An efficient, approximate analysis for calculating complete three-dimensional stress fields near regions of geometric discontinuities in laminated composite structures is presented. An approximate three-dimensional local analysis is used to determine the detailed local response due to far-field stresses obtained from a global two-dimensional analysis. The stress results from the global analysis are used as traction boundary conditions for the local analysis. A generalized plane deformation assumption is made in the local analysis to reduce the solution domain to two dimensions. This assumption allows out-of-plane deformation to occur. The local analysis is based on the principle of minimum complementary energy and uses statically admissible stress functions that have an assumed through-the-thickness distribution. Examples are presented to illustrate the accuracy and computational efficiency of the local analysis. Comparisons of the results of the present local analysis with the corresponding results obtained from a finite element analysis and from an elasticity solution are presented. These results indicate that the present local analysis predicts the stress field accurately. Computer execution-times are also presented. The demonstrated accuracy and computational efficiency of the analysis make it well suited for parametric and design studies.
[1]
Cheryl A. Rose,et al.
An approximate solution for interlaminar stresses in composite laminates
,
1993
.
[2]
Christos Kassapoglou,et al.
Efficient Stress Solutions at Skin Stiffener Interfaces of Composite Stiffened Panels
,
1992
.
[3]
N. J. Pagano,et al.
Stress fields in composite laminates
,
1978
.
[4]
David Cohen,et al.
Calculation of stresses in stiffened composite panels
,
1988
.
[5]
M. W. Hyer,et al.
Influence of geometric nonlinearities on skin-stiffener interface stresses
,
1992
.
[6]
Christos Kassapoglou,et al.
Calculation of stresses at skin-stiffener interfaces of composite stiffened panels under shear loads
,
1993
.
[7]
James H. Starnes,et al.
Postbuckling behavior of selected flat stiffened graphite-epoxy panels loaded in compression
,
1982
.