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Optimizing a fin ray for stiffness

机译:优化鳍片的刚度

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摘要

We optimize the elastic constants of the supporting structure in flexible fish fins-the fin ray-to obtain the least deflection under loading. We first solve the problem numerically for rays with shear layers of uniform thickness. The optimal distributions of bending and shear moduli are nonzero on disjoint regions. The numerical solution suggests the form of the analytical solution, which we obtain using calculus of variations on two intervals with continuity conditions at the interface. The deflection of the optimal ray is less than half that of the uniform ray. When the shear layer thickness is allowed to vary, we find a tapered thickness distribution which gives zero deflection for a given positive loading.
机译:我们优化了挠性鱼鳍中支撑结构的弹性常数-鳍射线,以在负载下获得最小的挠度。我们首先用数值方法解决厚度均匀的剪切层射线的问题。在不相交的区域,弯曲模量和剪切模量的最佳分布不为零。数值解表明了解析解的形式,这是我们使用两个区间上具有连续性条件的间隔的微积分来获得的。最佳射线的偏转小于均匀射线的偏转的一半。当剪切层的厚度允许变化时,我们发现了一个渐缩的厚度分布,对于给定的正载荷,该分布给出了零挠度。

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