Semantic Scholar Open Access 2022 21 sitasi

3D Printed Acoustically Programmable Soft Microactuators

Murat Kaynak A. Dolev M. Sakar

Abstrak

The concept of creating all-mechanical soft microrobotic systems has great potential to address outstanding challenges in biomedical applications, and introduce more sustainable and multifunctional products. To this end, magnetic fields and light have been extensively studied as potential energy sources. On the other hand, coupling the response of materials to pressure waves has been overlooked despite the abundant use of acoustics in nature and engineering solutions. In this study, we show that programmed commands can be contained on 3D nanoprinted polymer systems with the introduction of selectively excited air bubbles and rationally designed compliant mechanisms. A repertoire of micromechanical systems is engineered using experimentally validated computational models that consider the effects of primary and secondary pressure fields on entrapped air bubbles and the surrounding fluid. Coupling the dynamics of bubble oscillators reveals rich acoustofluidic interactions that can be programmed in space and time. We prescribe kinematics by harnessing the forces generated through these interactions to deform structural elements, which can be remotely reconfigured on demand with the incorporation of mechanical switches. These basic actuation and analog control modules will serve as the building blocks for the development of a novel class of micromechanical systems powered and programmed by acoustic signals.

Topik & Kata Kunci

Penulis (3)

M

Murat Kaynak

A

A. Dolev

M

M. Sakar

Format Sitasi

Kaynak, M., Dolev, A., Sakar, M. (2022). 3D Printed Acoustically Programmable Soft Microactuators. https://doi.org/10.1089/soro.2021.0193

Akses Cepat

Lihat di Sumber doi.org/10.1089/soro.2021.0193
Informasi Jurnal
Tahun Terbit
2022
Bahasa
en
Total Sitasi
21×
Sumber Database
Semantic Scholar
DOI
10.1089/soro.2021.0193
Akses
Open Access ✓