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Enhancement of mechanical properties of CFRP manufactured by using electro-activated deposition resin molding method with the application of CNF without hydrophobic treatment

机译:在不进行疏水性处理的情况下,通过CNF的应用,通过电活化沉积树脂成型法制造的CFRP的机械性能提高

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摘要

Cellulose nanofiber (CNF) is high strength and lightweight, additionally, it is produced by sustainable natural resources such as wood. Therefore, it has been reported the mechanical properties of CFRP can be improved by dispersing CNF in the matrix. However, as CNF is hydrophilic, a hydrophobic treatment was applied in many previous studies. For efficient CFRP manufacturing, the authors have developed an electrochemical resin molding method by using aqueous electro-activated deposition which contains the polymer having an epoxy group. In this method, the carbon fiber fabric is immersed in the electro-activated deposition solution and energized, epoxy resin is precipitated around the carbon fiber and impregnated. In this study, shortly after electro-activated deposition, CNF without a hydrophobic treatment was applied to the surface of the resin-impregnated carbon fiber fabric. The mechanical properties of CFRP could be enhanced, and optimum weight fraction of CNF was revealed.
机译:纤维素纳米纤维(CNF)具有高强度和轻质性,此外,它是由可持续的自然资源(例如木材)制成的。因此,已经报道了通过将CNF分散在基质中可以改善CFRP的机械性能。但是,由于CNF是亲水性的,因此在许多先前的研究中都进行了疏水处理。为了有效地制造CFRP,作者开发了一种电化学树脂成型方法,方法是使用包含具有环氧基的聚合物的水性电活化沉积。在这种方法中,将碳纤维织物浸入电活化沉积溶液中并通电,环氧树脂在碳纤维周围沉淀并浸渍。在这项研究中,在电活化沉积后不久,将未经疏水处理的CNF应用于树脂浸渍碳纤维织物的表面。 CFRP的机械性能可以得到增强,并揭示了CNF的最佳重量分数。

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