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1999

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November

  

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Metal modification by high-power pulsed particle beams

 a,  b,  c, d
a Tomsk Polytechnical University, prosp. Lenina 30, Tomsk, 634004, Russian Federation
b East Kazakhstan State Technical University named after D. Serikbayev, Naberezhnaya Krasnykh Orlov 69, Ust-Kamenogorsk, 070000, Kazakhstan
d Kurdyumov Institute for Metal Physics, National Academy of Sciences of Ukraine, Vernadsky blvd. 36, Kyiv, 03680, Ukraine

The state of the art in the modification of iron, steel, and titanium alloys and some metal multilayers by medium intensity (106-109 W cm-2) pulsed electron and ion beams is summarized, including the contribution from the authors. Many of the processes that determine the defect structure and its properties are described and such problems as the formation of elastoplastic and shock waves, mixing of multilayers, thin film deposition, and nanophase powder synthesis are discussed. The high potential of particle beam technology — in particular, for improving the operating characteristics of materials — has been demonstrated amply by research centers worldwide.

Fulltext pdf (587 KB)
Fulltext is also available at DOI: 10.1070/PU1999v042n11ABEH000471
PACS: 41.75.−i, 61.80.−x, 81.15.−z, 81.40.−z (all)
DOI: 10.1070/PU1999v042n11ABEH000471
URL: https://ufn.ru/en/articles/1999/11/d/
000084282400004
Citation: Boiko V I, Valyaev A N, Pogrebnyak A D "Metal modification by high-power pulsed particle beams" Phys. Usp. 42 1139–1166 (1999)
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Оригинал: Бойко В И, Валяев А Н, Погребняк А Д «Модификация металлических материалов импульсными мощными пучками частиц» УФН 169 1243–1271 (1999); DOI: 10.3367/UFNr.0169.199911d.1243

References (159) Cited by (95) ↓ Similar articles (20)

