Spatially patterned stiffness variation in a light-triggered jumper for symmetry breaking and high snap-through efficiency

  • Hahm, Min Jeong
  • Cho, Woongbi
  • Jeon, Jisoo
  • Kim, Hak-Rin
  • Zhang, Teng
  • ... Wie, Jeong Jae
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초록

The nonlinear strain response of soft material-based snap-through systems enables amplified and accelerated force output. However, efficiency of snap-through energy release is challenging to improve because of the inherent trade-off between initial curvature and stiffness. Here, spatial programming of stiffness variation in the azobenzene-functionalized liquid-crystalline polymer (Azo-LCP) addresses this limitation and achieves efficient photomechanical jumping. Introduction of stiffness mismatch induced localized curvature, which preserved the initial curvature and simultaneously enhanced photomechanical strain responsivity. By programming for symmetry of stiffness variation, we achieved directional or vertical jumping via strategic placement of the rigid region, with corresponding stress accumulation behaviors corroborated by finite element simulations. Integration of patterned stiffness variation with geometric asymmetry enabled both vertical and horizontal jumping within a single structure, without compromising performance. This dual-mode jumper also demonstrated sequential and consecutive jumps under continuous light exposure.

키워드

AzobenzeneEfficiencyStiffnessEnergy ReleaseForce OutputsInitial CurvatureMaterial-basedNonlinear StrainSnap-throughSofter MaterialsStiffness VariationsStrain ResponseSymmetry BreakingsEconomic And Social EffectsAzobenzenePolymerArticleControlled StudyFinite Element AnalysisForceJumpingLightLight ExposureRigidityCRYSTAL POLYMER NETWORKSROBOTDRIVENMODEL
제목
Spatially patterned stiffness variation in a light-triggered jumper for symmetry breaking and high snap-through efficiency
저자
Hahm, Min JeongCho, WoongbiJeon, JisooKim, Hak-RinZhang, TengWie, Jeong Jae
DOI
10.1126/sciadv.adx8301
발행일
2025-08
유형
Article
저널명
Science advances
11
35
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1 ~ 13