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Heat-resistant insulation film containing clay and wood components

机译:包含粘土和木材成分的耐热绝缘膜

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In this paper, we prepared a novel organic-inorganic nanocomposite film with excellent insulation properties relative to the polyimide film in mild-processing conditions. The main component of the film is clay mineral and wood component, i.e., the layered silicate and poly(ethylene glycol)-modified lignin derivatives. In the nanocomposite film, an interlayer of silicate was bound by triethanolamine. Furthermore, the lignin derivatives filled the voids of the layered silicate, producing a defect-free densely packed nanocomposite film. This unique structure of the nanocomposite film provides high-thermal stability, a low thermal expansion coefficient of film consisting of clay and lignin derivatives, low gas transmittance rate, low volume/surface resistivity, and high dielectric breakdown voltage. The obtained nanocomposite film was installed in a planar-type transformer where it acted as an insulation film in the transformer coil with high dielectric breakdown voltage.
机译:在本文中,我们制备了一种新型有机-无机纳米复合材料薄膜,该薄膜在温和的加工条件下相对于聚酰亚胺薄膜具有优异的绝缘性能。膜的主要成分是粘土矿物和木材成分,即层状硅酸盐和聚(乙二醇)改性的木质素衍生物。在纳米复合膜中,硅酸盐的中间层被三乙醇胺结合。此外,木质素衍生物填充了层状硅酸盐的空隙,从而产生了无缺陷的致密堆积的纳米复合膜。纳米复合膜的这种独特结构提供了高的热稳定性,由粘土和木质素衍生物组成的膜的低热膨胀系数,低的气体透过率,低的体积/表面电阻率以及高的介电击穿电压。将获得的纳米复合膜安装在平面型变压器中,在绝缘变压器中,它用作绝缘线圈中具有高介电击穿电压的绝缘膜。

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