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March 7, 2026Biomimetics2 citationsOpen Access

Soft Active Polymers for Biomimetic Shape Morphing Wings

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CYChao YuanCLChangyue LiuZWZhijian Wang

Key Points

  • The aim is to explore how soft active materials can improve the efficiency of morphing wings used in aerospace applications.
  • Evaluated shape memory polymers, dielectric elastomers, and liquid crystal elastomers.
  • Analyzed actuation mechanisms of each material type.
  • Compared performance metrics including load-bearing capacity and energy efficiency.
  • Soft active materials can significantly reduce weight compared to traditional mechanisms.
  • SMPs, DEAs, and LCEs have different advantages impacting response bandwidth and efficiency.
  • Structural-material synergy is vital for optimizing performance in aerial platforms.

Abstract

In nature, avian species achieve remarkable aerodynamic efficiency by seamlessly coordinating flexible soft tissues to create continuous, adaptive wing surfaces, significantly minimizing drag and eliminating parasitic turbulence. Traditional shape morphing systems rely on bulky mechanical linkages that add excessive weight, often offsetting aerodynamic gains. The integration of soft active materials has emerged as a transformative solution for weight-efficient, seamless actuation. However, a significant disconnect remains between laboratory-scale research and practical aerospace implementation. This perspective evaluates three prominent classes of soft active materials, shape memory polymers (SMPs), dielectric elastomers (DEAs), and liquid crystal elastomers (LCEs), analyzing their actuation mechanisms and comparing their performance in load-bearing, response bandwidth, and energy efficiency. By addressing the necessity of structural-material synergy, we discuss the potential solution for bridging the gap between material synthesis and system-level flight performance to enable the successful deployment of soft active materials in future aerial platforms.

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Cite This Study

Yuan et al. (2026) studied this question.

synapsesocial.com/papers/69abc1f65af8044f7a4eb0b0https://doi.org/10.3390/biomimetics11030189
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