Scientific Reports (Nov 2022)

Design, fabrication and application of self-spiraling pattern-driven 4D-printed actuator

  • Siyuan Zeng,
  • Yicong Gao,
  • Hao Qiu,
  • Junjun Xu,
  • Jianrong Tan

DOI
https://doi.org/10.1038/s41598-022-23425-0
Journal volume & issue
Vol. 12, no. 1
pp. 1 – 11

Abstract

Read online

Abstract Self-spiraling actuators are widely found in nature and have high research and actuator-application value in self-lock and self-assembly. Four-dimensional (4D) printing is a new generation additive manufacturing of smart materials and has shown great potential for the fabrication of multi-functional and customized structures. The microarchitecture design of a bilayer actuator could bring flexible and diversified self-spiraling behaviors and more possibilities for practical application by combing 4D printing. This work investigates the stimuli effects of fiber patterns and fabrication parameters on self-spiraling behaviors of the bilayer actuator via both experimental and theoretical methods. This work may potentially provide pattern design guidance for 4D-printed self-spiraling actuators to meet different application requirements.