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Adhesion properties of DBD plasma treated nylon 66 fabric- Optimisation of plasma process parameters

机译:DBD等离子体处理尼龙66织物 - 粘合性能的粘附性能 - 等离子体工艺参数优化

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Optimisation of DBD plasma process parameters for maximising the adhesion between nylon 66 and PU using Design-Expert 10.0. is reported in this paper. Out of various available designs, the Box-Beheken design (BBD) was adopted for optimisation of plasma process parameters and to evaluate the effect of their interactions on wicking, peel off strength and He intensity. Plasma process parameters such as power used for plasma generation, exposure time and distance between the electrodes were selected for optimisation. Analysis of Variance (ANOVA) was used to assess the quality of statistical model fit. Fisher's F-test, the coefficient of determination and probability values were used to evaluate the quality and model terms. It was observed that plasma power and treatment time are the significant terms affecting the adhesion properties of the plasma treated nylon 66 fabric. Chemical species generated in the plasma zone were monitored online by an optical emission spectrometer (OES). Change in surface morphology was studied by scanning electron microscopy and atomic force microscopy (AFM). Chemical changes on the surface of the plasma treated samples were analysed by X-ray photoelectron spectroscopy (XPS) and the generation of hydrophilic reactive groups is reported.
机译:优化DBD等离子体工艺参数,用于最大化尼龙66和PU与设计专家10.0的粘附性。本文报道。出于各种可用设计,采用Box-Beheken设计(BBD)进行等离子体工艺参数的优化,并评估其相互作用对芯吸,剥离强度和他强度的影响。选择等离子体工艺参数,例如用于等离子体生成,曝光时间和电极之间的距离的功率用于优化。方差分析(ANOVA)用于评估统计模型适合的质量。 Fisher的F检验,使用系数和概率值来评估质量和模型术语。观察到等离子体功率和治疗时间是影响血浆处理的尼龙66织物的粘附性能的重要术语。等离子区产生的化学物质通过光发射光谱仪(OES)在线监测。通过扫描电子显微镜和原子力显微镜(AFM)研究了表面形态的变化。通过X射线光电子能谱(XPS)分析了等离子体处理样品表面的化学变化,并报道了亲水性反应性基团的产生。

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