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Enhancement of delamination fatigue resistance in carbon nanotube reinforced glass fiber/polymer composites

机译:增强碳纳米管增强玻璃纤维/聚合物复合材料的抗分层疲劳性

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We show that the addition of small volume fractions of multi-walled carbon nanotubes (CNTs) to the matrix of glass-fiber composites reduces cyclic delamination crack propagation rates significantly. In addition, both critical and sub-critical inter-laminar fracture toughness values are increased. These results corroborate recent experimental evidence that the incorporation of CNTs improve fatigue life by a factor of two to three in in-plane cyclic loading. We show that in both the critical and sub-critical cases, the degree of delamination suppression is most pronounced at lower levels of applied cyclic strain energy release rate, ΔG. High-resolution scanning electron microscopy of the fracture surfaces suggests that the presence of the CNTs at the delamination crack front slows the propagation of the crack due to crack bridging, nanotube fracture, and nanotube pull-out. Further examination of the sub-critical fracture surfaces shows that the relative proportion of CNT pull-out to CNT fracture is dependent on the applied cyclic strain energy, with pull-out dominating as ΔG is reduced. The conditions for crack propagation via matrix cracking and nanotube pull-out and fracture are studied analytically using fracture mechanics theory and the results compared with data from the experiments. It is believed that the shift in the fracture behavior of the CNTs is responsible for the associated increase in the inter-laminar fracture resistance that is observed at lower levels of ΔG relative to composites not containing CNTs.
机译:我们表明,向玻璃纤维复合材料的基质中添加小体积分数的多壁碳纳米管(CNTs)会显着降低循环分层裂纹扩展速率。另外,临界和次临界的层间断裂韧性值均增加。这些结果证实了最近的实验证据,即碳纳米管的引入在平面内循环载荷中将疲劳寿命提高了2到3倍。我们表明,在临界和次临界情况下,在较低水平的施加循环应变能释放速率ΔG下,分层抑制的程度最为明显。断裂表面的高分辨率扫描电子显微镜表明,由于裂纹桥接,纳米管断裂和纳米管拔出,CNT在分层裂纹前沿处的存在减慢了裂纹的传播。对亚临界断裂面的进一步检查表明,CNT拔出与CNT断裂的相对比例取决于所施加的循环应变能,随着ΔG的减小,拔出占主导地位。利用断裂力学理论分析研究了通过基体开裂,纳米管拔出和断裂而产生的裂纹扩展条件,并将结果与​​实验数据进行了比较。据信,CNT的断裂行为的变化是导致层间断裂抗性的相关增加的原因,相对于不含CNT的复合物,在较低的ΔG水平下观察到了。

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