提高结构损伤耐受性和断裂能量通过竹式空洞模式
Xiaoheng Zhu1, Jiakun Liu1, Yucong Hua1
1Department of Mechanical Engineering and Applied Mechanics, University of Pennsylvania, 220 S 33rd St, Philadelphia, PA 19104, United States of America.
Bioinspiration & biomimetics
|June 25, 2024
概括
受到竹子的启发,研究人员使用空格图案在几何上改进了脆弱的聚合物结构. 这显著提高了断裂能量,使材料更坚固,更适合承载应用.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 生物模拟学是一种生物模拟学.
背景情况:
- 竹子具有功能分级的微观结构,提供高故障应变,性和低密度.
- 这些特性使竹子适合承载结构.
- 脆性聚合物往往缺乏足够的断裂性,以适应苛刻的应用.
研究的目的:
- 研究以竹子为灵感的空洞模式,以提高脆性聚合物的故障性能.
- 量化空隙形状和分布对断裂行为的影响.
- 为了提高3D打印聚合物结构的断裂能量.
主要方法:
- 具有空格图案的聚合物结构的有限元素分析 (FEA).
- 用3D打印样本进行实验测试.
- 断裂能量和裂传播行为的量化.
主要成果:
- 与固体样本相比,定期,均分布的空隙增加了15倍的断裂能量.
- 梯度空格模式导致累计骨折能量提高了55倍.
- 空隙诱导裂和压力再分配,延迟故障.
结论:
- 以竹子为灵感的空隙图案是一种有效的策略,可以增强脆性聚合物的断裂特性.
- 空洞的几何设计显著影响材料性和故障机制.
- 这种方法为创建更有弹性和耐用的聚合物结构提供了一条途径.
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