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Data-driven design approach to hierarchical hybrid structures with multiple lattice configurations

机译:具有多个晶格配置的数据驱动设计方法,具有多个晶格配置的分层混合结构

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摘要

This work presents a data-driven design approach to hierarchical hybrid structures with multiple lattice configurations. Two design variables are considered for each lattice substructure, one discrete variable indicating the configuration type and the other continuous density variable determining the geometrical feature size. For each lattice configuration, a series of similar lattice substructures are sampled by varying the density variable and a corresponding data-driven interpolation model is built for an explicit representation of the constitutive behavior. To reduce the model complexity, substructuring by means of static condensation is performed on the sampled lattice substructures. To achieve hybrid structure with multiple lattice configurations, a multi-material interpolation model is adopted by synthesizing the data-driven interpolation models and the discrete lattice configuration variables. The proposed approach has proved capable of generating hierarchically strongly coupled designs, which therefore allows for direct manufacturing with no post-processing requirement as required for homogenization-based designs due to the assumption on scales separation.
机译:这项工作介绍了具有多个晶格配置的分层混合结构的数据驱动设计方法。每个晶格子结构考虑两个设计变量,一个离散变量,指示配置类型和其他连续密度变量确定几何特征大小。对于每个晶格配置,通过改变密度变量来采样一系列类似的晶格子结构,并且建立了相应的数据驱动插值模型以显式表示本构行为。为了降低模型复杂性,对采样的格子子结构执行通过静态缩合的子结构。为了实现具有多个晶格配置的混合结构,通过合成数据驱动的插值模型和离散晶格配置变量来采用多材料插值模型。已经证明,该方法能够产生分层强耦合的设计,因此由于尺度分离的假设,因此允许直接制造没有根据基于均化的设计所需的后处理要求。

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