Correlation between as-designed and as-built Young's modulus of cubic regular, cubic irregular, and trabecular cellular materials

Sunil Raghavendra, Alberto Molinari, Gianluca Zappini, Matteo Benedetti
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Abstract

Laser powder bed fusion process is widely used in producing cellular materials for various applications. However, there are limitations in the process to produce high-porosity cellular materials with accuracy. A deviation is observed between the as-built and the as-designed geometrical parameters that lead to variation in the obtained stiffness of the cellular material. This study investigates the behavior of three cell topologies, cubic regular, cubic irregular, and trabecular under as-designed and as-built configurations to study their Young's modulus variation. The obtained results are compared with the ideal predictions of the Gibson–Ashby law to evaluate the deviation. Eventually, a linear correlation was developed between the as-designed and as-built Young's modulus to generate a database to select the as-designed geometry/properties to obtain the required as-built geometry/properties.

Abstract Image

设计和建造的立方规则、立方不规则和小梁细胞材料的杨氏模量之间的关系
激光粉末床熔合工艺广泛应用于各种用途的蜂窝材料的生产。然而,在精确生产高孔隙度细胞材料的过程中存在局限性。在实际建造的几何参数和实际设计的几何参数之间观察到偏差,从而导致细胞材料获得的刚度发生变化。本研究研究了三种细胞拓扑结构,立方规则、立方不规则和小梁在设计和建造构型下的行为,以研究它们的杨氏模量变化。将所得结果与Gibson-Ashby定律的理想预测结果进行比较,以评估偏差。最终,在设计和实际建造的杨氏模量之间建立线性相关性,从而生成一个数据库,用于选择实际设计的几何形状/属性,以获得所需的实际建造的几何形状/属性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
5.30
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