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Recently, the research group of researcher Huang Qunying from the Institute of Nuclear Energy Safety of the Hefei Research Institute of the Chinese Academy of Sciences has made new progress in the development of samarium-containing epoxy resin neutron shielding materials
Advanced nuclear energy systems put forward higher thermal stability, mechanical properties and high-efficiency neutron shielding performance requirements for neutron shielding materials.
The research results show that when the addition amount of Sm2O3-APTES is 30 wt%, the initial thermal decomposition temperature, glass transition temperature and Young's modulus of the composite are significantly improved compared with the matrix
Thermal Properties of Sm2O3-APTES/AFG-90H Composites
Relevant research results provide engineering solutions for the research and development of lightweight and high-temperature resistant neutron shielding materials for advanced nuclear energy systems, and also provide new ideas for the research and development of high-performance neutron shielding materials for advanced nuclear energy systems