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An Investigation of Surface Tracking Characteristics and Factors Influencing Epoxy Resin Pouring Insulation for Dry-type Reactors

机译:影响干式反应器环氧树脂浇注隔膜的表面跟踪特性及因素研究

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This study aimed to understand the deterioration mechanisms of epoxy resin pouring insulation for outdoor dry-type reactors under the effect of long-term surface tracking discharge. Epoxy resin insulation boards similar to the main insulation composition of the dry-type reactor were poured as the experimental material. A tracking experimental platform of insulation materials was built using an inclined plate method. The tracking discharge characteristics and surface erosion of the insulation materials were measured and analyzed. The characteristics of partial discharge, erosion, hydrophobicity and surface roughness were measured experimentally. Surface morphology, three-dimensional morphology and Fourier infrared images at different stages during erosion of the epoxy resin insulation material were analyzed. The effect of glass fiber content on the tracking resistance to erosion was characterized. The results show that the tracking process of epoxy resin insulation material experienced initiation, stability, development and outbreak periods. The flashover discharge corresponding to the development period was the main reason for the carbonization of the insulating material. During the tracking process, with a change in surface topography and formation of surface products, the surface roughness of the material generally increased along with the surface roughness which rose fastest during the discharge outbreak period. The changes in the surface morphology and three-dimensional morphology of the epoxy resin material constitute the basis for assessing the condition of the insulation surface and development of the erosion. The discharge capacity of epoxy resin generally shows an exponential increase. Adding 20 wt% of glass fibers that are evenly distributed and have reduced exposure can improve the tracking resistance of epoxy resin insulation materials.
机译:本研究旨在了解在长期表面跟踪放电的影响下,了解室外干式反应器的环氧树脂浇注绝缘的劣化机制。倒入类似于干式反应器的主要绝缘组合物的环氧树脂绝缘板作为实验材料。使用倾斜的板法建立了绝缘材料的跟踪实验平台。测量并分析了绝缘材料的跟踪放电特性和表面腐蚀。实验测量局部放电,侵蚀,疏水性和表面粗糙度的特征。分析了环氧树脂绝缘材料腐蚀的不同阶段的表面形态,三维形态和傅立叶红外图像。玻璃纤维含量对侵蚀性耐腐蚀的影响。结果表明,环氧树脂绝缘材料的跟踪过程经历了启动,稳定性,发育和爆发期。对应于开发时期的闪络放电是绝缘材料碳化的主要原因。在跟踪过程中,随着表面形貌的变化和表面产品的形成,材料的表面粗糙度通常随着在排出爆发时期期间最快的表面粗糙度而增加。环氧树脂材料的表面形态和三维形态的变化构成了评估绝缘表面条件和侵蚀的发展的基础。环氧树脂的放电容量通常显示指数增加。加入20wt%的均匀分布的玻璃纤维并具有降低的暴露可以提高环氧树脂绝缘材料的跟踪电阻。

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