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Plasma Surface Modification of Glass-Fibre-Reinforced Polyester Enhanced by Ultrasonic Irradiation

机译:超声辐射增强的玻璃纤维增​​强聚酯的等离子体表面改性

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During atmospheric pressure plasma treatment, reactive species generated in the plasma diffuse through a boundary gas layer which is adsorbed at the material surface. Many of the reactive species become inactivated before reaching the surface due to their short lifetime. The efficiency of plasma treatment can be highly enhanced by simultaneous high-power ultrasonic irradiation of the treating surface, because the delivered acoustic energy can reduce the thickness of the boundary gas layer. Here surfaces of glass-fibre-reinforced polyester (GFRP) plates were treated using an atmospheric pressure dielectric barrier discharge in helium with ultrasonic irradiation, particularly for the adhesion improvement. The ultrasound was irradiated through a powered mesh electrode using a high-power gas-jet ultrasonic generator. The discharge mode changed from glow to filamentary by the ultrasonic irradiation. The surface characterizations were performed using contact angle measurements, X-ray photoelectron spectroscopy (XPS) and atomic force mictroscopy (AFM). O/C ratios at the GFRP surfaces before the treatments, after 30-s plasma treatment, and after 30-s plasma treatment with ultrasonic irradiation were 0.295, 0.385 and 0.447, respectively. This indicated that the plasma treatment oxidized and roughened the GFRP surface, and the ultrasonic irradiation further enhanced the oxidation. It is concluded that plasma treatment efficiency for adhesion improvement of GFRPs is enhanced by the ultrasonic irradiation.
机译:在大气压等离子体处理期间,等离子体中产生的反应性物质通过边界气体层扩散,该边界气体层吸附在材料表面。许多反应性物质由于寿命短而在到达表面之前变得失活。通过同时对处理表面进行大功率超声波照射,可以大大提高等离子体处理的效率,因为传递的声能可以减小边界气体层的厚度。在这里,玻璃纤维增​​强的聚酯(GFRP)板的表面经过氦气中的大气压电介质阻挡层放电和超声波辐照处理,特别是为了提高附着力。使用高功率气体喷射超声发生器通过动力网状电极辐照超声。通过超声波照射,放电模式从辉光变为丝状。使用接触角测量,X射线光电子能谱(XPS)和原子力显微镜(AFM)进行表面表征。用超声波辐照处理前,处理30秒后和处理30秒后,GFRP表面的O / C比分别为0.295、0.385和0.447。这表明等离子处理使GFRP表面氧化并使表面粗糙,并且超声辐射进一步增强了氧化。结论是,通过超声照射提高了用于改善GFRPs的粘附的等离子体处理效率。

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