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Manufacturing influence on the delamination fracture behavior of the T800H/3900-2 carbon fiber reinforced polymer composites

机译:制造对T800H / 3900-2碳纤维增强聚合物复合材料的分层断裂行为的影响

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摘要

\u27Torayca\u27 T800H/3900-2 is the first material qualified on Boeing Material Specification (BMS 8-276) which utilizes the thermoplastic-particulate interlayer toughening technology. Two manufacturing processes, the autoclave process and the fast heating rated Quickstep™ process, were employed to cure this material. The Quickstep process is a unique composite production technology which utilizes the fast heat transfer rate of fluid to heat and cure polymer composite components. The manufacturing influence on the mode I delamination fracture toughness of laminates was investigated by performing double cantilever beam tests. The composite specimens fabricated by two processes exhibited dissimilar delamination resistance curves (R-curves) under mode I loading. The initial value of fracture toughness GIC-INIT was 564 J/m2 for the autoclave specimens and 527 J/m2 for the Quickstep specimens. However, the average propagation fracture toughness GIC-PROP was 783 J/m2 for the Quickstep specimens, which was 2.6 times of that for the autoclave specimens. The mechanism of fracture occurred during delamination was studied under scanning electron microscope (SEM). Three types of fracture were observed: the interlayer fracture, the interface fracture, and the intralaminar fracture. These three types of fracture played different roles in affecting the delamination resistance curves during the crack growth. More fiber bridging was found in the process of delamination for the Quickstep specimens. Better fiber/matrix adhesion was found in the Quickstep specimens by conducting indentation-debond tests.
机译:\ u27Torayca \ u27 T800H / 3900-2是第一项通过波音材料规范(BMS 8-276)认证的材料,该规范利用了热塑性颗粒夹层增韧技术。两种制造工艺,高压釜工艺和快速加热额定的Quickstep™工艺,都被用来固化这种材料。 Quickstep工艺是一种独特的复合材料生产技术,该技术利用流体的快速传热速率来加热和固化聚合物复合材料组件。通过进行双悬臂梁试验研究了制造对层压板的I型分层断裂韧性的影响。通过两种方法制备的复合材料试样在I型载荷下表现出不同的抗分层曲线(R曲线)。高压釜试样的断裂韧性GIC-INIT初始值为564 J / m2,Quickstep试样的初始值为527 J / m2。但是,Quickstep试样的平均扩展断裂韧性GIC-PROP为783 J / m2,是高压釜试样的2.6倍。在扫描电镜(SEM)下研究了分层过程中断裂的发生机理。观察到三种类型的断裂:层间断裂,界面断裂和层内断裂。这三种类型的断裂在影响裂纹扩展过程中的抗脱层曲线方面起着不同的作用。在Quickstep标本的分层过程中发现了更多的纤维桥接。通过进行压痕脱胶测试,在Quickstep样品中发现了更好的纤维/基质粘合性。

著录项

  • 作者

    Zhang, Jin; Fox, Bronwyn;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 eng
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