Lessard L.B., Shear buckling of a composite drive shaft under torsion, Composite Structures, 64, 1, pp. 63-69, (2004)
[10]
Lee C.S., Hwang W., Park H.C., Han K.S., Failure of carbon/epoxy composite tubes under combined axial and torsional loading 2. Fracture morphology and failure mechanism, Composites Science and Technology, 59, 12, pp. 1789-1804, (1999)