状的多曲线外超材料集成压缩扭曲和曲机制,以实现理想的能量吸收
Chen-Xu Liu1,2, Yizhi Zhang1, Xinghao Wang1
1Applied Mechanics Lab., Department of Engineering Mechanics, School of Aerospace, Tsinghua University, Beijing, China.
Nature communications
|December 12, 2025
概括
基拉尔多曲外 (CMCS) 超材料协同结合压缩扭曲和曲,以获得优异的能量吸收. 这些新型超材料提供了增强的冲击保护和可重复使用性,性能优于现有设计.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 纳米技术 纳米技术
背景情况:
- 使用压缩扭曲或曲机制的元材料显示出对能量吸收的前景.
- 现有的设计面临着诸如低承载能力 (压缩扭曲) 或波动负载和局部变形 (曲) 等限制.
研究的目的:
- 开发新型性多曲外 (CMCS) 超材料,可以协同合压缩扭曲和曲机制.
- 为了实现高和光滑的负载曲线,以提高能量吸收能力.
主要方法:
- 设计和制造多曲线外 (CMCS) 的甲基材料.
- 实验性表征以评估能量吸收,承载能力和变形行为.
- 与克雷斯林和六边形元材料进行比较分析.
主要成果:
- CMCS超材料成功地合了压缩扭曲和曲机制,从而产生了高而光滑的负载曲线.
- 与现有设计相比,实现了20倍更高的特定能量吸收 (SEA) 和50%更高的能量吸收效率 (EEA).
- 通过多次掉落测试证明了可靠的冲击保护和可重复使用性.
结论:
- CMCS超材料为轻质,高强度的保护结构提供了一种新且有效的方法.
- 变形机制的协同合大大提高了能量储存和吸收.
- 这些超材料为先进的冲击保护应用提供了有希望的解决方案.
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