• Journal of the Chinese Ceramic Society
  • Vol. 52, Issue 7, 2364 (2024)
YANG Shengyun1, CAO Zhenbo1,2,*, ZHANG Meilun1, ZHANG Yang1,2..., WANG Ke1, HAN Yu1, LV Haifeng1, ZHOU You1,2 and JIA Jinsheng1,2|Show fewer author(s)
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.14062/j.issn.0454-5648.20230929 Cite this Article
    YANG Shengyun, CAO Zhenbo, ZHANG Meilun, ZHANG Yang, WANG Ke, HAN Yu, LV Haifeng, ZHOU You, JIA Jinsheng. Analysis and Control of Volatile Matter in Radiation Resistant High Lead Glass Melting[J]. Journal of the Chinese Ceramic Society, 2024, 52(7): 2364 Copy Citation Text show less
    References

    [2] MA C, ZHAO K. Perovskite single-crystal X-ray detectors: B-site engineering for future wearable electronics[J]. Chin J Lumin, 2023, 44(3): 486-495.

    [3] ZHANG Xian, LIU Hui, JIA Jinsheng. Electro Opt Technol Appl, 2013, 28(1): 29-31.

    [4] AL-GHAMDI H, SAYYED M I, KUMAR A, et al. Effect of PbO and B2O3 on the physical, structural, and radiation shielding properties of PbO-TeO2-MgO-Na2O-B2O3 glasses[J]. Sustainability, 2022, 14(15): 9695.

    [5] MOSTAF A M A, ISSA S A M, ZAKALY H M H, et al. Radiation shielding and optical features for a PbO-BaO-B2O3 system[J]. Radiat Phys Chem, 2023, 202: 110566.

    [6] WANG Chengyu, TAO Ying. Glass Enamel, 2000, 28(4): 67-71.

    [7] QIU Z Y. The volatilization of lead oxide during the melting of lead glass in a tank furnace[C]//Electronic Glass Branch of China Silicate Society, 1980.

    [8] SHI A R. Ways to reduce the volatilization of lead oxide during the melting process of colored cone glass[C]//Electronic Glass Branch of China Silicate Society, 1993.

    [9] WU Bochen, ZHOU Chunshan. Glass Enamel, 1981, 9(3): 27-29.

    [10] YI Guanhong, HU Hefang, YE Anmin. J Chin Ceram Soc, 1995, 23(5): 593-597.

    [11] LIAN J, LI Q, CAO Z B, et al. Effect of nano-scale morphology on micro-channel wall surface and electrical characterization in lead silicate glass micro-channel plate[C]//AOPC 2017: Optoelectronics and Micro/Nano-Optics. Beijing, China: SPIE, 2017, 10460: 351-357.

    [12] HUANG Yonggang, GU Zhenan, ZHANG Yang, et al. J Chin Ceram Soc, 2012, 40(7): 994-999.

    [13] ZHANG Meilun, CAO Zhenbo, YANG Shengyun, et al. J Synth Cryst, 2023, 52(10): 1867-1871.

    [14] SUNDARA RAO M, SANYAL B, BHARGAVI K, et al. Influence of induced structural changes on thermoluminescence characteristics of γ-ray irradiated PbO-Al2O3-SiO2: Dy3+ glasses[J]. J Mol Struct, 2014, 1073: 174-180.

    [15] CHEN J W, LI A, ZHONG C, et al. Regulating the valence state of lead ions in lead aluminosilicate glass to improve the passivation performance for advanced chip packaging[J]. Appl Surf Sci, 2024, 651: 159208.

    [16] ZHONG C, LI A, YAN J T, et al. Properties and mechanism of amorphous lead aluminosilicate passivation layers used in semiconductor devices through molecular dynamic simulation[J]. Ceram Int, 2022, 48(21): 32455-32463.

    YANG Shengyun, CAO Zhenbo, ZHANG Meilun, ZHANG Yang, WANG Ke, HAN Yu, LV Haifeng, ZHOU You, JIA Jinsheng. Analysis and Control of Volatile Matter in Radiation Resistant High Lead Glass Melting[J]. Journal of the Chinese Ceramic Society, 2024, 52(7): 2364
    Download Citation