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Fabrication of ZnO-Al2O3-PTFE Multilayer Nano-Structured Functional Film on Cellulose Insulation Polymer Surface and Its Effect on Moisture Inhibition and Dielectric Properties

机译:纤维素绝缘聚合物表面ZnO-Al2O3-PTFE多层纳米结构功能膜的制备及其对水分抑制和介电性能的影响

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摘要

After a century of practice, cellulose insulating polymer (insulating paper/pressboard) has been shown to be one of the best and most widely used insulating materials in power transformers. However, with the increased voltage level of the transformer, research has focused on improving the insulation performance of the transformer’s cellulose insulation polymer. Considering the complex environment of the transformer, it is not enough to improve the single performance of the insulating polymer. In this study, a nano-structured ZnO-Al2O3-PTFE (polytetrafluoroethylene) multifunctional film was deposited on the surface of insulating pressboard by radio frequency (RF) magnetron sputtering. The effect of the multilayered ZnO-Al2O3-PTFE functional film on the dielectric and water contact angle of the cellulose insulating polymer was investigated. The scanning electron microscopy/energy dispersive spectrometry (SEM/EDS) showed that the nano-structured ZnO-Al2O3-PTFE functional film was successfully deposited on the cellulose insulation pressboard surface. The functional film presented an obvious stratification phenomenon. By analyzing the result of the contact angle, it was found that the functional film shields the hydroxyl group of the inner cellulose and improves hydrophobicity. The AC breakdown field strength of the treated samples was obviously increased (by 12 to ~17%), which means that the modified samples had a better dielectric insulation performance. This study provides a surface modification method to comprehensively improve electrical properties and the ability to inhibit the moisture of the cellulose insulating polymer, used in a power transformer.
机译:经过一个世纪的实践,纤维素绝缘聚合物(绝缘纸/压纸板)已被证明是电力变压器中最好,应用最广泛的绝缘材料之一。但是,随着变压器电压水平的提高,研究集中在改善变压器纤维素绝缘聚合物的绝缘性能上。考虑到变压器的复杂环境,仅改善绝缘聚合物的单性能是不够的。在这项研究中,纳米结构的ZnO-Al2O3-PTFE(聚四氟乙烯)多功能薄膜通过射频(RF)磁控溅射沉积在绝缘压纸板的表面上。研究了多层ZnO-Al2O3-PTFE功能膜对纤维素绝缘聚合物介电常数和水接触角的影响。扫描电子显微镜/能量色散法(SEM / EDS)表明,纳米结构的ZnO-Al2O3-PTFE功能膜成功沉积在纤维素绝缘压纸板表面。功能膜呈现明显的分层现象。通过分析接触角的结果,发现功能膜屏蔽了内部纤维素的羟基并改善了疏水性。经处理的样品的交流击穿场强明显提高(提高了12%至〜17%),这意味着改性样品具有更好的介电绝缘性能。这项研究提供了一种表面改性方法,可以全面改善电力互感器中使用的电性能和抑制纤维素绝缘聚合物水分的能力。

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