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Alkali absorption and durability studies on CFRP laminated composites

机译:CFRP层压复合材料的碱吸收和耐久性研究

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Fiber Reinforced Plastics (FRP) are widely used in marine, aeronautical, automotive, space applications due to their corrosive resistance and low cost to performance. The main aim of this research was to examine the impact of alkali absorption and durability in the Carbon/Epoxy, Carbon/Vinylester, and Carbon/Isopolyester composites immersed in 13.59 pH alkaline solutions for a maximum of 25 days at 27°C (room temperature) and 65°C. Epoxy, vinyl-ester and Isoployester resin are selected as a matrix material and Poly-acrylonitrile-based Carbon fiber of 200 gsm fabrics is chosen as reinforcement and hand lay-up process is used for fabrication in the ratio of 35: 65 respectively and cured at room temperature with applied pressure using hydraulic press for 24 hrs. Solution of alkali was prepared and specimens were subjected to alkali solution. The moisture absorption was calculated on the basis of rate of moisture for every 5days interval and rate of diffusion coefficient (m2/sec) were calculated. Similarly durability studies (UTS, ILSS and FS) are conducted at 27°C and 65°C. Characterization of the fractured area was done using a scanning microscope. The obtained result rate of moisture absorption in case of neat casting and CFRP specimen shows the maximum alkali absorption in Iso-polyester / carbon whereas the minimum absorption was shown in vinyl ester/carbon specimens at RT and at 65°C over a period of 25days. At room temperature and 65°C the diffusion coefficient (D) was found and identified higher value for Iso-polyester/carbon and low for vinyl ester/carbon this is because Iso-polyester are distributed along the main chain, which makes easily available for reaction but in vinylesters the ester functional groups acts as a shield by methyl groups which restrict the easy absorption. Reduce in percentage in mechanical properties is due to Alkali absorption in terms of reduced degradation values in UTS, Flexural Strength and ILSS samples, carbon / epoxy showed supremacy over vinylester / carbon and iso-polyester / carbon. Scanning electron microscopy images show the embrittlement and micro-cracks on surface due to exposure to the alkali environments, matrix bonded to fiber are hardly identified as the temperature increases.
机译:由于其耐腐蚀性和低成本,纤维增强塑料(FRP)广泛用于海洋,航空,汽车,空间应用中,耐腐蚀性和性能低。该研究的主要目的是检测碱性吸收和耐久性在碳/环氧,碳/乙烯酯和碳/异聚复合材料中的影响,浸入13.59 pH碱性溶液中的最多25天(室温)和65°C。选择环氧树脂,乙烯基 - 酯和等胶结泡树脂作为基质材料,选择200GSM织物的聚丙烯腈类碳纤维作为增强,手工铺设工艺分别用于制造35:65的比例并固化在室温下,使用液压机使用施加压力24小时。制备碱的溶液,对试样进行碱溶液。基于每5天的水分速率计算湿气吸收,并计算扩散系数(M2 /秒)的速率。类似地,耐久性研究(UTS,ILS和FS)在27℃和65℃下进行。使用扫描显微镜进行裂缝区域的表征。在整个铸造和CFRP样本的情况下,所获得的湿度吸湿率显示出ISO-聚酯/碳中的最大碱吸收,而最小吸收在室温下在乙烯基酯/碳标本下显示,在25天的时期在65℃下显示65℃ 。在室温和65°C时,发现扩散系数(D)并确定了对乙烯基酯/碳的含量/碳的较高值,因为乙烯基酯/碳,这是因为ISO-聚酯沿着主链分布,这使得可轻松分配反应但在Vinylesters中,酯官能团用作甲基的屏蔽,其限制容易吸收。减少机械性能的百分比是由于碱吸收,在UTS中降低降解值,弯曲强度和ILS样品,碳/环氧树脂表现出乙烯基酯/碳和异酯/碳的至高无上。扫描电子显微镜图像显示由于暴露于碱环境而导致的表面上的脆化和微裂隙,粘合到纤维的基质随着温度的增加而粘合。

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