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Ultrasound enhanced 50 Hz plasma treatment of glass-fiber-reinforced polyester at atmospheric pressure

机译:大气压下玻璃纤维增​​强聚酯的超声增强50 Hz等离子体处理

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Glass-fiber-reinforced polyester (GFRP) plates are treated using a 50 Hz dielectric barrier discharge at a peak-to-peak voltage of 30 kV in helium at atmospheric pressure with and without ultrasonic irradiation to study adhesion improvement. The ultrasonic waves at the fundamental frequency of around 30 kHz with the sound pressure level of approximately 155 dB were introduced vertically to the GFRP surface through a cylindrical waveguide. The polar component of the surface energy was almost unchanged after the plasma treatment without ultrasonic irradiation, but drastically increased approximately from 20 up to 80 mJ m~(-2) with ultrasonic irradiation. The plasma treatment with ultrasonic irradiation also introduced oxygen- and nitrogen-containing functional groups at the GFRP surface. These changes would improve the adhesion properties of the GFRP plates.
机译:玻璃纤维增​​强聚酯(GFRP)板使用50 Hz介质阻挡层放电,在氦气中,在大气压下在30 kV的峰峰值电压下进行超声处理和不进行超声辐射处理,以研究粘合力的提高。通过圆柱波导将基频约为30 kHz,声压级约为155 dB的超声波垂直引入GFRP表面。在没有超声辐射的等离子体处理之后,表面能的极性成分几乎没有变化,但是在超声辐射下,表面能的极性成分从20急剧增加到80 mJ m〜(-2)。超声波辐射的等离子体处理还在GFRP表面引入了含氧和氮的官能团。这些变化将改善GFRP板的粘合性能。

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