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An incremental form interpolation model together with the Smolyak method for multi-material topology optimization

机译:增量形式插值模型与SMOLYAK方法进行多材料拓扑优化

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摘要

An incremental form interpolation model integrated with the anisotropic Smolyak method and the Non-Uniform Rational B-Spline (NURBS) method is proposed for multiple material topology optimization. Only a single category of design variables is exploited to characterize the material properties for any number of material types and the Smolyak method embedded within the NURBS method is devised to represent the topology density field while keeping the number of polynomials to a minimum, leading to a significant reduction in the number of design variables. An arbitrary number of volume and/or mass constraints can be implemented with the introduction of the characterization function to indicate the existence information for each material. Finally, the effectiveness of the proposed methodology is illustrated by three numerical examples.
机译:提出了一种与各向异性SMOLAK方法集成的增量形式插值模型和非均匀RATIONATION B样条(NURBS)方法,用于多重材料拓扑优化。仅利用单一类别的设计变量来表征任何数量材料类型的材料属性,并且设计在NURBS方法中的SMOLYAK方法被设计为代表拓扑密度字段,同时将多项式的数量保持在最小,导致a设计变量数量显着减少。可以通过引入表征函数来实现任意数量的体积和/或质量约束来指示每个材料的存在信息。最后,通过三个数值例子说明了所提出的方法的有效性。

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