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EXPERIMENTAL ANALYSIS OF ALTERNATIVE DIELECTRIC MATERIALS FOR DBD PLASMA ACTUATORS

机译:DBD等离子体执行器交替介电材料的实验分析。

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Dielectric Barrier Discharge plasma actuators are simple devices with great potential for active flow control applications. They have very interesting features which have made them a topic of interest for many researchers, for instance they present very low mass, fast response time, low cost, easy implementation and they are fully electronic with no moving parts. The dielectric material used in the construction of these devices present an important role in their performance. The variety of dielectrics studied in the literature is very restrict and the majority of the authors make use of Kapton, Teflon, Macor ceramic or PMMA. Furthermore, several authors reported difficulties in the durability of the dielectric layer when actuators operate at high levels of voltage and frequency. Considering this background, the present study focus on the experimental testing of alternative dielectric materials which can be used for DBD plasma actuators fabrication. Considering this, plasma actuators with dielectric layers made of Poly-Isobutylene rubber, Poly-Lactic acid and Acetoxy Silicon were experimentally tested. Although these dielectric materials are not commonly used in plasma actuators, their values of dielectric strength and dielectric permittivity indicate they can be good solutions. The plasma actuators facbricated with these alternative dielectric materials were experimentally analysed in terms of electrical characteristics and induced flow velocity, and the obtained results were compared with an actuator made of Kapton which is, currently, the most common dielectric material for plasma actuators. The effectiveness of the actuators was estimated and the advantages and disadvantages of the use of each dielectric material were discussed.
机译:介质阻挡放电等离子体致动器是简单的设备,在主动流量控制应用中具有巨大的潜力。它们具有非常有趣的功能,这使它们成为许多研究人员感兴趣的主题,例如,它们的质量极低,响应时间短,成本低,易于实施,并且是完全电子化的,没有活动部件。这些设备的构造中使用的介电材料在其性能方面起着重要作用。文献中研究的电介质种类非常有限,大多数作者使用Kapton,Teflon,Macor陶瓷或PMMA。此外,几位作者报告了当致动器在高电压和高频率下工作时,介电层的耐用性存在困难。考虑到这种背景,本研究着重于可用于DBD等离子体致动器制造的替代介电材料的实验测试。考虑到这一点,对具有由聚异丁烯橡胶,聚乳酸和乙酰氧基硅制成的介电层的等离子体致动器进行了实验测试。尽管这些介电材料在等离子体致动器中并不常用,但它们的介电强度和介电常数值表明它们可能是很好的解决方案。对用这些替代介电材料制成的等离子体致动器进行了电学特性和感应流速的实验分析,并将所得结果与由Kapton制成的致动器进行了比较,该致动器目前是等离子体致动器中最常见的介电材料。估算了执行器的有效性,并讨论了使用每种介电材料的优缺点。

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