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Optimal lay-up of hybrid composite beams, plates and shells using cellular genetic algorithm
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  • Optimal lay-up of hybrid composite beams, plates and shells using cellular genetic algorithm
  • Optimal lay-up of hybrid composite beams, plates and shells using cellular genetic algorithm
저자명
Rajasekaran. S.,Nalinaa. K.,Greeshma. S.,Poornima. N.S.,Kumar. V. Vinoop
간행물명
Structural engineering and mechanics : An international journal
권/호정보
2003년|16권 5호|pp.557-580 (24 pages)
발행정보
테크노프레스
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

Laminated composite structures find wide range of applications in many branches of technology. They are much suited for weight sensitive structures (like aircraft) where thinner and lighter members made of advanced fiber reinforced composite materials are used. The orientations of fiber direction in layers and number of layers and the thickness of the layers as well as material of composites play a major role in determining the strength and stiffness. Thus the basic design problem is to determine the optimum stacking sequence in terms of laminate thickness, material and fiber orientation. In this paper, a new optimization technique called Cellular Automata (CA) has been combined with Genetic Algorithm (GA) to develop a different search and optimization algorithm, known as Cellular Genetic Algorithm (CGA), which considers the laminate thickness, angle of fiber orientation and the fiber material as discrete variables. This CGA has been successfully applied to obtain the optimal fiber orientation, thickness and material lay-up for multi-layered composite hybrid beams plates and shells subjected to static buckling and dynamic constraints.