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Property enhancement of polymer-based composites at cryogenic environment by using tailored carbon nanotubes

机译:通过定制碳纳米管增强聚合物基复合材料在低温环境下的性能

摘要

At high attitude, all polymer-based materials would suffer from degradation at very low temperature in the range between 220 and 77 K (commonly called "at cryogenic environment") and low atmospheric pressure. Within this temperature range, polymer-based composites behave very brittle and many micro-cracks are formed due to differential thermal coefficients of expansion (CTEs) between polymer matrix and high strength reinforcements. An anti-cracking mechanism in the composites is necessary and can be tailored by using nano-particles. Many studies have addressed that the use of single-walled (SWNTs) and multi-walled carbon (MWNTs) nanotubes could enhance the mechanical properties of polymer-based composites. However, interfacial bonding properties are always an issue as it would affect the efficiency and effectiveness of stress transfer in the composites. This paper addresses the viability of using coiled carbon nanotubes (CCNTs) and randomly-oriented nanoclay-supported nanotubes (NSCNTs) to enhance the mechanical properties of epoxy resin at the cryogenic environment.
机译:在高姿态下,所有基于聚合物的材料在极低的温度(220至77 K)(通常称为“在低温环境下”)和低气压下都会遭受降解。在此温度范围内,基于聚合物的复合材料表现得非常脆,并且由于聚合物基体与高强度增强材料之间的热膨胀系数差异(CTE)而形成许多微裂纹。复合材料中的抗开裂机理是必要的,可以通过使用纳米粒子进行定制。许多研究已经解决了使用单壁碳纳米管和多壁碳纳米管可以增强聚合物基复合材料的机械性能的问题。但是,界面粘结性能始终是一个问题,因为它将影响复合材料中应力转移的效率和效果。本文探讨了使用卷曲碳纳米管(CCNT)和随机取向的纳米粘土支撑纳米管(NSCNT)来增强环氧树脂在低温环境下的机械性能的可行性。

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