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A novel coating method using zinc oxide nanorods to improve the interfacial shear strength between carbon fiber and a thermoplastic matrix

机译:一种使用氧化锌纳米棒改善碳纤维与热塑性基体之间界面剪切强度的新型涂覆方法

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摘要

The interfacial shear strength between the fiber and the thermoplastic matrix is one of the most important factors affected mechanical performances of carbon fiber-reinforced thermoplastic composites (CFRTPs). There have been many investigations of the interfacial shear strength that studied surface treatments. Chemical treatment methods have been widely used to activate the inert fiber surface and thus increase the surface free energy. However, these treatment methods can degrade the mechanical properties of the carbon fibers due to surface etching. Coating metal oxides onto the carbon fibers using hydrothermal methods can improve the interfacial shear strength without degrading the mechanical properties of the fiber. However, due to their long processing time, it is difficult to apply these hydro thermal methods to the continuous manufacturing process for carbon fibers. In this study, a novel method for coating zinc oxide (ZnO) nanorods (NRs) onto the carbon fibers in a short time was investigated, which enhanced the interfacial shear strength with polypropylene without significant damage on the reinforcing fibers. An electrochemical deposition method (EDM) and a microwave radiation method were applied to create a uniform ZnO seed layer on the carbon fiber surface, and then the ZnO NRs were more densely and uniformly grown on the fiber surface by a direct heating method by applying microwave radiation for 10 min. The overall preparation time to grow ZnO NRs was decreased by 95.8%, and these novel methods effectively improved the interfacial shear strength of the CFRTP. (C) 2016 Elsevier Ltd. All rights reserved.
机译:纤维与热塑性基质之间的界面剪切强度是影响碳纤维增强热塑性复合材料(CFRTPs)力学性能的最重要因素之一。已经有许多研究表面处理的界面剪切强度研究。化学处理方法已被广泛用于活化惰性纤维表面,从而增加表面自由能。但是,由于表面蚀刻,这些处理方法会降低碳纤维的机械性能。使用水热法将金属氧化物涂覆到碳纤维上可以改善界面剪切强度,而不会降低纤维的机械性能。然而,由于它们的处理时间长,难以将这些水热法应用于碳纤维的连续制造过程。在这项研究中,研究了一种在短时间内将氧化锌(ZnO)纳米棒(NRs)涂覆到碳纤维上的新方法,该方法提高了聚丙烯的界面剪切强度,而对增强纤维没有明显的破坏。应用电化学沉积法(EDM)和微波辐射法在碳纤维表面上形成均匀的ZnO籽晶层,然后通过直接加热法通过施加微波,使ZnO NRs在纤维表面上更致密和均匀地生长。辐射10分钟。生长ZnO NRs的总准备时间减少了95.8%,这些新方法有效地提高了CFRTP的界面剪切强度。 (C)2016 Elsevier Ltd.保留所有权利。

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