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首页> 外文期刊>Journal of Applied Polymer Science >Electromechanical deformation and failure of multilayered films
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Electromechanical deformation and failure of multilayered films

机译:多层薄膜机电变形及失效

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摘要

Layer thickness was found to have a significant effect on the irreversible electromechanical deformation and the failure mechanism in polycarbonate (PC)/poly (vinylidene fluoride) (PVDF) multilayered films when subjected to an electrical impulse in a DC needle-plane configuration. Three distinct regions of behavior were observed. Region I comprised thick layer systems that exhibited only irreversible center deformation. The improvement to failure resistance compared to the monolithic films was attributed to the interphase between the two components. Region II films with an intermediate layer thickness showed both an irreversible center deformation and a treeing mechanism which were observed to simultaneously occur. The surface treeing mechanism, similar to the lightning treeing phenomena in nature, occurs only at impact rates. The tree morphology showed large amounts of plowing, indicating that this damage mechanism can dissipate a large amount of energy prior to electromechanical fracture of the film. Region III films comprise ultrathin layers in the nanoscale and showed no treeing. The unique interphase region between these ultrathin layers was estimated to be at least ten percent of the overall layered structure. These films behaved similar to monolithic materials with improved electromechanical failure characteristics. This work complements the enhanced dielectric performance of multilayer films observed in earlier investigations.
机译:研究发现,当在直流针-平面结构中受到电脉冲时,层厚度对聚碳酸酯(PC)/聚偏氟乙烯(PVDF)多层膜的不可逆机电变形和失效机制有显著影响。观察到三个不同的行为区域。区域I包括厚层系统,仅表现出不可逆的中心变形。与整体薄膜相比,耐破坏性的提高归因于两个组件之间的界面。具有中间层厚度的区域II薄膜显示出不可逆的中心变形和同时发生的树状机制。表面树木形成机制类似于自然界中的闪电树木现象,仅在撞击速率下发生。树的形态显示了大量的犁削,表明这种损伤机制可以在薄膜机电断裂之前耗散大量能量。第三区薄膜由纳米级超薄层组成,没有树状结构。据估计,这些超薄层之间独特的界面区域至少占整个层状结构的10%。这些薄膜的表现类似于整体材料,具有更好的机电失效特性。这项工作补充了在早期研究中观察到的多层膜的增强介电性能。

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