The dependence of carbon materials thermal shock resistance on their physical properties

被引:0
|
作者
Virgil'ev, Yu.S. [1 ]
Buzhinskij, O.I. [1 ]
机构
[1] NII Konstruktsionnykh Materialov na, Osnove Grafita (NIIgrafit), Moscow, Russia
来源
关键词
Carbon - Electron beams - Neutrons - Radiation effects - Thermal conductivity of solids - Thermal effects - Thermal load;
D O I
暂无
中图分类号
O572 [高能物理学];
学科分类号
摘要
The results of thermal shock tests on various structural carbon materials in different conditions of electron pulses duration are summarized. From the estimations done follows that the level of thermal shock resistance decreasing is higher for lower irradiation temperature and higher accumulated neutron fluence. Experimental results on thermal shock resistance reduction after neutron irradiation obtained by Japanese researchers confirm our estimations.
引用
收藏
页码:23 / 27
相关论文
共 50 条
  • [31] Influence of mechanical properties on thermal shock resistance of TBCs
    Gao, Minghao
    Xu, Na
    Zhang, Jia
    Luan, Shengjia
    Chang, Hui
    Hou, Wanliang
    Chang, Xinchun
    SURFACE ENGINEERING, 2021, 37 (05) : 572 - 580
  • [32] Temperature dependence of the thermal properties of optical memory materials
    Kuwahara, Masashi
    Suzuki, Osamu
    Yamakawa, Yuzo
    Taketoshi, Naoyuki
    Yagi, Takashi
    Fons, Paul
    Fukaya, Toshio
    Tominaga, Junji
    Baba, Tetsuya
    Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers, 2007, 46 (6 B): : 3909 - 3911
  • [33] Temperature dependence of the thermal properties of optical memory materials
    Kuwahara, Masashi
    Suzuki, Osamu
    Yamakawa, Ytizo
    Taketoshi, Naoyuki
    Yagi, Takashi
    Fons, Paul
    Fukaya, Toshio
    Tominaga, Junji
    Baba, Tetsuya
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 2007, 46 (6B): : 3909 - 3911
  • [34] Thermal and structural dependence of auxetic properties of composite materials
    Jopek, Hubert
    Strek, Tomasz
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2015, 252 (07): : 1551 - 1558
  • [35] Modelling of thermal shock experiments of carbon based materials in JUDITH
    Ogorodnikova, OV
    Pestchanyi, S
    Koza, Y
    Linke, J
    JOURNAL OF NUCLEAR MATERIALS, 2005, 337 (1-3) : 791 - 794
  • [36] On the Dependence of the Thermal Resistance on Collector Properties of SiGe HBTs
    Korndoerfer, F.
    Wipf, Ch.
    2010 IEEE BIPOLAR/BICMOS CIRCUITS AND TECHNOLOGY MEETING (BCTM), 2010, : 269 - 272
  • [37] THERMAL SHOCK RESISTANCE OF CARBON-MAGNESIA REFRACTORIES.
    Landy, R.A.
    Darroudi, T.
    Hughes, R.H.
    1600, (49):
  • [38] Experimental Study on Thermal Shock Resistance of Magnesia Carbon Brick
    Lv Changhai
    Li Jing
    Lv Renxiang
    Tian Shouxin
    12TH INTERNATIONAL SYMPOSIUM ON HIGH-TEMPERATURE METALLURGICAL PROCESSING, 2022, : 533 - 540
  • [39] Improving thermal shock and ablation resistance of high thermal conductivity carbon/carbon composites by introducing carbon nanotubes
    Xue-Song Liu
    Qian-Gang Fu
    Han-Hui Wang
    Ming-De Tong
    Jia-Ping Zhang
    Qiang Song
    Carbon Letters, 2020, 30 : 721 - 733
  • [40] Improving thermal shock and ablation resistance of high thermal conductivity carbon/carbon composites by introducing carbon nanotubes
    Liu, Xue-Song
    Fu, Qian-Gang
    Wang, Han-Hui
    Tong, Ming-De
    Zhang, Jia-Ping
    Song, Qiang
    CARBON LETTERS, 2020, 30 (06) : 721 - 733