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首页> 外文期刊>Composites Science and Technology >High performance epoxy-based composites for cryogenic use: A approach based on synergetic strengthening effects of epoxy grafted polyurethane and MWCNTs-NH_2
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High performance epoxy-based composites for cryogenic use: A approach based on synergetic strengthening effects of epoxy grafted polyurethane and MWCNTs-NH_2

机译:用于低温的高性能环氧基复合材料:基于环氧接枝聚氨酯和MWCNTs-NH_2协同增强作用的方法

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摘要

Synergetic strengthening effects of epoxy grafted polyurethane (EP-PU) and aminated MWCNTs (MWCNTs-NH2) on mechanical performance of EP-based composites at 77 K were systematically investigated using the tested results at room temperature (RT) as comparisons. EP-PU was successfully synthesized by controlling the reaction between -OH in EP and -NCO in PU prepolymer, which showed the advantages of relatively low viscosity and outstanding chemical miscibility with EP matrix. The most obvious enhancements were achieved with contents of 30 wt% EP-PU and 0.2 wt% MWCNTs-NH2 in tensile, flexural, impact and K(IC )fracture toughness properties of EP composites as well as flexural properties and interlaminar shear strength (ILSS) of carbon fiber (CF)/EP composites at both RT and 77 K, which confirmed the synergetic strengthening effects of EP-PU and MWCNTs-NH2. Specifically, K-IC fracture toughness of EP composites and ILSS of CF/EP composites at 77 K were enhanced by 26.0 and 31.4%, respectively, compared with the corresponding neat composites. The EP-PU component showed beta or gamma relaxation behavior at cryogenic condition and existed in form of scattered micro-spheres in cured EP matrix due to the phase separation. The riveting and bridging of MWCNTs-NH2 around EP-PU micro-spheres were considered to provide extraordinary synergy on the effective stress diversion and crack propagation inhibition at cryogenic condition through establishing the chemically bonded multi-scale interface.
机译:系统地研究了环氧接枝聚氨酯(EP-PU)和胺化多壁碳纳米管(MWCNTs-NH2)对基于EP的复合材料在77 K时的力学性能的协同强化作用。通过控制EP中的-OH和PU预聚物中的-NCO之间的反应成功地合成了EP-PU,它具有相对较低的粘度和与EP基体的优异化学相容性的优点。在EP复合材料的拉伸,挠曲,冲击和K(IC)断裂韧度特性以及挠曲特性和层间剪切强度(ILSS)中,含量为30 wt%的EP-PU和0.2 wt%MWCNTs-NH2可以实现最明显的增强。碳纤维(CF)/ EP复合材料在室温和77 K下都具有抗拉强度,这证实了EP-PU和MWCNTs-NH2的协同增强作用。特别地,与相应的纯净复合材料相比,EP复合材料的K-IC断裂韧性和CF / EP复合材料的ILSS在77 K下分别提高了26.0%和31.4%。 EP-PU组分在低温条件下表现出β或γ弛豫行为,由于相分离,在固化的EP基质中以分散的微球形式存在。通过建立化学键合的多尺度界面,认为在EP-PU微球周围的MWCNTs-NH2的铆接和桥接在低温条件下有效的应力转移和裂纹扩展抑制方面提供了非凡的协同作用。

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