Maccaferri Emanuele, Mazzocchetti Laura, Benelli Tiziana, Brugo Tommaso Maria, Zucchelli Andrea, Giorgini Loris
Department of Industrial Chemistry "Toso Montanari", University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy.
Interdepartmental Center for Industrial Research on Advanced Applications in Mechanical Engineering and Materials Technology, CIRI-MAM, University of Bologna, Viale Risorgimento 2, 40136 Bologna, Italy.
Polymers (Basel). 2021 Jun 9;13(12):1918. doi: 10.3390/polym13121918.
Carbon Fiber Reinforced Polymers (CFRPs) are widely used where high mechanical performance and lightweight are required. However, they suffer from delamination and low damping, severely affecting laminate reliability during the service life of components. CFRP laminates modified by rubbery nanofibers interleaving is a recently introduced way to increase material damping and to improve delamination resistance. In this work, nitrile butadiene rubber/poly(ε-caprolactone) (NBR/PCL) blend rubbery nanofibrous mats with 60 wt% NBR were produced in three different mat grammages (5, 10 and 20 g/m) via single-needle electrospinning and integrated into epoxy CFRP laminates. The investigation demonstrated that both mat grammage and positioning affect CFRP tanδ behaviour, evaluated by dynamic mechanical analysis (DMA) tests, as well as the number of nano-modified interleaves. Double cantilever beam (DCB) tests were carried out to assess the mat grammage effect on the interlaminar fracture toughness. Results show an outstanding improvement of G for all the tested reinforced laminates regardless of the mat grammage (from +140% to +238%), while the effect on G is more dependent on it (up to +140%). The obtained results disclose the great capability of NBR/PCL rubbery nanofibrous mats at improving CFRP damping and interlaminar fracture toughness. Moreover, CFRP damping can be tailored by choosing the number and positioning of the nano-modified interleaves, besides choosing the mat grammage.
碳纤维增强聚合物(CFRP)广泛应用于需要高机械性能和轻量化的领域。然而,它们存在分层和低阻尼问题,在部件使用寿命期间严重影响层压板的可靠性。通过橡胶纳米纤维交织改性的CFRP层压板是最近引入的一种增加材料阻尼和提高抗分层性能的方法。在这项工作中,通过单针静电纺丝制备了三种不同面密度(5、10和20 g/m²)且丁腈橡胶含量为60 wt%的丁腈橡胶/聚(ε-己内酯)(NBR/PCL)共混橡胶纳米纤维毡,并将其集成到环氧CFRP层压板中。研究表明,面密度和位置都会影响通过动态力学分析(DMA)测试评估的CFRP损耗因子(tanδ)行为,以及纳米改性夹层的数量。进行了双悬臂梁(DCB)测试以评估面密度对层间断裂韧性的影响。结果表明,对于所有测试的增强层压板,无论面密度如何,G都有显著提高(从+140%到+238%),而对G 的影响更依赖于面密度(高达+140%)。所得结果揭示了NBR/PCL橡胶纳米纤维毡在改善CFRP阻尼和层间断裂韧性方面的巨大能力。此外,除了选择面密度外,还可以通过选择纳米改性夹层的数量和位置来调整CFRP的阻尼。