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Characterization of clay-modified thermoset polymers under various environmental conditions for the use in high-voltage power pylons

机译:在各种环境条件下用于高压电力塔的粘土改性热固性聚合物的表征

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摘要

The effect of nanoclay on various material properties like damping and strength of typical thermoset polymers, such as epoxy and vinyl ester, was investigated. Different environmental conditions typical for high-voltage transmission pylons made of composite materials were taken into account. Resin samples were prepared with various clay weight fractions ranging from 0% to 3%. Scanning electron microscopy, transmission electron microscopy, X-ray diffraction and rheological analysis were used to study the morphology and the structure of the nanocomposites. For all nanoclay-modified thermoset polymers, the morphology was found to be of exfoliated structure mainly. Static, uniaxial tensile tests showed that the addition of nanoclay to thermoset polymers led to a beneficial effect on the stiffness, whereas the tensile strength and ductility significantly decreased. When exposed to different environmental conditions, nanoclay was found to have a positive influence on the dynamic properties, analysed by a dynamic mechanical thermal analysis. The addition of nanoclay to the thermoset resin led to an increase of the damping properties by up to 28% for vinyl ester and up to 6% for epoxy at -20 degrees C. The dielectric properties were evaluated by electrical breakdown strength tests resulting in 11% better insulating behaviour for nanoclay-modified vinyl ester.
机译:研究了纳米粘土对各种材料性能的影响,例如阻尼和典型热固性聚合物(例如环氧和乙烯基酯)的强度。考虑了复合材料制成的高压输电塔的典型环境条件。制备的树脂样品的粘土重量分数范围为0%至3%。利用扫描电子显微镜,透射电子显微镜,X射线衍射和流变学分析研究了纳米复合材料的形貌和结构。对于所有纳米粘土改性的热固性聚合物,发现其形态主要为剥离结构。静态单轴拉伸试验表明,向热固性聚合物中添加纳米粘土可对刚度产生有利影响,而拉伸强度和延展性则明显降低。当暴露在不同的环境条件下时,发现纳米粘土对动态性能具有积极影响,通过动态机械热分析进行分析。在热固性树脂中添加纳米粘土导致在-20摄氏度下乙烯基酯的阻尼特性提高了28%,环氧树脂的阻尼特性提高了6%。通过电击穿强度测试评估了介电性能,得出11纳米粘土改性的乙烯基酯的绝缘性能提高了%。

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