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首页> 外文期刊>Advances in Mechanical Engineering >Generative design method for lattice structure with hollow struts of variable wall thickness:
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Generative design method for lattice structure with hollow struts of variable wall thickness:

机译:具有可变壁厚的空心支柱的晶格结构的生成设计方法:

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摘要

Additive manufacturing technology can make products of arbitrary shapes, greatly expanding the design space of lattice structures. Compared with traditional solid lattice structures, the lattice structures with hollow struts have higher flexural strength, which arouses interests of designers recently. However, owing to the more complex shapes of structures, the model generation and design are facing more challenges. In this article, a novel generative design method for the creation of lattice structures with hollow struts is proposed. This method consists of three stages: initialization, analysis, and optimization. First of all, a ground structure is generated automatically based on initial conditions. Then, the finite element analysis is used to get the stress and coordinate information of finite element nodes as well as deformation information of the ground structure. At last, a rapid optimization method is presented based on the idea of mapping the strut equivalent stress to the strut wall thickness to...
机译:增材制造技术可以制造出任意形状的产品,从而大大扩展了晶格结构的设计空间。与传统的实心格子结构相比,带有空心支柱的格子结构具有更高的抗弯强度,这引起了设计者的兴趣。但是,由于结构的形状更加复杂,模型的生成和设计面临更多的挑战。在本文中,提出了一种新颖的生成设计方法来创建带有空心支柱的晶格结构。该方法包括三个阶段:初始化,分析和优化。首先,根据初始条件自动生成地面结构。然后,通过有限元分析获得有限元节点的应力和坐标信息以及地面结构的变形信息。最后,提出了一种基于将支杆等效应力映射到支杆壁厚为...的思想的快速优化方法。

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