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Study on Surface Properties of Polyamide 66 Using Atmospheric Glow-Like Discharge Plasma Treatment

机译:大气辉光放电等离子体处理聚酰胺66表面性能的研究

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Surface modification of fiber fabric sometimes needs a large volume of cold plasma to improve its efficiency. This experimental study is based on the treatment of polyamide 66 (PA66) fabrics using large contact-area glow-like plasma, which are produced in the atmospheric air without any dielectric barriers. The atomic force microscopy (AFM) and X-ray photoelectron spectroscopy (XPS) are adopted, respectively, to detect the surface changes in physical microstructure and the variations in the type and quantity of chemical functional groups. The results show that the PA66 fabric surface will be etched remarkably by the glow-like plasma, and the surface roughness and the surface energy are augmented. On the surface of the processed PA66 fabrics, the oxygen-containing functional groups’ content rises together with the decrease on the total primary C–C and C–N bonds. After 30 seconds of sterilization by the glow-like plasmas, most of the bacterial colonies on the fabric vanish. The effectiveness of this kind of plasma treatment could last for three days in a sealed environment.
机译:纤维织物的表面改性有时需要大量的冷等离子体以提高其效率。这项实验研究基于使用大面积接触辉光状等离子体处理聚酰胺66(PA66)织物,该等离子体是在大气中产生的,没有任何介电屏障。分别采用原子力显微镜(AFM)和X射线光电子能谱(XPS)来检测表面微观结构的变化以及化学官能团类型和数量的变化。结果表明,PA66织物表面会被辉光状等离子体显着腐蚀,从而提高了表面粗糙度和表面能。在经过加工的PA66织物的表面,含氧官能团的含量会增加,而总的C–C和C–N键会减少。经过类似辉光的等离子体灭菌30秒后,织物上的大多数细菌菌落都消失了。这种等离子体处理的有效性在密封的环境中可以持续三天。

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