• Journal of Inorganic Materials
  • Vol. 34, Issue 7, 741 (2019)
Xiao-Yang ZHANG, Hai-Bo PENG*, Feng-Fei LIU, Yan ZHAO, Meng-Li SUN, Ming GUAN, Bing-Tao ZHANG, Xin DU, Wei YUAN, and Tie-Shan WANG*
Author Affiliations
  • School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China
  • show less
    DOI: 10.15541/jim20180439 Cite this Article
    Xiao-Yang ZHANG, Hai-Bo PENG, Feng-Fei LIU, Yan ZHAO, Meng-Li SUN, Ming GUAN, Bing-Tao ZHANG, Xin DU, Wei YUAN, Tie-Shan WANG. Mechanical Properties of Borosilicate Glass with Different Irradiation of Heavy Ions[J]. Journal of Inorganic Materials, 2019, 34(7): 741 Copy Citation Text show less
    References

    [1] J WEBER W, C EWING R, A ANGELL C et al. Radiation effects in glasses used for immobilization of high-level waste and plutonium disposition. Journal of Materials Research, 12, 1948-1978(1997).

    [2] C JANTZEN, D KAPLAN, N BIBLER et al. Performance of a buried radioactive high level waste (HLW) glass after 24 years. Journal of Nuclear Materials, 378, 244-256(2008).

    [3] B WADE. The management of radioactive wastes. Physics in Technology, 13, 112(1982).

    [4] S PEUGET, T FARES, A MAUGERI E et al. Effect of 10 B(n, α) 7 Li irradiation on the structure of a sodium borosilicate glass. Nuclear Instruments & Methods in Physics Research, 327, 22-28(2014).

    [5] D BONFILS J, S PEUGET, G PANCZER et al. Effect of chemical composition on borosilicate glass behavior under irradiation. Journal of. Non-Crystalline Solids, 356, 388-393(2010).

    [6] W J WEBER. Models and mechanisms of irradiation-induced amorphization in ceramics. Nuclear Instruments & Methods in Physics Research, 166-167, 98-106(2000).

    [7] A ABBAS, Y SERRUYS, D GHALEB et al. Evolution of nuclear glass structure under α-irradiation. Nuclear Instruments & Methods in Physics Research, 166-167, 445-450(2000).

    [8] N OLLIER, B BOIZOT, B REYNARD et al. Beta irradiation borosilicate glasses: the role of the mixed alkali effect. Nuclear Inst & Methods in Physics Research B, 218, 176-182(2006).

    [9] F ZHANG G, S WANG T, J YANG K et al. Raman spectra and nano-indentation of Ar-irradiated borosilicate glass. Nuclear Instruments & Methods in Physics Research, 316, 218-221(2013).

    [10] J YANG K, S WANG T, F ZHANG G et al. Study of irradiation damage in borosilicate glass induced by He ions and electrons. Nuclear Inst & Methods in Physics Research B, 307, 541-544(2013).

    [11] S LUO, L LI, B TANG et al. Synroc immobilization of high level waste (HLW) bearing a high content of sodium. Waste Management, 18, 55-59(1998).

    [12] M DELAYE J, S PEUGET, G BUREAU et al. Molecular dynamics simulation of radiation damage in glasses. Journal of Non-Crystalline Solids, 357, 2763-2768(2011).

    [13] L JOSLIN D, C OLIVER W. A new method for analyzing data from continuous depth-sensing microindentation tests. Journal of Materials Research, 5, 123-126(1990).

    [14] L ROUTBORT J, H MATZKE. The effect of composition and radiation on the fracture of a nuclear waste glass. Materials Science & Engineering, 58, 229-237(1983).

    [16] S PEUGET, Y NOËL P, L LOUBET J et al. Effects of deposited nuclear and electronic energy on the hardness of R7T7-type containment glass. Nuclear Instruments & Methods in Physics Research, 246, 379-386(2006).

    [17] H PENG, M SUN, F LIU et al. Potential effect on the interaction of highly charged ion with graphene. Nuclear Instruments & Methods in Physics Research, 407, 291-296(2017).

    [18] D MANARA, A GRANDJEAN, D NEUVILLE. Advances in understanding the structure of borosilicate glasses: a Raman spectroscopy study. American Mineralogist, 94, 777-784(2009).

    [19] B BOIZOT, S AGNELLO, B REYNARD et al. Raman spectroscopy study of β-irradiated silica glass. Journal of Non-Crystalline Solids, 325, 22-28(2003).

    [20] B PENG H, L SUN M, J YANG K et al. Effect of irradiation on hardness of borosilicate glass. Journal of. Non-Crystalline Solids, 443, 143-147(2016).

    [21] G KARAKURT, A ABDELOUAS, P GUIN J et al. Understanding of the mechanical and structural changes induced by alpha particles and heavy ions in the French simulated nuclear waste glass. Journal of Nuclear Materials, 475, 243-254(2016).

    [22] H MIR A, I MONNET, M TOULEMONDE et al. Mono and sequential ion irradiation induced damage formation and damage recovery in oxide glasses: stopping power dependence of the mechanical properties. Journal of Nuclear Materials, 469, 244-250(2016).

    [23] H MIR A, M TOULEMONDE, C JEGOU et al. Understanding and simulating the material behavior during multi-particle irradiations. Scientific Reports, 6(2016).

    [24] H KIEU L, D KILYMIS, M DELAYE J et al. Discussion on the structural origins of the fracture toughness and hardness changes in rapidly quenched borosilicate glasses: a molecular dynamics study. Procedia Materials Science, 7, 262-271(2014).

    [25] L CHEN, S WANG T, F ZHANG G et al. XPS and Raman studies of electron irradiated sodium silicate glass. Chinese Physics B, 22(2013).

    [26] W YUAN, H PENG, M SUN et al. Structural origin of hardness decrease in irradiated sodium borosilicate glass. Journal of Chemical Physics, 147(2017).

    [27] A KILYMIS D, M DELAYE J. Nanoindentation studies of simplified nuclear glasses using molecular dynamics. Journal of Non-Crystalline Solids, 401, 147-153(2014).

    [28] B PENG H, F LIU F, T ZHANG B et al. Comparative studies of irradiation effects in borosilicate glass and fused silica irradiated by energetic Xe ions. Acta Physica Sinica, 67(2018).

    Xiao-Yang ZHANG, Hai-Bo PENG, Feng-Fei LIU, Yan ZHAO, Meng-Li SUN, Ming GUAN, Bing-Tao ZHANG, Xin DU, Wei YUAN, Tie-Shan WANG. Mechanical Properties of Borosilicate Glass with Different Irradiation of Heavy Ions[J]. Journal of Inorganic Materials, 2019, 34(7): 741
    Download Citation