Выпуски

 / 

1984

 / 

октябрь

  

Обзоры актуальных проблем


Металлы в процессе быстрого нагревания электрическим током большой плотности

,  а
а Институт теплофизики экстремальных состояний, Объединенный институт высоких температур РАН, Москва, Российская Федерация

Введение. Вопросы методики. Плавление и жидкое состояние тугоплавких металлов. Электросопротивление и теплота плавления. Электросопротивление и тепловое расширение жидких металлов. Зависимость электросопротивления от давления. Электрический взрыв металла. Исчезновение металлической проводимости. Термоэлектронная эмиссия. Аномалии термоэлектронной эмиссии. Явления в диоде с вольфрамовым эмиттером. Термоавтоэлектронная эмиссия. Теплоемкость. Заключение. Цитированная литература.

Текст pdf (3,3 Мб)
English fulltext is available at DOI: 10.1070/PU1984v027n10ABEH004128
PACS: 65.20.+w, 72.15.Cz, 79.40.+z, 64.70.Dv (все)
DOI: 10.3367/UFNr.0144.198410b.0215
URL: https://ufn.ru/ru/articles/1984/10/b/
Цитата: Лебедев С В, Савватимский А И "Металлы в процессе быстрого нагревания электрическим током большой плотности" УФН 144 215–250 (1984)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

English citation: Lebedev S V, Savvatimskii A I “Metals during rapid heating by dense currentsSov. Phys. Usp. 27 749–771 (1984); DOI: 10.1070/PU1984v027n10ABEH004128

Статьи, ссылающиеся на эту (175) ↓ Похожие статьи (20)

