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负载混合纳米粒子的航空级环氧树脂的热性能和力学性能表征

Thermal and Mechanical Characterization of an Aeronautical Graded Epoxy Resin Loaded with Hybrid Nanoparticles.

作者信息

Zotti Aldobenedetto, Zuppolini Simona, Borriello Anna, Zarrelli Mauro

机构信息

Institute for Polymers, Composites and Biomaterials, National Research Council of Italy, 80055 Portici, Naples, Italy.

出版信息

Nanomaterials (Basel). 2020 Jul 16;10(7):1388. doi: 10.3390/nano10071388.

Abstract

Synthesized silica nanoparticles (SiO) were coated with a thin polydopamine (PDA) shell by a modified one-step procedure leading to PDA coated silica nanoparticles (SiO@PDA). Core-shell (CSNPs) characterization revealed 15 nm thickness of PDA shell surrounding the SiO core (~270 nm in diameter). Different weight percentages of CSNPs were employed as filler to enhance the final properties of an aeronautical epoxy resin (RTM6) commonly used as matrix to manufacture structural composites. RTM6/SiO@PDA nanocomposites were experimentally characterized in terms of thermal stability and mechanical performances to assess the induced effects by the synthesized CSNPs on pristine matrix. Thermal stability was investigated by thermogravimetry and data were modelled by the Doyle model and Kissinger methods. An overall enhancement in thermal stability was achieved and clearly highlighted by modelling results. Dynamic Mechanical Analysis has revealed an improvement in the nanocomposite performances compared to the neat matrix, with an increase in the glassy (+9.5%) and rubbery moduli (+32%) as well as glass transition temperature (+10 °C). Fracture Toughness tests confirmed the positive effect in damage resistance compared to unloaded resin with an impressive variation in critical stress intensity factor (K) and critical strain energy (G) of about 60% and 138%, respectively, with the highest SiO@PDA content.

摘要

通过改进的一步法,在合成的二氧化硅纳米颗粒(SiO)上包覆一层薄的聚多巴胺(PDA)壳,得到聚多巴胺包覆的二氧化硅纳米颗粒(SiO@PDA)。核壳(CSNPs)表征显示,围绕SiO核(直径约270nm)的PDA壳厚度为15nm。使用不同重量百分比的CSNPs作为填料,以增强通常用作制造结构复合材料基体的航空环氧树脂(RTM6)的最终性能。对RTM6/SiO@PDA纳米复合材料进行了热稳定性和力学性能方面的实验表征,以评估合成的CSNPs对原始基体的诱导效应。通过热重分析法研究热稳定性,并采用Doyle模型和Kissinger方法对数据进行建模。建模结果清楚地表明,热稳定性总体上得到了提高。动态力学分析表明,与纯基体相比,纳米复合材料的性能有所改善,玻璃态模量(提高9.5%)、橡胶态模量(提高32%)以及玻璃化转变温度(提高10℃)均有所增加。断裂韧性测试证实,与未填充树脂相比,其在抗损伤方面具有积极效果,在最高SiO@PDA含量下,临界应力强度因子(K)和临界应变能(G)分别有大约60%和138%的显著变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7229/7408178/2c0f5dcb95ec/nanomaterials-10-01388-g001.jpg

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