Skip to main navigation Skip to search Skip to main content

Vibration mitigation in interlocking metasurfaces

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Interlocking metasurfaces (ILMs) are a new class of mechanical metamaterials with patterned surface features that enable joining of two adjacent bodies, serving as an alternative to welds, fasteners, or adhesives. While the strength of ILMs has been explored previously, it is also possible to envision ILMs that possess the ability to dampen vibration or tailor energy transmission across the interface. In this study, we explore the vibration transmission under frequency sweep and random excitation of three ILM designs. This is the first study to characterize the response of ILMs under vibration. We find that ILMs which are tightly coupled (e.g., small interference fit) behave as a linear system and depart only marginally from the behavior of a solid body. However, through strategic manipulation of the ILM topology, and in particular the fit clearances, we show that vibrations can be damped by over an order of magnitude. Design strategies to employ ILMs for vibration mitigation are developed using a first-order model.

Original languageEnglish
Article number113957
JournalMaterials and Design
Volume254
DOIs
StatePublished - Jun 2025
Externally publishedYes

Fingerprint

Dive into the research topics of 'Vibration mitigation in interlocking metasurfaces'. Together they form a unique fingerprint.

Cite this