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Characterization of seawater hygrothermal conditioning effects on the properties of titanium-based fiber-metal laminates for marine applications

机译:海水湿热调节特性对船用钛基纤维金属层压板性能的影响

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The mechanical properties and corrosion behavior of the pure titanium TA2, carbon fiber/epoxy composite (CF/E composite), and titanium-carbon fiber/epoxy fiber-metal laminate (Ti FML) have been investigated after hygrothermal conditioning in seawater at 70 degrees C for marine applications. The results showed that the percentage reduction in the mechanical properties of the Ti FML was lower, compared to the CF/E composite, due to the shielding effect of outer TA2 layers against the water absorption. Unconditioned Ti FML specimens showed composite prepreg failure, whereas conditioned specimens exhibited delamination at the metal/composite prepreg interface as the primary failure mode. Plasticizing and swelling of the epoxy resin due to the combined effect of elevated temperature and water absorption, caused the generation of residual stresses that resulted in delamination at the metal/composite prepreg and fiber/resin interfaces. The TA2 foil showed negligible crevice corrosion on the surface because of the formation of the stable oxide film. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在70度的海水中进行湿热调节后,研究了纯钛TA2,碳纤维/环氧复合材料(CF / E复合材料)和钛碳纤维/环氧纤维-金属层压板(Ti FML)的机械性能和腐蚀行为。 C适用于海洋应用。结果表明,与CF / E复合材料相比,Ti FML的机械性能降低的百分比较低,这归因于外层TA2层对吸水的屏蔽作用。未调节的Ti FML试样显示出复合材料的预浸料破坏,而调节的试样在金属/复合材料的预浸料坯界面上表现出分层,这是主要的破坏模式。由于高温和吸水的综合作用,环氧树脂的增塑和溶胀会导致残余应力的产生,从而导致金属/复合预浸料坯和纤维/树脂界面处的分层。由于形成了稳定的氧化膜,因此TA2箔在表面的缝隙腐蚀可忽略不计。 (C)2016 Elsevier Ltd.保留所有权利。

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