de la Rosa Sergio, Mayuet Pedro F, Méndez Salgueiro José Ramón, Rodríguez-Parada Lucía
Department of Mechanical Engineering and Industrial Design, Faculty Engineering, University of Cadiz, Puerto Real, 11519 Cádiz, Spain.
Department of Civil Engineering, University College of Industrial Design, University of A Coruña, Ferrol, 15403 A Coruña, Spain.
Polymers (Basel). 2021 Dec 11;13(24):4341. doi: 10.3390/polym13244341.
This work focuses on evaluating and establishing the relationship of the influence of geometrical and manufacturing parameters in stiffness of additively manufactured TPU lattice structures. The contribution of this work resides in the creation of a methodology that focuses on characterizing the behavior of elastic lattice structures. Likewise, resides in the possibility of using the statistical treatment of results as a guide to find favorable possibilities within the range of parameters studied and to predict the behavior of the structures. In order to characterize their behavior, different types of specimens were designed and tested by finite element simulation of a compression process using Computer Aided Engineering (CAE) tools. The tests showed that the stiffness depends on the topology of the cells of the lattice structure. For structures with different cell topologies, it has been possible to obtain an increase in the reaction force against compression from 24.7 N to 397 N for the same manufacturing conditions. It was shown that other parameters with a defined influence on the stiffness of the structure were the temperature and the unit size of the cells, all due to the development of fusion mechanisms and the variation in the volume of material used, respectively.
这项工作着重于评估和建立增材制造的热塑性聚氨酯(TPU)晶格结构的几何和制造参数对其刚度影响之间的关系。这项工作的贡献在于创建了一种专注于表征弹性晶格结构行为的方法。同样,在于能够将结果的统计处理用作指导,以便在研究的参数范围内找到有利的可能性并预测结构的行为。为了表征它们的行为,使用计算机辅助工程(CAE)工具通过压缩过程的有限元模拟设计并测试了不同类型的试样。测试表明,刚度取决于晶格结构单元的拓扑结构。对于具有不同单元拓扑结构的结构,在相同制造条件下,有可能使抗压缩的反作用力从24.7 N增加到397 N。结果表明,对结构刚度有明确影响的其他参数是温度和单元的单位尺寸,这分别是由于融合机制的发展和所用材料体积的变化所致。