首页> 外文会议>The 41st IEEE International Conference on Plasma Science, and the 20th International Conference on High-Power Particle Beams >Investigation on endurance of hydrophilic property of Carbon Fibers treated by air dielectric barrier discharge
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Investigation on endurance of hydrophilic property of Carbon Fibers treated by air dielectric barrier discharge

机译:空气介质阻挡放电处理碳纤维亲水性的耐久性研究。

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Summary form only given. Recently, thermo plastics such as Polypropylene (PP) or polyimide are going to be used as matrix resin of Carbon Fiber (CF) composite materials because they have an advantage to be rewelded at above 130°C. However, mechanical strength of CF/PP composite materials is low because adhesion strength between CF surface and PP surface is low. Therefore, many researchers have investigated plasma surface modification to enhance the interfacial adhesion strength of CF surface. On the other hand, from the industrial point of view, we need to investigate how long the effect of plasma surface modification lasts. In this study, we investigated the improvement of the hydrophilic property of CFs by air Dielectric Barrier Discharge (DBD), and also measured the endurance of its effect. Room air (temperature: 20~20.3 °C, relative humidity: 39.1~42.5%) was used as source gas of the DBD. The barrier material is alumina (ε=9.1, Type: A473, Kyocera corporation). Gas flow rate was fixed to 5 L/min. Gap length was fixed to 1.5 mm. Spread CFs (Thickness: 0.1 mm, T700SC-12000, Toray Industries, Inc.) were used in this experiment and they were inserted in the center of the discharge gap. Discharge power was fixed to 50 W. Light emission from air DBD with CFs was observed by a multi channel spectrometer. Hydrophilic property was estimated by the water absorbing property test (Byreck method). DBD treatment time was changed from 10 s to 60 s. In order to clarify the endurance of the DBD effect, hydrophilic property of CFs was measured after 1 day to 3 days from DBD treatment. The results showed that (1) hydrophilic property of CFs increased with the increase of DBD treatment time and the rate of increase was 158% at 60 s DBD treatment in comparison with untreated CFs, (2) since O and OH radical were detected in air DBD with CFs, oxygen containing polar functional groups such as -OH and -COOH seemed to be incorporated on the CF surface- and (3) the hydrophilic property of CF treated by DBD slightly decreased with time and the rate of decrease was 9% at 3 days after the DBD treatment in comparison with untreated CFs.
机译:仅提供摘要表格。近来,诸如聚丙烯(PP)或聚酰亚胺的热塑性塑料将被用作碳纤维(CF)复合材料的基质树脂,因为它们具有在130℃以上可以重新焊接的优点。但是,CF / PP复合材料的机械强度低,因为CF表面和PP表面之间的粘合强度低。因此,许多研究人员研究了等离子体表面改性以增强CF表面的界面粘合强度。另一方面,从工业角度来看,我们需要研究等离子体表面改性作用持续多长时间。在这项研究中,我们研究了通过空气介质阻挡放电(DBD)改善CF的亲水性,并测量了其效果的持久性。使用室内空气(温度:20〜20.3°C,相对湿度:39.1〜42.5%)作为DBD的原料气。阻隔材料是氧化铝(京瓷公司制,ε= 9.1,类型:A473)。气体流速固定为5 L / min。间隙长度固定为1.5mm。在该实验中,使用铺展的CF(厚度:0.1mm,T700SC-12000,Toray Industries,Inc。),并将其插入放电间隙的中心。放电功率固定为50W。通过多通道光谱仪观察到带有CF的空气DBD的发光。亲水性通过吸水率试验(Byreck法)进行评价。 DBD处理时间从10 s更改为60 s。为了阐明DBD作用的持久性,在DBD处理后1天至3天后测量CF的亲水性。结果表明:(1)CFs的亲水性随DBD处理时间的增加而增加,与未处理的CFs相比,在60 s DBD处理下CFs的亲水性增加了158%,(2)由于在空气中检测到O和OH自由基具有CFs的DBD,似乎在CF表面上掺入了含氧官能团-OH和-COOH等极性氧,并且(3)DBD处理的CF的亲水性随时间略有下降,在2000与未治疗的CF相比,DBD治疗后3天。

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