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受生物启发的、快速响应的磁可调刚度超材料

Bioinspired, Rapidly Responsive Magnetically Tunable Stiffness Metamaterials.

作者信息

Chung Gooyoon, Quang Huy Le, Kim Jung Hyun, Yoo Jeongmin, Seol Seung Kwon, Park Yoonseok

机构信息

Department of Materials Science and Engineering, Kyung Hee University, Yongin, 17104, Republic of Korea.

Smart 3D Printing Research Team, Korea Electrotechnology Research Institute, Changwon, 51543, Republic of Korea.

出版信息

Adv Mater. 2025 Aug;37(34):e2505880. doi: 10.1002/adma.202505880. Epub 2025 May 27.

Abstract

Programmable mechanical materials often require dynamic stiffness adaptability, but existing solutions face challenges with slow response times and limited precision. This study introduces magnetically tunable stiffness metamaterials (MTSM) that utilize a bioinspired ternary programming framework to achieve rapid and precise stiffness modulation. Drawing inspiration from biological sarcomeres, which naturally adjust stiffness through structural changes, the MTSM design employs direct ink writing, a 4D printing method, to incorporate neodymium microparticles and a styrene-isoprene-styrene polymer matrix. This approach enables the metamaterial to transition between three distinct stiffness states-soft, moderate, and stiff-through structural deformation controlled by magnetic torque. Integration of MTSM into a 3D array further enhances its versatility, allowing multi-layer stiffness adjustments under magnetic fields. The MTSM array achieves an impressive 390 percent stiffness modulation range and rapid changes in response to an external magnetic field, surpassing the limitations of prior designs. These findings emphasize the potential of ternary programming in MTSM as a foundation for creating next-generation programmable mechanical systems capable of rapid and efficient adaptability.

摘要

可编程机械材料通常需要动态刚度适应性,但现有解决方案在响应时间慢和精度有限方面面临挑战。本研究引入了磁可调刚度超材料(MTSM),它利用受生物启发的三元编程框架来实现快速精确的刚度调制。从通过结构变化自然调节刚度的生物肌节中汲取灵感,MTSM设计采用直接墨水书写(一种4D打印方法),将钕微粒和苯乙烯-异戊二烯-苯乙烯聚合物基体结合起来。这种方法使超材料能够通过由磁转矩控制的结构变形在三种不同的刚度状态——软、中、硬之间转变。将MTSM集成到3D阵列中进一步增强了其通用性,允许在磁场下进行多层刚度调整。MTSM阵列实现了令人印象深刻的390%的刚度调制范围,并能对外加磁场做出快速变化,超越了先前设计的局限性。这些发现强调了MTSM中三元编程作为创建能够快速高效适应的下一代可编程机械系统基础的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/027c/12392855/ffd84097aa68/ADMA-37-2505880-g006.jpg

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