  1. Slobodyan M, Pesterev E, Markov A Journal Of Manufacturing Processes 105 124 (2023)
  2. Panova T V, Kovivchak V S Poverhnostʹ. Rentgenovskie, Sinhrotronnye I Nejtronnye Issledovaniâ (3) 16 (2023)
  3. (OIL AND GAS ENGINEERING (OGE-2022)) Vol. OIL AND GAS ENGINEERING (OGE-2022)Modification of surface layers of tungsten-free hard alloys pulsed ion beam of nanosecond durationA. M.BadamshinS. N.NesovE. A.Rogachev2784 (2023) p. 040007
  4. Laptev R S, Pushilina N S et al J. Surf. Investig. 17 1313 (2023)
  5. Panova T V, Kovivchak V S J. Surf. Investig. 17 332 (2023)
  6. Blazhevich S V, Noskov A V J. Surf. Investig. 16 503 (2022)
  7. Kazakov E D, Orlov M Yu et al 8th International Congress on Energy Fluxes and Radiation Effects, (2022) p. 1164
  8. Remnev G E, Tarbokov V A, Pavlov S K Inorg. Mater. Appl. Res. 13 626 (2022)
  9. Berdnikova O, Kushnarova O et al 2022 IEEE 12th International Conference Nanomaterials: Applications & Properties (NAP), (2022) p. 01
  10. Markov A, Solovyov A et al Materials Chemistry And Physics 292 126821 (2022)
  11. Pushilina N, Stepanova E et al Metals 11 512 (2021)
  12. Badamshin A M, Nesov S N et al Tech. Phys. Lett. 47 737 (2021)
  13. Ye Zh, Su M et al Optics & Laser Technology 139 106988 (2021)
  14. Slobodyan M Nuclear Engineering And Design 382 111364 (2021)
  15. Pogrebnjak A D, Beresnev V M et al Handbook of Modern Coating Technologies (2021) p. 177
  16. Moroz A V, Sipatdinov A M, Filimonov V E Td (265) 36 (2020)
  17. Donets S E, Lytvynenko V V et al 109 (2020)
  18. Kokololtsev V N, Maslyaev S A et al J. Phys.: Conf. Ser. 1647 012017 (2020)
  19. Kryukova O N, Knyazeva A G, Maslov A L Russ Phys J 63 968 (2020)
  20. Donets S, Klepikov V et al 2019 IEEE 9th International Conference Nanomaterials: Applications & Properties (NAP), (2019) p. 01TFC16-1
  21. Minaev I M, Troitskii A V et al Phys. Wave Phen. 27 307 (2019)
  22. Liao Sh, Luo X et al Mater. Res. Express 6 096503 (2019)
  23. Carvalho R G, Fernandez D A R et al Mat. Res. 22 (5) (2019)
  24. Salikhov T Kh, Abdurakhmonov A A J Eng Phys Thermophy 91 1425 (2018)
  25. Korusenko P M, Nesov S N et al Phys. Solid State 60 2616 (2018)
  26. Cherenda N N, Uglov V V et al Inorg. Mater. Appl. Res. 9 965 (2018)
  27. Ozur G E, Proskurovsky D I Plasma Phys. Rep. 44 18 (2018)
  28. Salikhov T Kh, Abdurahmonov A A Thermophys. Aeromech. 24 953 (2017)
  29. Zhang F G Tribol Lett 65 (4) (2017)
  30. Handbook of Structural Life Assessment 1 (2017) p. 767
  31. Ovchinnikov V V, Gushchina N V et al IOP Conf. Ser.: Mater. Sci. Eng. 168 012067 (2017)
  32. Leyvi A Ya, Talala K A, Yalovets A P SSP 265 684 (2017)
  33. Kochurin E A, Lisenkov V V et al J. Phys.: Conf. Ser. 774 012121 (2016)
  34. Kudiiarov V, Syrtanov M et al (AIP Conference Proceedings) Vol. 1772 (2016) p. 040009
  35. Morozov E V, Maslyaev S A et al Inorg. Mater. Appl. Res. 7 796 (2016)
  36. Panin A V, Kazachenok M S et al Phys. Metals Metallogr. 117 550 (2016)
  37. Ligachev A E, Kolobov Yu R et al Inorg. Mater. Appl. Res. 7 325 (2016)
  38. Pogrebnjak A D, Yakushchenko I V et al Tech. Phys. 60 1176 (2015)
  39. Meisner L L, Neiman A A et al (AIP Conference Proceedings) Vol. 1683 (2015) p. 020147
  40. Pushilina N S, Kudiiarov V N et al Surface And Coatings Technology 284 63 (2015)
  41. Meisner L L, Ostapenko M G et al Russ Phys J 58 670 (2015)
  42. Mayer P N, Mayer A E J. Phys.: Conf. Ser. 653 012010 (2015)
  43. Mayer P N, Mayer A E J. Exp. Theor. Phys. 121 35 (2015)
  44. Neiman A A, Meisner L L et al Applied Surface Science 327 321 (2015)
  45. Meisner L L, Ostapenko M G et al Applied Surface Science 324 44 (2015)
  46. Kobets A G, Horodek P R et al Surf. Engin. Appl.Electrochem. 51 478 (2015)
