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Topology Optimisation of Composites Containing Base Materials of Distinct Poisson's Ratios

机译:含有不同泊松比基础材料的复合材料的拓扑优化

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From recent studies on natural composites such as nacre and bone, it has shown that the mechanical properties of the composite are significantly affected by the Poisson's ratio of each constituent phase. In some cases it is found that when the Poisson's ratio approaches the incompressibility limit, the stiffness of the composite in one or more directions can increase dramatically, in some cases by two or more orders of magnitude than the softer phase. In this paper we investigate designing the composite of maximum stiffness by a topology optimisation approach. The method used is based on the bi-directional evolutionary structural optimisation (BESO). The Optimisation problem is formulated and it is solved by a searching algorithm based on the sensitivity analysis. The effect of interpolation function in the sensitivity analysis is studied. Examples of different combinations of Poisson's ratios are presented. The stiffness is found to increase from its base value. In the case of one phase having negative Poisson's ratio, the increase is very significant. It is concluded that the proposed method is effective in optimising the stiffness of this class of composite.
机译:从最近的天然复合材料如露珠和骨骼的研究,表明复合材料的机械性能受到各组成阶段的泊松比的显着影响。在某些情况下,发现当泊松的比率接近不压制性极限时,在一个或多个方向上的复合材料的刚度可以大幅增加,在某些情况下,比更柔软的相位为两个或更多个数量级。在本文中,我们通过拓扑优化方法调查了最大刚度的复合材料。使用的方法基于双向进化结构优化(BESO)。制定了优化问题,并通过基于灵敏度分析的搜索算法来解决。研究了内插功能在敏感性分析中的影响。提出了泊松比的不同组合的例子。发现刚度从其基准值增加。在具有负泊松比的一相的情况下,增加是非常显着的。得出结论,该方法在优化这类复合材料的刚度方面是有效的。

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