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Optimization of modular Truss-Z by minimum-mass design under equivalent stress constraint

机译:在等效应力约束下通过最小质量设计优化模块化Truss-Z

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摘要

Truss-Z (TZ) is an Extremely Modular System (EMS). Such systems allow for creation of structurally sound freeform structures, are comprised of as few types of modules as possible, and are not constrained by a regular tessellation of space. Their objective is to create spatial structures in given environments connecting given terminals without self-intersections and obstacle-intersections. TZ is a skeletal modular system for creating free-form pedestrian ramps and ramp networks. The previous research on TZ focused on global discrete geometric optimization of the spatial configuration of modules. This paper reports on the first attempts at structural optimization of the module for a single-branch TZ. The internal topology and the sizing of module beams are subject to optimization. An important challenge is that the module is to be universal: it must be designed for the worst case scenario, as defined by the module position within a TZ branch and the geometric configuration of the branch itself. There are four variations of each module, and the number of unique TZ configurations grows exponentially with the branch length. The aim is to obtain minimum-mass modules with the von Mises equivalent stress constrained under certain design load. The resulting modules are further evaluated also in terms of the typical structural criterion of compliance.
机译:Truss-Z(TZ)是一种极端模块化系统(EMS)。这样的系统允许创建结构合理的自由形式结构,由尽可能少的模块类型组成,并且不受规则的空间细分的约束。他们的目标是在给定环境中创建连接给定终端而没有自相交和障碍物相交的空间结构。 TZ是一个骨架模块化系统,用于创建自由形式的行人坡道和坡道网络。先前对TZ的研究集中于模块空间配置的全局离散几何优化。本文报告了单分支TZ的模块结构优化的首次尝试。内部拓扑和模块梁的大小均需优化。一个重要的挑战是该模块要通用:必须根据TZ分支中的模块位置以及分支本身的几何配置定义的最坏情况进行设计。每个模块有四个变体,唯一TZ配置的数量随分支长度呈指数增长。目的是获得在一定设计载荷下受von Mises等效应力约束的最小质量模块。生成的模块还将根据典型的合规性结构标准进行评估。

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