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A Minimally Invasive Monitoring Concept for Plasma-Assisted Surface Treatments in PET Bottles

机译:用于PET瓶中等离子体辅助表面处理的微创监测概念

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This paper presents a novel approach to plasma monitoring in the context of plasma-assisted surface treatments in PET bottles. In industrial state-of-the-art production of PET-based beverage bottles, a so-called Plasmaline antenna is inserted into the bottle which provides both process gases and microwave excitation to generate the plasma state required for coating or sterilization on its inside. The proposed concept based on the planar multipole resonance probe (pMRP) allows for a non-invasive supervision of the plasma from the outside of the bottle wall. Since plasma and probe head are only separated by dielectric materials in between, the sensor's electric field is able to interact with the plasma and the resonance behavior that occurs can be evaluated and tracked. The performance of the concept regarding changes of the plasma electron frequency and the electron collision frequency are investigated within 3D full-wave simulations in CST Microwave Studio. Measurements of an argon plasma are presented as a proof-of-concept, with the plasma being monitored from the plasma-remote side of a PET bottle section.
机译:本文介绍了在PET瓶子中等离子体辅助表面处理的上下文中的血浆监测方法。在工业最先进的宠物饮料瓶生产中,将所谓的等离子体天线插入瓶中,该瓶子可提供工艺气体和微波激励,以产生涂层或灭菌所需的等离子体状态。基于平面多极谐振探针(PMRP)的所提出的概念允许来自瓶壁外部的等离子体的非侵入性监控。由于等离子体和探针头仅通过介电材料分开,因此传感器的电场能够与等离子体相互作用,并且可以评估和跟踪发生的谐振行为。 CST微波工作室的3D全波模拟中研究了关于等离子体电子频率和电子冲突频率的变化的概念的性能。氩气等离子体的测量被呈现为概念验证,等离子体被从PET瓶部分的等离子体侧侧监测。

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