4.5 Article

Effects of γ irradiation on the compression and inter-laminar shear properties of G10 for the BESIII beam pipe supporting flange

期刊

FUSION ENGINEERING AND DESIGN
卷 117, 期 -, 页码 24-29

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.fusengdes.2017.02.029

关键词

Epoxy glass cloth-laminated sheets; gamma irradiation; Compression property; Inter-laminar shear property

资金

  1. National Natural Science Foundation of China [51605025]
  2. Beijing Higher Education Young Elite Teacher Project [YETP0365]
  3. Major Projects of the Chinese Academy of Sciences Funded Project [KJ95T-03]

向作者/读者索取更多资源

Given their excellent electrical insulating performance and mechanical properties, G10 epoxy glass cloth-laminated sheets (G10) are used as spare materials for the supporting flange of the Beijing Spectrometer III beam pipe in the Beijing Electron Positron Collider II (BECPII). However, during BECPII operation, the beam pipe suffers a significant amount of gamma and neutron irradiation. Studies have demonstrated that when the G10 is exposed to gamma irradiation for a sufficiently long time, the material will become damaged, and its mechanical properties will change. In the present work, the compression strength and inter-laminar shear strength (ILSS) of G10 samples were tested. Results showed that after 20 and 200 kGy gamma irradiation, the compression strength decreased by 1.26% and 2.15%, respectively, whereas the ILSS increased by 16.17% and 17.95%, respectively. The micro-structural pattern of the samples was investigated by scanning electron microscopy. The firm mesh structure of the epoxy resin matrix was destroyed, and the bonding interface between the glass fibers and the epoxy resin was damaged after gamma irradiation. Some microcracks were observed in the glass fibers after gamma irradiation. The epoxy resin before and after the irradiation was analyzed by infrared spectroscopy. Results showed that the degradation reaction was dominant during the irradiation compared with the cross-linking reaction in the epoxy resin, leading to the fracture of the molecular chain. The degree of binding between the epoxy resin also decreased. (C) 2017 Elsevier B.V. All rights reserved.

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