  1. Savvatimskiy A, Korobenko V Thermophysical Properties of Nuclear Energy Metals in the Liquid State Chapter 13 (2026) p. 229
  2. Savvatimskiy A, Korobenko V Thermophysical Properties of Nuclear Energy Metals in the Liquid State Chapter 1 (2026) p. 1
  3. Savvatimskiy A, Korobenko V Thermophysical Properties of Nuclear Energy Metals in the Liquid State Chapter 12 (2026) p. 217
  4. Yan J-Yu, Guo X, Chen T-Ju J. Iron Steel Res. Int. 33 (3) (2026)
  5. Savvatimskiy A, Korobenko V Thermophysical Properties of Nuclear Energy Metals in the Liquid State Chapter 11 (2026) p. 195
  6. Savvatimskiy A, Korobenko V Thermophysical Properties of Nuclear Energy Metals in the Liquid State Chapter 6 (2026) p. 89
  7. Alabin K A, Arshba R M et al Plasma Phys. Rep. 52 (1) 53 (2026)
  8. Onufriev S V, Savvatimskiy A I Žurnal èksperimentalʹnoj i teoretičeskoj fiziki 166 (5) 641 (2024)
  9. Romanova V M, Tilikin I N et al Plasma Phys. Rep. 50 (9) 1111 (2024)
  10. Wang Z, Wang T et al Defence Technology 32 348 (2024)
  11. Grikshtas R, Asmedianov N et al Physics of Plasmas 31 (6) (2024)
  12. Galtsov I S, Fokin V B et al Journal of Applied Physics 136 (14) (2024)
  13. Oreshkin V I, Baksht R B et al Physics of Plasmas 31 (10) (2024)
  14. Gao Ya, Yang T et al Physics of Fluids 36 (9) (2024)
  15. Li Ch, Han R et al IEEE Trans. on Ind. Applicat. 59 (1) 456 (2023)
  16. Dorovatovsky A V, Sheindlin M A, Minakov D V High Temp 61 (6) 871 (2023)
  17. Park S, Lee H, Chung K-Ja AIP Advances 13 (6) (2023)
  18. Onufriev S V, Savvatimskiy A I High Temp 61 (5) 623 (2023)
  19. Savvatimskiy A I, Onufriev S V, Aristova N M Успехи физических наук 192 (06) 642 (2022) [Savvatimskiy A I, Onufriev S V, Aristova N M Phys. Usp. 65 (06) 597 (2022)]
  20. Aristova N M, Belov G V High Temp 60 (1) 19 (2022)
  21. Savvatimskiy A I, Onufriev S V et al Ceramics International 48 (14) 19655 (2022)
  22. Ujah C O, Popoola A P I, Popoola O M J Mater Sci 57 (3) 1581 (2022)
  23. Sarkisov G S Journal of Applied Physics 131 (10) (2022)
  24. Suliz K V, Kolosov A Yu et al Advanced Powder Technology 33 (3) 103518 (2022)
  25. Savvatimskiy A I High Temp 60 (S2) S181 (2022)
  26. Bilbao L, Prieto Gonzalo Rodríguez Eur. Phys. J. Plus 137 (11) (2022)
  27. Maler D, Liverts M et al Physics of Plasmas 29 (10) (2022)
  28. Prieto Gonzalo Rodríguez, Fernández Menéndez Luis Javier и др Phys. Scr. 97 (8) 085603 (2022)
  29. Emelyanov O Physics of Plasmas 29 (7) (2022)
  30. Shi H, Yin G et al J. Phys. D: Appl. Phys. 54 (40) 403001 (2021)
  31. Pu Ya, Lv F et al AIP Advances 11 (6) (2021)
  32. Rae P J Physics of Plasmas 28 (3) (2021)
  33. Nominé A V, Gries T и др Journal of Applied Physics 130 (15) (2021)
  34. Collins G W, Valdivia M P et al Journal of Applied Physics 129 (7) (2021)
  35. Park S, Lee H et al Applied Physics Letters 119 (17) (2021)
  36. Nowak Mikołaj, Jakubiuk K et al Energies 15 (1) 99 (2021)
  37. Savvatimskii A I, Onufriev S V Phys.-Usp. 63 (10) 1015 (2020)
  38. Liu Y, Ren Y-J et al Physics of Plasmas 27 (3) (2020)
  39. Bilbao L, Rodríguez Prieto Gonzalo Metals 10 (4) 424 (2020)
  40. Aristova N M, Onufriev S V, Savvatimskiy A I High Temp 58 (5) 681 (2020)
  41. Oreshkin V I, Baksht R B IEEE Trans. Plasma Sci. 48 (5) 1214 (2020)
  42. Boguslavskii L Z, Sinchuk A V et al Surf. Engin. Appl.Electrochem. 56 (5) 590 (2020)
  43. Sarkisov G S Journal of Applied Physics 128 (18) (2020)
  44. Batra J, Saxena A K et al IEEE Trans. Plasma Sci. 48 (6) 2187 (2020)
  45. Han R, Wu J et al Matter and Radiation at Extremes 5 (4) (2020)
