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Novel heat durable electromechanical film processing: preparations for electromechanical and electret applications

机译:新型耐热的机电膜加工:机电和驻极体应用的准备工作

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New heat durable electromechanical films from cyclo-olefin polymers have been developed. Electromechanical film can act as a sensor and as an actuator. As a sensor dynamic force on the surface of the film generates electric charge and contrary as an actuator voltage is applied to the film and the electric field drives the film in an air gap producing acoustic sound (or vibration). Electromechanical operation and electret operation are possible for both application types. Electromechanical operation is based on the changes of the thickness of the film and electret operation is based on the movement of the film between the air gap. The application properties strongly depend on the preparations made to the film. The film preparations consist of stretching (void formation), gas diffusion expansion, electrostatic charging, fabrication of metal electrodes, making electrical connections and tensioning on a frame in electret operation. Cast film needs to be stretched to form voided structure to the film. Processing window for the stretching of the heat durable electromechanical films is very narrow compared to the PP-based films. Optimal voids in the film microstructure are flat and lens like. Gas diffusion expansion increases the film softness and thus the electromechanical sensitivity by further opening the cellular microstructure. Maximum film thickness is about 100 /spl mu/m prior to the electrostatic charging. Charges applied to the film trap into the plastic-gas interfaces and form permanent space charges in the film. Partial discharges are being controlled by a constant current charging method. Metal electrodes are applied to the film and further connected by leads to operating systems and amplifiers. The sensitivity of the electromechanically operating sensors and actuators can be increased by stacking multiple layers of the film together. Applications based on a flat loudspeaker need to be tuned by tensioning the film on a support frame. Correct tensioning is essential in reducing distortion levels. In general lower tensioning leads to higher sound pressure levels due to the larger film movement but on the other hand higher tensioning reduces the distortion levels.
机译:已经开发了由环烯烃聚合物制成的新型耐热机电膜。机电膜可以充当传感器和致动器。当传感器在薄膜表面上产生动力时,会产生电荷,相反,当向薄膜施加致动器电压时,电场会在气隙中驱动薄膜,从而产生声音(或振动)。两种应用类型均可进行机电操作和驻极体操作。机电操作基于薄膜厚度的变化,而驻极体操作基于薄膜在气隙之间的运动。涂布性能在很大程度上取决于对薄膜的制备。薄膜的准备工作包括拉伸(空隙形成),气体扩散膨胀,静电荷,制造金属电极,在驻极体操作中在框架上进行电连接和张紧。流延膜需要被拉伸以在膜上形成空隙结构。与基于PP的膜相比,用于拉伸耐热机电膜的加工窗口非常窄。薄膜微结构中的最佳空隙是平坦的,像透镜一样。气体扩散膨胀通过进一步打开细胞微结构而增加了膜的柔软度并因此提高了机电灵敏度。在静电充电之前,最大薄膜厚度约为100 / spl mu / m。施加到薄膜上的电荷会捕获到塑料-气体界面中,并在薄膜中形成永久性的空间电荷。通过恒流充电方法控制局部放电。将金属电极施加到薄膜上,并通过导线进一步连接到操作系统和放大器。机电操作的传感器和执行器的灵敏度可以通过将薄膜的多层堆叠在一起来提高。需要通过拉紧支撑框架上的薄膜来调整基于平板扬声器的应用。正确的张紧对于降低变形水平至关重要。通常,较低的张力会由于较大的薄膜运动而导致较高的声压级,但另一方面,较高的张力会降低失真度。

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