NASA NTRS · 19910047235
Stacking-sequence optimization for buckling of laminated plates by integer programming
Abstract
Integer-programming formulations for the design of symmetric and balanced laminated plates under biaxial compression are presented. Both maximization of buckling load for given total thickness, and the minimization of total thickness subject to a buckling constraint are formulated. The design variables that define the stacking sequence of the laminate are zero-one integers. It is shown that the formulation results in a linear optimization problem that can be solved on readily aviable software. Constraints on the stacking sequence such as a limit on the number of contiguous plies of the same orientation and limits on in-plane stiffnesses are easily accommodated. Examples are presented for graphite-epoxy plates under uniaxial and biaxial compression using a commercial software package based on the branch-and-bound algorithm.
Keep this discovery
Explore connections, maps & timelines
Haftka, Raphael T., Walsh, Joanne L.. 1991-01-01. Stacking-sequence optimization for buckling of laminated plates by integer programming. https://ntrs.nasa.gov/citations/19910047235
Cite the original work for its findings. Save a collection to share your selection of sources.