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Investigation of Hydrothermally Stressed Silicone Rubber/Silica Micro and Nanocomposite for the Coating High Voltage Insulation Applications. | LitMetric

AI Article Synopsis

  • * Adding fillers like micro-silica or nanosilica improves the material's durability and hydrophobicity under specific conditions.
  • * Among the tested systems, nanocomposites with 5% nanosilica demonstrated the best performance in maintaining structural stability and hydrophobic behavior against aging.

Article Abstract

Silicone rubber is a promising insulating material that has been performing well for different insulating and dielectric applications. However, in outdoor applications, environmental stresses cause structural and surface degradations that diminish its insulating properties. This effect of degradation can be reduced with the addition of a suitable filler to the polymer chains. For the investigation of structural changes and hydrophobicity four different systems were fabricated, including neat silicone rubber, a micro composite (with 15% micro-silica filler), and nanocomposites (with 2.5% and 5% nanosilica filler) by subjecting them to various hydrothermal conditions. In general, remarkable results were obtained by the addition of fillers. However, nanocomposites showed the best resistance against the applied stresses. In comparison to neat silicone rubber, the stability of the structure and hydrophobic behavior was better for micro-silica, which was further enhanced in the case of nanocomposites. The inclusion of 5% nanosilica showed the best results before and after applying aging conditions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269730PMC
http://dx.doi.org/10.3390/ma14133567DOI Listing

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