  46. Sarkisov G S Physics of Plasmas 27 (12) (2020)
  47. Onufriev S V, Savvatimskiy A I, Muboyadzhyan S A Mater. Res. Express 6 (12) 125554 (2020)
  48. Batra J, Jaiswar A C et al IEEE Trans. Plasma Sci. 47 (1) 596 (2019)
  49. Lv F, Liu P et al Computational Materials Science 170 109142 (2019)
  50. Lv F, Liu P et al Computational Materials Science 162 88 (2019)
  51. Pervikov A, Khrustalyov A et al Metals 9 (12) 1287 (2019)
  52. Oreshkin V I, Khishchenko K V et al Plasma Res. Express 1 (3) 035006 (2019)
  53. Onufriev S V, Savvatimskiy A I High Temp 56 (5) 678 (2018)
  54. Liu H, Zhao Ju et al Physics of Plasmas 25 (11) (2018)
  55. Minakov D V, Paramonov M A, Levashov P R AIP Advances 8 (12) 125012 (2018)
  56. Rodríguez Prieto Gonzalo, Bilbao L, Milanese M M Physics of Plasmas 25 (11) (2018)
  57. Sarkisov G S, Hamilton A, Sotnikov V I Phys. Rev. E 98 (5) (2018)
  58. Minakov D V, Paramonov M A, Levashov P R Phys. Rev. B 97 (2) (2018)
  59. Rososhek A, Efimov S et al Physics of Plasmas 25 (10) (2018)
  60. Shvilkin B Physical and Mathematical Modeling of Earth and Environment Processes Springer Geology Chapter 18 (2018) p. 164
  61. Romanova V M, Ivanenkov G V et al Physics of Plasmas 25 (11) (2018)
  62. Hamilton A, Sotnikov V I, Sarkisov G S Journal of Applied Physics 124 (12) (2018)
  63. Han R, Wu J et al Journal of Applied Physics 124 (4) (2018)
  64. Yin G, Li X, Jia Sh IEEE Trans. Plasma Sci. 46 (4) 972 (2018)
  65. Lv F, Qi H et al AIP Advances 8 (7) (2018)
  66. Savvatimskiy A I, Onufriev S V, Konyukhov S A J. Phys.: Conf. Ser. 891 012319 (2017)
  67. Mesyats G A Plasma Phys. Rep. 43 (9) 952 (2017)
  68. Pervikov A, Lerner M Current Applied Physics 17 (11) 1494 (2017)
  69. Bilbao L, Rodríguez Prieto Gonzalo Applied Sciences 7 (8) 829 (2017)
  70. Mongkolnavin R, Damrongsakkul S et al Plasma Science and Technology for Emerging Economies Chapter 9 (2017) p. 475
  71. Krasik Ya E, Efimov S et al IEEE Trans. Plasma Sci. 44 (4) 412 (2016)
  72. Sarkisov G S, Rosenthal S E, Struve K W Phys. Rev. A 94 (4) (2016)
  73. Savvatimskiy A I, Onufriev S V Phys. Atom. Nuclei 79 (14) 1637 (2016)
  74. Chung K-Ja, Lee K et al Journal of Applied Physics 120 (20) (2016)
  75. Jiang Zh, Li H et al IEEE Trans. Dielect. Electr. Insul. 23 (5) 2517 (2016)
  76. Belevtsev A A, Goryachev S V et al High Temp 54 (6) 789 (2016)
  77. Fortov V E Springer Series in Materials Science Vol. Extreme States of MatterHigh Energy Densities in Laboratories216 Chapter 3 (2016) p. 23
  78. Savvatimskiy A, Onufriev S, Kondratyev A Carbon 98 534 (2016)
  79. Sarkisov G S, Caplinger J et al Journal of Applied Physics 120 (12) (2016)
  80. Pervikov A V Physics of Plasmas 23 (6) (2016)
  81. Barbaglia M, Rodríguez Prieto G Physics of Plasmas 23 (10) (2016)
  82. Kochetkov I I, Pinaev A V Combust Explos Shock Waves 51 (6) 722 (2015)
  83. Onufriev S V, Kondratiev A M et al High Temp 53 (3) 455 (2015)
  84. Oreshkin V I, Chaikovsky S A et al J. Phys.: Conf. Ser. 653 012143 (2015)
  85. Savvatimskiy A Springer Series in Materials Science Vol. Carbon at High TemperaturesResistivity up to Melting and the Recording of Melting Area134 Chapter 4 (2015) p. 47
  86. Savvatimskiy A Springer Series in Materials Science Vol. Carbon at High TemperaturesStationary Experiments on Physical Carbon Properties (Enthalpy and Thermodynamic Functions) Against Temperature134 Chapter 5 (2015) p. 83
  87. Khishchenko K V 2015 IEEE International Conference on Plasma Sciences (ICOPS), (2015) p. 1
