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增材制造结构中的刚度与密度关系:一种基于维里定理的方法。

Stiffness and Density Relationships in Additively Manufactured Structures: A Virial Theorem-Based Approach.

作者信息

Stejskal Tomáš, Maláková Silvia, Lascsáková Marcela, Frankovský Peter

机构信息

Department of Engineeringfor Design of Machines and Transport Equipment, Faculty of Mechanical Engineering, Technical University of Kosice, Letna No. 9, 042 00 Kosice, Slovakia.

Department of Applied Mathematics and Informatics, Faculty of Mechanical Engineering, Technical University of Kosice, Letna No. 9, 042 00 Kosice, Slovakia.

出版信息

Materials (Basel). 2025 Jul 22;18(15):3432. doi: 10.3390/ma18153432.

Abstract

Topological optimization uses two main optimization conditions aimed at achieving the maximum stiffness at minimum weight of the loaded object, while not exceeding the allowable stress. This process naturally creates complex structures with varying degrees of density. There is a certain regularity between the density of the structure and stiffness, with the optimal density being related to the golden ratio. This study contributes to materials modeling and their characterization by introducing a mathematical theory related to the virial theorem as a predictive framework for understanding stiffness-density relationships in additively manufactured structures. The definition of virial stability and the methodology for deriving this stability from the kinetic and potential components of a random signal are introduced. The proposed virial-based model offers a generalizable tool for materials characterization, applicable not only to topological optimization but also to broader areas of materials science and advanced manufacturing.

摘要

拓扑优化使用两个主要的优化条件,旨在使加载物体在最小重量下实现最大刚度,同时不超过允许应力。这个过程自然会产生具有不同密度程度的复杂结构。结构密度与刚度之间存在一定的规律性,最优密度与黄金比例相关。本研究通过引入与维里定理相关的数学理论,作为理解增材制造结构中刚度 - 密度关系的预测框架,为材料建模及其表征做出了贡献。介绍了维里稳定性的定义以及从随机信号的动能和势能分量推导这种稳定性的方法。所提出的基于维里的模型为材料表征提供了一种可推广的工具,不仅适用于拓扑优化,还适用于材料科学和先进制造的更广泛领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7430/12346955/8b0d6da96551/materials-18-03432-g001.jpg

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