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Design of variable-stiffness laminates using lamination parameters

机译:使用层压参数设计可变刚度层压板

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Benefits of the directional properties of fiber reinforced composites could be fully utilized by proper placement of the fibers in their optimal spatial orientations. This paper investigates the optimal design of fiber reinforced rectangular composite plates for minimum compliance. The classical minimum compliance design problem is formulated in the lamination parameters space. The use of lamination parameters guarantees that the obtained solutions represent the best possible performance of the structure since there are no restrictions on the possible lamination sequence. Two types of designs are considered: constant-stiffness designs where the lamination parameters are constant over the plate domain, and variable-stiffness designs where the laminations parameters are allowed to vary in a continuous manner over the domain. The optimality conditions for the problem are reformulated as a local design rule. The local design rule assumes the form of a convex optimization problem and is solved using a feasible sequential quadratic programming. Optimal designs for both constant and variable-stiffness plates are obtained. It is shown that significant improvements in stiffness can be gained by using variable-stiffness design.
机译:纤维增强复合材料的方向性优势可以通过将纤维正确放置在最佳空间取向中而得到充分利用。本文研究了纤维增强矩形复合材料板的最佳设计,以最大程度地降低柔韧性。经典最小顺应性设计问题是在层合参数空间中提出的。层压参数的使用保证了所获得的解决方案代表了结构的最佳可能性能,因为对可能的层压顺序没有限制。考虑两种类型的设计:恒定刚度设计,其中层压参数在平板区域内是恒定的;以及可变刚度设计,其中层压参数允许在区域上以连续的方式变化。将问题的最佳条件重新制定为本地设计规则。局部设计规则采用凸优化问题的形式,并使用可行的顺序二次规划求解。获得了恒定和可变刚度板的最佳设计。结果表明,使用可变刚度设计可以显着提高刚度。

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