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Durability Assessment of Multiwalled Carbon-Nanotubes Modified Advanced Fibrous Polymeric Composite in Different Marine Environment

机译:碳纳米管改性高级纤维聚合物复合材料在不同海洋环境中的耐久性评估

摘要

Fibre reinforced polymer (FRP) composite is one of the most promising material system of 21st century due to high strength to weight ratio, non-corrosive nature, flexibility and easy fabrication. FRP has enormous demand for application in diversified fields like aerospace, submarines, underwater pipeline, automobiles, architectural components, satellites etc. Major dilemma is faced by researchers, when FRP composites are exposed to harsh and hostile environments. FRP composites are prone to degradation when exposed to humid environments, cryogenic environments,high temperature, different radiation environments such as UV and microwave, thermal spikes and shocks etc. Due to this, environmental degradation of FRP composite is a progressing area of research. The current experiment deals with ‘Durability assessment of carbon nano tubes (CNT) modified advanced fibrous polymeric composite in different marine environment’. The material system used were GFRP, GFRP+0.1wt.%CNT, GFRP+0.3wt.%CNT and GFRP+0.5wt.% CNT, which were exposed to different environmental conditions , 35°C water, 5°C water and hygrothermal conditioning. All the samples showed decrease in properties when exposed to moisture due to plasticization, but the degradation shown by GFRP+0.1%CNT was the least due to minimum absorption of water in the first two environmental conditioning and showed the best mechanical properties due to uniform dispersion and higher surface area. Hence, nano filler modification should be done judiciously to derive the best properties from FRP composites. If more wt % of CNT is used then it would result in agglomeration, formation of voids and provide sites for micro crack nucleation which will ultimately result in failure of composite.
机译:纤维增强聚合物(FRP)复合材料具有很高的强度重量比,无腐蚀特性,柔韧性和易于制造的特性,是21世纪最有希望的材料体系之一。玻璃钢对在航空航天,潜艇,水下管道,汽车,建筑部件,卫星等各种领域的应用有着巨大的需求。当玻璃钢复合材料暴露于恶劣和恶劣的环境中时,研究人员面临着巨大的困境。当暴露于潮湿环境,低温环境,高温,不同的辐射环境(如紫外线和微波,热尖峰和冲击等)中时,FRP复合材料易于降解。因此,FRP复合材料的环境降解是研究的一个进展领域。当前的实验涉及“在不同海洋环境中对碳纳米管(CNT)改性的高级纤维聚合物复合材料的耐久性评估”。所使用的材料系统是GFRP,GFRP + 0.1wt。%CNT,GFRP + 0.3wt。%CNT和GFRP + 0.5wt。%CNT,它们分别暴露于不同的环境条件,35°C水,5°C水和湿热条件下条件。所有样品在暴露于湿气中时均由于增塑而显示出性能下降,但是由于前两个环境条件中水分吸收最少,GFRP + 0.1%CNT所显示的降解最少,而由于分散均匀而显示出最佳的机械性能和更大的表面积。因此,应明智地进行纳米填料改性,以从FRP复合材料中获得最佳性能。如果使用更多wt%的CNT,则将导致团聚,形成空隙并提供微裂纹成核的位置,最终将导致复合材料的失效。

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