  88. Domenech-Garret J L J. Stat. Mech. 2015 (8) P08001 (2015)
  89. Chaikovsky S A, Oreshkin V I et al Physics of Plasmas 22 (11) (2015)
  90. Zhigalin A S, Rousskikh A G et al J. Phys.: Conf. Ser. 653 012146 (2015)
  91. Antonov O, Efimov S et al Journal of Applied Physics 115 (22) (2014)
  92. Mesyats G A IEEE Trans. Plasma Sci. 41 (4) 676 (2013)
  93. Apollonov V V, Pletnev N V Tech. Phys. 58 (12) 1770 (2013)
  94. Amirov R H, Petrov A A, Samoylov I S J. Phys.: Conf. Ser. 418 012064 (2013)
  95. Belevtsev A A, Goryachev S V et al High Temp 51 (5) 583 (2013)
  96. Mitrofanov K N, Grabovski E V et al Plasma Phys. Rep. 39 (1) 62 (2013)
  97. Baksht R B, Tkachenko S I et al Tech. Phys. 58 (8) 1129 (2013)
  98. Emelyanov O A, Belko V O IEEE Trans. Plasma Sci. 41 (4) 961 (2013)
  99. Antonov O, Efimov S et al Applied Physics Letters 102 (12) (2013)
  100. Oreshkin V I, Khishchenko K V et al High Temp 50 (5) 584 (2012)
  101. Onufriev S V, Savvatimskii A I, Yanchuk V I Meas Tech 54 (8) 926 (2011)
  102. Fedotov-Gefen A, Efimov S et al Physics of Plasmas 18 (6) (2011)
  103. Fortov V E Extreme States of Matter The Frontiers Collection Chapter 3 (2011) p. 25
  104. Haines M G Plasma Phys. Control. Fusion 53 (9) 093001 (2011)
  105. Oreshkin V I, Rousskikh A G et al Physics of Plasmas 17 (7) 072703 (2010)
  106. Ivanenkov G V, Gus’kov S Yu, Barishpol’tsev D V Plasma Phys. Rep. 36 (1) 67 (2010)
  107. Volkov N B, Mayer A E et al Tech. Phys. 55 (4) 509 (2010)
  108. Vorob’ev V C, Malyshenko S P High Temp 48 (6) 957 (2010)
  109. Krasik Ya E, Fedotov A et al Plasma Sources Sci. Technol. 19 (3) 034020 (2010)
  110. Awe T J, Bauer B S et al Phys. Rev. Lett. 104 (3) (2010)
  111. Awe T J, Bauer B S et al Physics of Plasmas 17 (10) (2010)
  112. Kuskova N I, Baklar’ V Yu, Khainatskii S A Surf. Engin. Appl.Electrochem. 45 (5) 382 (2009)
  113. Chekhovskoi V Ya, Peletskii V E High Temp 47 (3) 352 (2009)
  114. Fortov V E Uspekhi Fizicheskikh Nauk 179 (6) 653 (2009) [Fortov V E Phys.-Usp. 52 (6) 615 (2009)]
  115. Khainatskii S A Surf. Engin. Appl.Electrochem. 45 (5) 397 (2009)
  116. Veksler D, Sayapin A et al IEEE Trans. Plasma Sci. 37 (1) 88 (2009)
  117. Fedotov-Gefen A V, Krasik Ya E Journal of Applied Physics 106 (9) (2009)
  118. Petrov A A, Amirov R H, Samoylov I S IEEE Trans. Plasma Sci. 37 (7) 1146 (2009)
  119. Efimov S, Gurovich V T et al Journal of Applied Physics 106 (7) (2009)
  120. Kuskova N I, Baklar’ V Yu et al Surf. Engin. Appl.Electrochem. 44 (1) 36 (2008)
  121. Oreshkin V I Physics of Plasmas 15 (9) (2008)
  122. Chekhovskoi V Ya, Peletskii V E Russ. Metall. 2008 (5) 377 (2008)
  123. Grinenko A, Sayapin A et al The transactions of the Institute of Electrical Engineers of Japan.A 128 (1) 31 (2008)
  124. Sarkisov G S, Rosenthal S E, Struve K W Phys. Rev. E 77 (5) (2008)
  125. Fedotov A, Sheftman D et al Physics of Plasmas 15 (8) (2008)
  126. Krasik Y E, Grinenko A et al IEEE Trans. Plasma Sci. 36 (2) 423 (2008)
  127. Ivanenkov G V J Russ Laser Res 28 (4) 326 (2007)
  128. Grabovskiĭ E V, Gribov A N et al Plasma Phys. Rep. 33 (11) 923 (2007)
  129. Oreshkin V I, Chaikovsky S A et al Physics of Plasmas 14 (10) (2007)
  130. Tkachenko S I, Pikuz S A et al J. Phys. D: Appl. Phys. 40 (6) 1742 (2007)
  131. Krasik Ya E, Grinenko A et al 2007 16th IEEE International Pulsed Power Conference, (2007) p. 951
  132. Volosnikov D V, Efremov V P et al High Temp 44 (3) 463 (2006)
  133. Grinenko A, Gurovich V T et al Journal of Applied Physics 100 (11) (2006)
