通过分布式曲在刚性准晶体架构材料中的增强可变性
Matheus I N Rosa1, Konstantinos Karapiperis2, Kaoutar Radi1
1Department of Mechanical and Process Engineering, ETH Zürich, Zurich, 8092, Switzerland.
Advanced materials (Deerfield Beach, Fla.)
|April 14, 2025
概括
受准晶体启发的新型建筑材料提供了更好的刚性和大张力稳定性. 这些无周期性设计减轻了周期性超材料中常见的不稳定性,提高了能量吸收能力.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 超材料是指一种超材料.
背景情况:
- 建筑材料利用微观结构来获得独特的机械性能和材料效率.
- 低密度材料在平衡硬度与大张力可变性方面面临着挑战.
- 现有的周期性微观结构往往表现出不稳定性,如曲和脆性崩.
研究的目的:
- 引入一种新的类型的非周期性建筑材料,灵感来自于准晶格子.
- 解决周期性设计在实现高刚性和稳定的大张力变形能力方面的局限性.
- 探索准晶体灵感结构的潜力,用于先进的元材料应用.
主要方法:
- 从规范的半晶体图案 (二维罗斯,三维二元象形半晶体) 导出光束网络.
- 使用数值模拟和实验验证来分析机械性能.
- 调查力量链分布和不稳定缓解机制.
主要成果:
- 准晶体启发的设计表现出硬,拉伸主导的拓.
- 不统一的力量链有效地减轻了周期性设计中所见的全球不稳定性.
- 局部曲不稳定性分布,增强了材料的整体稳定性.
- 设计表现出结合的刚性和稳定的大张力变形能力.
结论:
- 基于准晶格的无周期性建筑材料代表了元材料设计的重大进步.
- 这些材料有效地将高刚性与稳定的大张力变形能力相结合,性能优于传统的周期性设计.
- 这些发现突出了确定性准周期拓对于需要高抗冲击和能量吸收的应用的潜力.
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