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Design of truss-like cellular structures using relative density mapping method

机译:相对密度映射法设计桁架状蜂窝结构

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摘要

Truss-like cellular structures have great potential to be applied in light-weight design applications. However, determining the appropriate designs for these truss-like cellular structures can be a challenging task due to their geometric complexities and prohibitive computational costs in the design process. In this research, a new design method is proposed which can drastically reduce computational costs and design parameters, while maintaining the performance of the targeted outcome. Furthermore, the proposed method facilitates cellular structure designs that can handle multiple loading conditions. The proposed method utilizes the relative density information obtained from a solid topology optimization to automatically determine the diameter of each individual strut in the structure, which collectively represent the set of design variables. This allows the method to produce lattice structures that can perform reliably under multiple loading conditions and also reduce the computational cost associated with the design of these structures. The efficacy of the developed method is compared to existing methods including the size matching and scaling method that combines solid-body analysis and a predefined unit-cell library.
机译:桁架状的蜂窝结构在轻型设计应用中具有巨大的潜力。但是,由于这些几何形状的复杂性以及在设计过程中的计算成本过高,为这些桁架状单元结构确定合适的设计可能是一项艰巨的任务。在这项研究中,提出了一种新的设计方法,该方法可以在保持目标结果的性能的同时,大大降低计算成本和设计参数。此外,所提出的方法有助于可处理多种载荷条件的蜂窝结构设计。所提出的方法利用从实体拓扑优化中获得的相对密度信息来自动确定结构中每个单独支杆的直径,这些直径共同代表了设计变量集。这允许该方法产生可以在多种载荷条件下可靠地执行的晶格结构,并且还减少了与这些结构的设计相关的计算成本。将开发方法的功效与现有方法进行了比较,现有方法包括结合了固体分析和预定义单位细胞库的尺寸匹配和缩放方法。

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