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Basic design rules of unit cells for additive manufactured lattice structures

机译:适用于加性晶格结构的单位细胞的基本设计规则

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Additive Manufacturing is a cutting-edge technology for the production of complex, functional, filigree and topology-optimized components. The growing demand for high-tech light-weight structures increasingly requires support in the design process of fine lattice structures. However, due to the high information density regarding lattice structures, which is based on many scientific research studies, the effective design of a specifically product-oriented lattice structure is made more difficult. The focus of this work is to provide a user-friendly information basis for the user or constructor. Therefore, this scientific work serves to show the first basic rules for the design of simple unit cells for additive lattice structures. The approach is based on the evaluation of the limiting manufacturing factors, which can be reduced both to the minimum and maximum angle and length, as well as to the cross-sectional geometry. The analysis reveals a considerable extent to the cross-sectional geometries and their welding pattern in various quality forms. The results obtained form the basis for the development of complex functional unit cells. However, the construction of a unit cell is only a part of a lattice structure, so additional factors must be added to the unit cell assembly.
机译:添加剂制造是一种尖端技术,用于生产复杂,功能,丝器和拓扑优化组件。对高科技轻量级结构的需求日益增长的需求越来越需要在细晶格结构的设计过程中支持。然而,由于关于晶格结构的高信息密度,这是基于许多科研研究的晶格结构,因此更加困难的特异性产品导向的晶格结构的有效设计。这项工作的重点是为用户或构造函数提供用户友好的信息依据。因此,该科学工作有助于为添加晶格结构设计简单单元电池的第一基本规则。该方法基于对限制制造因子的评估,这可以减少到最小和最大角度和长度,以及横截面几何形状。该分析在各种质量形式中对横截面几何形状及其焊接图案揭示了相当大的程度。得到的结果形成复杂功能单位细胞的发育的基础。然而,单元电池的构造仅是晶格结构的一部分,因此必须将附加因子添加到单元电池组件中。

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