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Atom-sensitive Textiles As Visual Indicators For Plasma Post-discharges

机译:原子敏感纺织品作为等离子体放电后的视觉指示

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The efficiency of surface treatments by plasma and post-discharge plasma processes is greatly dependent on the density of active species, such as neutral atoms in post-discharges. Therefore, many diagnostics exist to detect the presence and measure the concentrations of these species, but they often require expensive instrumentation and highly qualified personnel. These conditions are not often met when the process is industrially used and it becomes important to imagine simple indicators allowing to validate that the correct operating conditions are reached. In the present paper, we present the first results on the investigation of an inexpensive and easy to use visual indicator able to quantify the atomic species density in nitrogen post-discharge plasma processes. It is based on the differential recombination coefficients of N-atoms on metallic/textile fibres which are intrinsically bonded together in a fabric matrix which serves as support for a thermochromic ink. The specific heating of the metallic fibres by N-atom recombination heats the whole of the fabric, leading to a visible colour change of the thermochromic ink, and therefore, of the indicator. Through modelling, it was possible to estimate that the inclusion of copper fibres to a pure cotton matrix leads to a 60% increase of the global N-atom recombination coefficient of the fabric, sufficient enough to provide a clearly visible colour change.
机译:等离子体和放电后等离子体工艺进行表面处理的效率在很大程度上取决于活性物质的密度,例如放电后的中性原子。因此,存在许多诊断程序来检测这些物种的存在并测量这些物种的浓度,但是它们通常需要昂贵的仪器和高素质的人员。当工业上使用该工艺时,通常不满足这些条件,因此想象简单的指示器以验证是否达到正确的操作条件就变得很重要。在本文中,我们提出了一项对廉价,易于使用的可视指示器进行研究的第一个结果,该指示器能够量化氮气放电后等离子体工艺中的原子种类密度。它基于金属/纺织纤维上的N原子的微分复合系数,这些金属固有地粘合在织物基质中,该基质用作热致变色油墨的载体。通过N原子重组对金属纤维进行的特定加热会加热整个织物,从而导致热致变色油墨以及指示剂的可见颜色变化。通过建模,可以估计在纯棉基质中包含铜纤维会导致织物的整体N原子重组系数增加60%,足以提供清晰可见的颜色变化。

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