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Novel electroactive polymer system - PVDF based polymer blends

机译:新型电活性聚合物体系-基于PVDF的聚合物共混物

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摘要

In this paper, we report a new electroactive polymer system, blends of P(VDF-TrFE) and P(VDF-CTFE). The thermal transition behavior and crystalline structure of the polymer blends were studied using the DSC and X-ray diffraction. The optimized thermal treating condition and composition for the blends were identified to have homogeneous materials. In order to find blends with high electromechanical performance, the maximum polarization level and the ratio of maximum polarization to remnant polarization are employed as key parameters to optimize the composition and process. Uniaxially stretching technique was employed to modify the morphology of the polymer blends and to enhance the electromechanical performance. The phase transition behavior can be significantly modified using thermal treating condition. In a stretched polymer blend, a polarization level about 60 mC/m~2 at external electric field of 150 V/μm was obtained with a small remnant polarization, less than 10 mC/m~2. This is very attractive for electromechanical applications.
机译:在本文中,我们报告了一种新的电活性聚合物体系,即P(VDF-TrFE)和P(VDF-CTFE)的混合物。使用DSC和X射线衍射研究了聚合物共混物的热转变行为和晶体结构。确定混合物的最佳热处理条件和组成为均质材料。为了找到具有高机电性能的共混物,最大极化水平和最大极化与剩余极化的比率被用作关键参数,以优化成分和工艺。采用单轴拉伸技术来改变聚合物共混物的形态并增强机电性能。使用热处理条件可以显着改变相变行为。在拉伸的聚合物共混物中,在150 V /μm的外部电场下获得的极化水平约为60 mC / m〜2,而残留极化较小,小于10 mC / m〜2。这对于机电应用非常有吸引力。

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