  134. Grinenko A, Krasik Ya E et al Physics of Plasmas 13 (4) (2006)
  135. Grinenko A, Efimov S et al Physics of Plasmas 13 (5) (2006)
  136. Romanova V M, Pikuz S A et al Czech J Phys 56 (S2) B349 (2006)
  137. Sarkisov G S, Beigman I L et al Phys. Rev. A 73 (4) (2006)
  138. Tkachenko S I, Levashov P R, Khishchenko K V J. Phys. A: Math. Gen. 39 (23) 7597 (2006)
  139. Grinenko A, Efimov S et al Journal of Applied Physics 100 (11) (2006)
  140. Tkachenko S I, Levashov P R, Khishchenko K V Czech J Phys 56 (S2) B419 (2006)
  141. Ter-Oganesyan A E, Tkachenko S I et al Plasma Phys. Rep. 31 (11) 919 (2005)
  142. Vorob’ev V S, Malyshenko S P, Tkachenko S I High Temp 43 (6) 908 (2005)
  143. Grabovsky E V, Mitrofanov K N et al Contrib. Plasma Phys. 45 (8) 553 (2005)
  144. Sarkisov G S, Rosenthal S E et al Phys. Rev. Lett. 94 (3) (2005)
  145. Sarkisov G S, Rosenthal S E et al Phys. Rev. E 71 (4) (2005)
  146. Sarkisov G S, Sasorov P V et al Journal of Applied Physics 96 (3) 1674 (2004)
  147. Rousskikh A G, Baksht R B et al Plasma Phys. Rep. 30 (11) 944 (2004)
  148. Tkachenko S I, Vorob’ev V S, Malyshenko S P J. Phys. D: Appl. Phys. 37 (3) 495 (2004)
  149. Savvatimskii A I Uspekhi Fizicheskikh Nauk 173 (12) 1371 (2003)
  150. Aleksandrov V V, Alekseev A G et al Plasma Phys. Rep. 29 (12) 1034 (2003)
  151. Vorob’ev V S, Malyshenko S P et al Jetp Lett. 75 (8) 373 (2002)
  152. Rakhel A D, Kloss A, Hess H International Journal of Thermophysics 23 (5) 1369 (2002)
  153. Khishchenko K V, Tkachenko S I et al International Journal of Thermophysics 23 (5) 1359 (2002)
  154. Kraftmakher Ya Physics Reports 356 (1-2) 1 (2002)
  155. Sarkisov G S, Sasorov P V et al Phys. Rev. E 66 (4) (2002)
  156. Sarkisov G S, McCrorey D IEEE Trans. Plasma Sci. 30 (1) 98 (2002)
  157. Sarkisov G S, Bauer B S, De Groot J S Jetp Lett. 73 (2) 69 (2001)
  158. Igoshin V I, Kazakevich V S et al Tech. Phys. Lett. 27 (8) 662 (2001)
  159. Tkachenko S I, Khishchenko K V et al High Temperature 39 (5) 674 (2001)
  160. Korobenko V N, Savvatimski A I, Cheret R International Journal of Thermophysics 20 (4) 1247 (1999)
  161. Abramova K B, Rusakov A I et al Phys. Solid State 40 (6) 877 (1998)
  162. Kraftmakher Ya Physics Reports 299 (2-3) 79 (1998)
  163. Kuskova N I, Tkachenko S I, Koval S V J. Phys.: Condens. Matter 9 (29) 6175 (1997)
  164. Volkov N B J. Phys. A: Math. Gen. 30 (18) 6391 (1997)
  165. Volkov N B, Zubarev N M et al Physica D: Nonlinear Phenomena 109 (3-4) 315 (1997)
  166. Vol. Proceedings of 17th International Symposium on Discharges and Electrical Insulation in VacuumAnomalies of electron emission and Schottky effect of metals exposed to fast heating by electric currentN.V.Stepanova2 (1996) p. 770
  167. Kraftmakher Y Int J Thermophys 17 (5) 1137 (1996)
  168. Dolinsky Yu, Elperin T Phys. Rev. B 47 (22) 14778 (1993)
  169. Th�venin Th, Arl�s L и др Int J Thermophys 14 (3) 441 (1993)
  170. Ikryannikov V I J Eng Phys Thermophys 62 (4) 454 (1992)
  171. J�ger H, Neff W, Pottlacher G Int J Thermophys 13 (1) 83 (1992)
  172. Vovchenko A I, Rakhel A D, Vorob’ev V S [1991] Proceedings of the 3rd International Conference on Properties and Applications of Dielectric Materials, (1991) p. 1254
  173. Pottlacher G, Kaschnitz E, Jager H J. Phys.: Condens. Matter 3 (31) 5783 (1991)
  174. Zinov’ev V E, Taluts S G et al Meas Tech 28 (11) 1022 (1985)
  175. Clemens B M, Buchholz Je C et al MRS Proc. 57 (1985)

© Успехи физических наук, 1918–2026
Электронная почта: ufn@ufn.ru Телефоны и адреса редакции О журнале Пользовательское соглашение