超材料
双稳态
材料科学
尺寸标注
弹簧(装置)
有限元法
储能
工作(物理)
复合材料
机械工程
结构工程
光电子学
工程类
物理
功率(物理)
量子力学
航空航天工程
作者
Konstantin Kappe,Jan P Wahl,Florian Gutmann,Silviya M. Boyadzhieva,Klaus Hoschke,Sarah C. L. Fischer
出处
期刊:Materials
[MDPI AG]
日期:2022-08-17
卷期号:15 (16): 5644-5644
被引量:8
摘要
In the present work, a novel concept for metallic metamaterials is presented, motivated by the creation of next-generation reversible damping systems that can be exposed to various environmental conditions. For this purpose, a unit cell is designed that consists of a parallel arrangement of a spring and snap-fit mechanism. The combination of the two concepts enables damping properties one order of magnitude higher than those of the constituting metal material. The spring element stores elastic energy while the snap-fit allows to absorb and dissipate energy and to reach a second stable state. Different configurations of single unit cells and connected cell assemblies are manufactured by laser powder bed fusion using Ti6Al4V powder. The dimensioning is supported by finite element modelling and the characteristic properties of the unit cells are studied in cyclic compression experiments. The metamaterial exhibits damping properties in the range of polymeric foams while retaining its higher environmental resistance. By variation of selected geometrical parameters, either bistable or self-recovering characteristics are achieved. Therefore, a metamaterial as an assembly of the described unit cells could offer a high potential as a structural element in future damping or energy storage systems operating at elevated temperatures and extreme environmental conditions.
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