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Potential and limitations of ceramics in terms of structural and electrical integrity in fusion environments

机译:在熔融环境中陶瓷在结构和电气完整性方面的潜力和局限性

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The characteristic behavior of the nucleation and growth process of defect clusters in various ceramic materials irradiated with electrons, ions and neutrons is a good measure to evaluate the structural integrity during irradiation. In order to provide insight on the origin of the structural itegrity, this review treats the characteristic difference in defect cluster evolution in M(sub g)Al(sub 2)O(sub 4), (alpha)-Al(sub 2)O(sub 3) and MgO. This review also includes experimental results which show the importance of concurrent irradiation effects with transmutation-produced gases and of irradiation spectrum. Further attention is focused on the dynamic effects of irradiation, such as radiation induced conductivity and radiation-induced electrical degradation (RIED) during irradiation with electrons, ions, fission neutrons and fusion neutrons. Since the phenomenon of RIED evokes serious technological problems for applications of ceramics in irradiation environments, this paper heavily emphasizes the nature and possible mechanisms of RIED. Data obtained from recent experiments that used standardized procedures for in-situ measurements of electrical conductivity are discussed.

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