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DESIGN OF STRUCTURAL PARTS BY USING MODERN SIMULATION PROCEDURES

机译:使用现代仿真程序设计结构件

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This paper discusses modern simulation procedures used in design of structural load-carrying parts that are based on the Finite Element Method. The specific focus of the paper is the topology optimization usage within the context of two currently very interesting topics: configuration and optimization of lattice structures and modern additive manufacturing technologies. Both types of structures are presented together with their limits as well as their potentials for optimization. The discussion is illustrated by two numerical examples and experimentally obtained results. In the examples, a simple beam with three points load is optimized regarding to the different topology setups. The stress fields for different loaded optimized versions of structures are presented and the solutions are discussed and compared to the results of the experiment. A standalone topology optimization software CAESS ProTOp is used for the domain configuration and topology optimization in both examples.
机译:本文讨论了基于有限元法的结构承载零件设计中使用的现代模拟程序。本文的具体焦点是在两个目前非常有趣的主题的背景下的拓扑优化使用:格子结构的配置和优化和现代添加剂制造技术。两种类型的结构都与其限制一起呈现以及它们的优化潜力。讨论由两个数值例子和实验获得的结果说明。在示例中,有三个点负载的简单光束是关于不同拓扑设置的优化。提出了不同负载优化版本的结构的应力场,并讨论并将解决方案与实验结果进行了讨论。独立拓扑优化软件PEESS PROTP用于两个示例中的域配置和拓扑优化。

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