An investigation of shock induced temperature rise and melting of bismuth using high-speed optical pyrometry

被引:0
|
作者
D. Partouche-Sebban
D.B. Holtkamp
J.L. Pélissier
J. Taboury
A. Rouyer
机构
[1] Commissariat à l'Energie Atomique,
[2] BP12,undefined
[3] 91680 Bruyères Le Châtel,undefined
[4] France ,undefined
[5] Los Alamos National Laboratory,undefined
[6] Los Alamos,undefined
[7] NM 87545,undefined
[8] USA ,undefined
[9] Institut d'Optique Théorique et Appliquée,undefined
[10] BP 147,undefined
[11] 91403 Orsay,undefined
[12] France ,undefined
来源
Shock Waves | 2002年 / 11卷
关键词
Key words: Temperature, Bismuth, Emissivity, Pyrometry, Shock, Melting;
D O I
暂无
中图分类号
学科分类号
摘要
Temperature is a basic parameter in physics, but in the case of shock-compressed metals its measurement remains difficult and controversial. Improvements in accuracy of a high-speed optical pyrometer enabled us to study interesting features of bismuth: temperatures of shock-loaded samples measured through a lithium-fluoride anvil and (indirectly) part of the fusion curve. An improved method of analyzing optical pyrometry data is also discussed.
引用
收藏
页码:385 / 392
页数:7
相关论文
共 50 条
  • [1] An investigation of shock induced temperature rise and melting of bismuth using high-speed optical pyrometry
    Partouche-Sebban, D
    Holtkamp, DB
    Pélissier, JL
    Taboury, J
    Rouyer, A
    SHOCK WAVES, 2002, 11 (05) : 385 - 392
  • [2] Examining the high-pressure response and shock melting in cerium using optical pyrometry
    Jensen, B. J.
    Hartsfield, T. M.
    Holtkamp, D. B.
    Cherne, F. J.
    Corrow, R. B.
    Graves, T. E.
    Iverson, A. J.
    PHYSICAL REVIEW B, 2020, 102 (21)
  • [3] Subpixel Temperature Measurements in Plasma Jet Environments Using High-Speed Multispectral Pyrometry
    Fu, Tairan
    Liu, Jiangfan
    Duan, Minghao
    Li, Sen
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2018, 140 (07):
  • [4] Temperature measurements of shock heated materials using multispectral pyrometry: Application to bismuth
    Blanco, E
    Mexmain, JM
    Chapron, P
    SHOCK WAVES, 1999, 9 (03) : 209 - 214
  • [5] Temperature measurements of shock heated materials using multispectral pyrometry: Application to bismuth
    Commsrt. a l'Energia Atomique, Centre d'Etudes de Valduc, 21120 Is-sur-Tille, France
    不详
    Shock Waves, 3 (209-214):
  • [6] Temperature measurements of shock heated materials using multispectral pyrometry: Application to bismuth
    E. Blanco
    J.M. Mexmain
    P. Chapron
    Shock Waves, 1999, 9 : 209 - 214
  • [7] Effective temperature rise during propagation of shock wave and high-speed deformation in metals
    Ryazanov, AI
    Pavlov, SA
    Kiritani, M
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2003, 350 (1-2): : 245 - 250
  • [8] Temperature hysteresis in the unstable combustion mode of SHS: experiment with high-speed micro-pyrometry
    Gulyaev, P.
    6TH INTERNATIONAL CONGRESS ENERGY FLUXES AND RADIATION EFFECTS, 2018, 1115
  • [9] HIGH-SPEED SHOCK-WAVE INVESTIGATION IN RAREFIED GAS
    MASOUD, M
    ELKHALAF.TA
    SOUPRUNE.VA
    NUCLEAR FUSION, 1969, 9 (01) : 49 - &
  • [10] Optical windows as materials for high-speed shock wave detectors
    Bhowmick, Mithun
    Basset, Will P.
    Matveev, Sergey
    Salvati, Lawrence, III
    Dlott, Dana D.
    AIP ADVANCES, 2018, 8 (12):