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Method to optimize charge distribution in electret films using multiple needle discharges

机译:利用多针放电优化驻极体薄膜中电荷分布的方法

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The purpose of this paper was to find the optimal parameters of moving multiple needle corona discharges by looking at the transport velocity and the distance of the needles. The parameters were then used to symmetrically arrange the discharge needles for large-scale mass production. A corona discharge method is typically used to perform charge injection in the creation of electret films. A static single needle corona discharge method typically leads to a non-uniform space charge distribution in electret films. Since obtaining uniformly injected charge distribution and uniform efficiency of large-area electret films have become important research topics recently, methods such as moving multiple needle corona discharges have been developed to improve production efficiency and uniformity in the spatial charge distribution of electret films for industrial applications. An automated control system was developed using VB (Visual Basic) to create a virtual instrument to perform the corona discharges and to measure the surface potential. Several important processing parameters were identified to enable us to obtain uniform spatial charge distribution in newly created electret films.
机译:本文的目的是通过观察针的传输速度和距离,找到移动多个针头电晕放电的最佳参数。这些参数然后用于对称布置排料针,以进行大规模的批量生产。在形成驻极体膜时,通常使用电晕放电方法来执行电荷注入。静态单针电晕放电方法通常会导致驻极体薄膜中的空间电荷分布不均匀。由于获得大面积驻极体薄膜的均匀注入电荷分布和均匀效率已成为近来重要的研究课题,因此开发了移动多针电晕放电等方法来提高工业应用的驻极体薄膜的生产效率和空间电荷分布的均匀性的方法。 。使用VB(Visual Basic)开发了一个自动控制系统,以创建虚拟仪器来执行电晕放电并测量表面电势。确定了几个重要的处理参数,以使我们能够在新创建的驻极体薄膜中获得均匀的空间电荷分布。

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