  47. Neyman A A, Meisner L L et al Russ Phys J 58 255 (2015)
  48. Cherenda N N, Laskovnev A P et al Inorg. Mater. Appl. Res. 6 114 (2015)
  49. Kuleshov A K, Yakushevich A S et al Russ. J. Non-ferrous Metals 56 345 (2015)
  50. Ryabkina X, Stepanova O AMR 880 7 (2014)
  51. Remnev G E, Uglov V V et al Applied Surface Science 310 204 (2014)
  52. Meisner L L, Ostapenko M G et al Steel Transl. 44 646 (2014)
  53. Cherenda N N, Smilgin A A et al Surface And Coatings Technology 255 79 (2014)
  54. Beresnev V M, Bondar O V et al J. Frict. Wear 35 374 (2014)
  55. Uglov V V, Remnev G E et al Russ. J. Non-ferrous Metals 54 349 (2013)
  56. Zhikharev A V, Klimova I N et al Phys. Solid State 55 2001 (2013)
  57. Pogrebnjak A D, Bratushka S N et al Russ. Chem. Rev. 82 1135 (2013)
  58. Lyashenko I A, Manko N N J. Frict. Wear 34 38 (2013)
  59. Amirkhanov I V, Didyk A Yu et al J. Synch. Investig. 7 466 (2013)
  60. Chernov I P, Pushilina N S et al Tech. Phys. 58 1280 (2013)
  61. Panin A V, Kazachenok M S et al Applied Surface Science 284 750 (2013)
  62. Uglov V V, Kuleshov A K et al J. Synch. Investig. 7 371 (2013)
  63. Pushkarev A I, Isakova Yu I et al 84 (8) (2013)
  64. Amirkhanov I V, Khalil A S, Sarkhadov I J. Synch. Investig. 7 711 (2013)
  65. Bratushka S N, Tyurin Yu N et al J. Frict. Wear 33 22 (2012)
  66. Krasnikov V S, Mayer A E Surface And Coatings Technology 212 79 (2012)
  67. Chernov I P, Ivanova S V et al Tech. Phys. 57 392 (2012)
  68. Pogrebnjak A D, Ponomarev A G et al Uspekhi Fizicheskikh Nauk 182 287 (2012)
  69. Lyashenko I A, Metlov L S et al J. Frict. Wear 33 244 (2012)
  70. Uglov V V, Remnev G E et al Inorg. Mater. Appl. Res. 2 242 (2011)
  71. Zou Ya, Cai J et al Chinese Phys. Lett. 28 116102 (2011)
  72. Uglov V V, Remnev G E et al Surface And Coatings Technology 204 1952 (2010)
  73. Volkov N B, Leivi A Ya et al Tech. Phys. 55 484 (2010)
  74. Meisner L L, Lotkov A I et al Journal Of Nanotechnology 2010 1 (2010)
  75. Byeli A V, Vyblyi Yu P, Kukareko V A Bull. Russ. Acad. Sci. Phys. 74 213 (2010)
  76. Pogrebnyak A D, Shpak A P et al Uspekhi Fizicheskikh Nauk 179 35 (2009) [Pogrebnyak A D, Shpak A P et al Phys.-Usp. 52 29 (2009)]
  77. Zakhvatova M V, Gil’mutdinov F Z et al J. Synch. Investig. 3 943 (2009)
  78. Le Xiaoyun, Yan Sh et al Surface And Coatings Technology 201 4991 (2007)
  79. Krasnikov V S, Leyvi A Ya et al Tech. Phys. 52 431 (2007)
  80. Efimov V V, Efimova E A et al Phys. Part. Nuclei Lett. 3 290 (2006)
  81. Mayer A E, Yalovets A P Tech. Phys. 51 459 (2006)
  82. Volkov N B, Maier A E et al Tech. Phys. Lett. 32 424 (2006)
  83. Pogrebnyak A D, Tyurin Yu N Uspekhi Fizicheskikh Nauk 175 515 (2005)
  84. Pogrebnyak O D, Bazyl’ O O, Sviridenko M V Usp. Fiz. Met. 5 257 (2004)
  85. Renk T J, Provencio P P et al Proc. IEEE 92 1057 (2004)
  86. Buchbinder G L International Journal Of Heat And Mass Transfer 46 1665 (2003)
  87. Pogrebnyak O D, Tyurin Yu M Usp. Fiz. Met. 4 1 (2003)
  88. Le X Y, Zhao W J et al Surface And Coatings Technology 158-159 14 (2002)
  89. Pogrebnjak A D, Shantyr R I, Kul”ment”eva O P Vacuum 67 243 (2002)
  90. Pogrebnyak A D, Il’yashenko M V et al Tech. Phys. Lett. 27 749 (2001)
  91. Pogrebnyak A D, Tyurin Yu N, Kobzev A P Tech. Phys. Lett. 27 619 (2001)
  92. Pogrebnjak A D, Lebed A G, Ivanov Yu F Vacuum 63 483 (2001)
  93. Valyaev A N, Kylyshkanov M K et al Vacuum 58 53 (2000)
  94. Pogrebnjak A D, Ladysev V S et al Vacuum 58 45 (2000)
  95. Valyaev A N, Ladysev V S et al Nuclear Instruments And Methods In Physics Research Section B: Beam Interactions With Materials And Atoms 171 481 (2000)

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