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Fine-tuning of chemical and physical polymer surface modifications by atmospheric pressure post-discharge plasma and its correlation with adhesion improvement

机译:通过大气压后排出等离子体进行化学和物理聚合物表面改性的微调及其与粘附性改善的相关性

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Our study focuses on the use of a remote atmospheric pressure plasma process for the improvement of polymer surface reactivity. Indeed, surface activation of carbon-fiber-reinforced polymers that use a polyetheretherketone matrix is required to achieve strong and long-term adhesion of paint on the composite. Emphasis will be placed on the contribution of gas plasma used on surface modification. We use two techniques to characterize adherence improvement a qualitative and industrial approach with a cross-cut test and a quantitative approach with a three-point bending test. However, to provide a better understanding of the plasma-induced modifications using air or nitrogen gas, diagnostics of the surface are also necessary. The wettability improvement, chemical surface modifications, and topography are analyzed by using contact angle measurement, X-ray photoelectron spectroscopy, and atomic force microscopy, respectively. The combination of these diagnostics highlights the capability of plasma treatment to tune the plasma/surface interactions depending on gas plasma, which results in improved adhesion.
机译:我们的研究侧重于使用远程大气压等离子体工艺来提高聚合物表面反应性。实际上,需要使用聚醚醚酮基质的碳纤维增强聚合物的表面活化来实现涂料在复合材料上的强且长期的粘附性。强调将置于表面改性的气体等离子体的贡献。我们使用两种技术来表征依从性改善具有横切试验的定性和工业方法,并具有三点弯曲试验的定量方法。然而,为了提供使用空气或氮气的等离子体诱导的修饰,表面的诊断也是必要的。通过使用接触角测量,X射线光电子能谱和原子力显微镜分析润湿性改善,化学表面修饰和地形。这些诊断的组合突出了等离子体处理能力根据气体等离子体调谐血浆/表面相互作用,这导致改善的粘附性。

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