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Study of Interface Adhesive Properties of Wurtzite Materials for Carbon Fiber Composites.

机译:纤锌矿材料对碳纤维复合材料界面粘合性能的研究。

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摘要

Recently, the use of zinc oxide (ZnO) nanowires as an interphase in composite materials has been demonstrated to increase the interfacial shear strength between carbon fiber and an epoxy matrix. In this research work, the strong adhesion between ZnO and carbon fiber is investigated to elucidate the interactions at the interface that result in high interfacial strength. First, molecular dynamics (MD) simulations are performed to calculate the adhesive energy between bare carbon and ZnO. Since the carbon fiber surface has oxygen functional groups, these were modeled and MD simulations showed the preference of ketones to strongly interact with ZnO, however, this was not observed in the case of hydroxyls and carboxylic acid. It was also found that the ketone molecules ability to change orientation facilitated the interactions with the ZnO surface. Experimentally, the atomic force microscope (AFM) was used to measure the adhesive energy between ZnO and carbon through a liftoff test by employing highly oriented pyrolytic graphite (HOPG) substrate and a ZnO covered AFM tip. Oxygen functionalization of the HOPG surface shows the increase of adhesive energy. Additionally, the surface of ZnO was modified to hold a negative charge, which demonstrated an increase in the adhesive energy. This increase in adhesion resulted from increased induction forces given the relatively high polarizability of HOPG and the preservation of the charge on ZnO surface. It was found that the additional negative charge can be preserved on the ZnO surface because there is an energy barrier since carbon and ZnO form a Schottky contact. Other materials with the same ionic properties of ZnO but with higher polarizability also demonstrated good adhesion to carbon. This result substantiates that their induced interaction can be facilitated not only by the polarizability of carbon but by any of the materials at the interface. The versatility to modify the magnitude of the induced interaction between carbon and an ionic material provides a new route to create interfaces with controlled interfacial strength.
机译:近来,已证明在复合材料中使用氧化锌(ZnO)纳米线作为界面可增加碳纤维与环氧基质之间的界面剪切强度。在这项研究工作中,研究了ZnO和碳纤维之间的强粘合性,以阐明界面处的相互作用,从而导致较高的界面强度。首先,进行分子动力学(MD)模拟以计算裸碳和ZnO之间的粘合能。由于碳纤维表面具有氧官能团,因此对它们进行了建模,并且MD模拟显示酮倾向于与ZnO强烈相互作用,但是,在羟基和羧酸的情况下未观察到。还发现酮分子改变取向的能力促进了与ZnO表面的相互作用。实验上,原子力显微镜(AFM)通过采用高度定向的热解石墨(HOPG)衬底和ZnO覆盖的AFM尖端,通过剥离测试来测量ZnO和碳之间的粘合能。 HOPG表面的氧官能化表明粘合能增加。另外,ZnO的表面被改性以保持负电荷,这表明粘合能增加。鉴于HOPG的较高极化率和ZnO表面电荷的保留,这种粘附力的增加是由于感应力的增加。已经发现,由于碳和ZnO形成肖特基接触,因此存在能量垒,因此可以在ZnO表面上保留额外的负电荷。具有ZnO相同离子特性但极化率更高的其他材料也显示出对碳的良好粘合性。该结果证实,不仅通过碳的可极化性而且通过界面处的任何材料都可以促进它们的诱导相互作用。改变碳和离子材料之间感应相互作用的强度的多功能性提供了一条新的途径来创建界面强度可控的界面。

著录项

  • 作者

    Galan Vera, Magdian Ulises.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Mechanical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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