Superconducting Materials and ApplicationsAdvanced Materials and Semiconductor TechnologiesHigh voltage insulation and dielectric phenomena

Nagaraju Guvvala, C. H. Kim, P. Cheetham, Maksudul Alam, C. Manankandayalage, W. Frey, E. Prebys, M. Tripathi, Sastry V. Pamidi

2026.3.5Advanced Manufacturing-Polymer & Composites Science

DOI: 10.1080/20550340.2026.2639354

Abstract

Studies on radiation-resistant electrical insulation for superconducting magnets of nuclear fusion power plants are discussed. Metal oxide nanoparticle-incorporated organic polymer composite (MONAP) insulation films were manufactured and studied for their dielectric breakdown strength after exposure to neutrons and proton radiation at varying levels. Samples with up to 5 wt% of nanoparticles (NPs) of SiO2, MgO, and ZrO2 were studied. The samples were exposed to radiation of up to 2 × 1016 neutrons/cm2 and 200 Mrad of protons. The addition of the nanoparticles improved the radiation resistance of the MONAP, and the performance depended on the type of NPs and the radiation exposure. Dielectric breakdown measurements at 77 K showed little degradation. Enhancement of dielectric strength was observed in some instances.

Citation format

GUVVALA, Nagaraju, et al. Dielectric properties of neutron and proton irradiated polymeric nanocomposite insulation for superconducting magnets of fusion power plants. Advanced Manufacturing-Polymer & Composites Science, 2026, 12(1).