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Plasma modification of textiles: understanding the mechanisms involved

机译:纺织品的等离子体改性:了解涉及的机理

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Plasma treatments are acquiring growing commercial recognition as a highly practical means of altering the surface properties of textiles without detriment to their bulk properties. It is clearly desirable that processing conditions are formulated as accurately as possible, so that fewer trials are required to achieve a desired outcome. We discuss how better formulation is achievable from a clearer understanding of the mechanisms comprising the plasma process. This improved understanding comes from not only analy­sing surface chemical and topographical changes resulting from a plasma treatment, but also monitoring key processes taking place during the treatment. Furthermore, we highlight the application of computational approaches, statistical experimental design and process control as supporting tools and highlight the role that artificial intelligence may play in the future. We also consider three specific plasma treatments of textiles and propose how examples of these approaches extracted from the literature may be combined, to achieve more realistic formulations.
机译:等离子体处理在改变纺织品的表面特性而不损害其整体性能的同时,也获得了越来越多的商业认可,这是一种高度实用的手段。显然希望尽可能精确地制定加工条件,以便需要进行较少的试验即可获得所需的结果。我们讨论了通过更清楚地理解等离子体工艺的机理如何实现更好的配方。这种更好的理解不仅来自分析等离子体处理导致的表面化学和形貌变化,而且还监视处理过程中发生的关键过程。此外,我们重点介绍了计算方法,统计实验设计和过程控制作为支持工具的应用,并重点介绍了人工智能在未来可能发挥的作用。我们还考虑了纺织品的三种特定的等离子处理方法,并提出了如何结合从文献中提取的这些方法的示例,以实现更实际的配方。

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