Ciarlet, P.G. and Destuynder, P.: A justification of the two-dimensional linear plate model, Journal de Mecanique18 (2) (1979) pp. 315-344.
2.
Gilbert, R.P. and Schneider, M.: A boundary-layer theory for the anisotropic plate, Applied Math. Inst. Tech. Report No. 71A, University of Delaware .
3.
Gilbert, R.P. and Schneider, M.: A justification of the two-dimensional model for the orthotropic plate (to appear).
4.
Friedrichs, K.O. and Dressler , R.F.: A boundary-layer theory for elastic plates , Comm. Pure Applied Math., (1) (1961), 1-33.
5.
Lackman, L.M. and Pagano, N.J.: On the prevention of delamination in composite laminates in A1AA, ASME, SAE 15th Structures, Structural Dynamics and Materials Conference paper No. 74-355.
6.
Lekhnitskii, S.G.: Anisotropic Plates, 2nd Edition, Gordon and Breach, New York (1968 ).
7.
Pagano, N.J. : On the calculation of interlaminar normal stress in composite laminate, J. Composite Materials, 8 (1974) pp. 65-82.
8.
Pipes, R.B. and Pagano, N.J.: Interlaminar stresses in composite laminates under uniform axial extensions , J. Composite Materials, 4 (1970) p 538-.
9.
Puppo, A.H., and Evensen, H.A.: Interlaminar shear in laminated composites under generalized plane stress , J. Composite Materials4 (1970) pp. 204-220.
10.
Tang, S.: A boundary layer theory - Part I: Laminated Composites in Plane Stress . J. Composite Materials9 (1975) pp. 33- 41, Part II: Extension of laminated finate strip , (same journal issue) pp. 42-52.