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Damage and modification of materials produced by pulsed ion and plasma streams in Dense Plasma Focus device

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The Dense Plasma Focus (DPF) devices PF-1000, PF-6 and PF-5M working with different gases and in dissimilar irradiation modes were used to carry out experimental investigations of irradiation of a number of materials by powerful pulsed ion and high-temperature plasma streams. The materials under test were designed for application in structural and functional components of thermonuclear fusion devices with magnetic (MPC) and inertial (IPC) plasma confinement, as well as for working chambers of plasma and accelerator devices. The main features of the materials are low-activation and radiation-resistant properties. On the basis of the investigations a significant progress was achieved in understanding of dynamics of high-energy nano- and micro-second pulsed streams in DPF from one side as well as on the mechanisms of their influence upon materials under irradiation from the other one. We demonstrated that this approach can be useful for certain tests of plasma-facing materials (e.g. W for MPC and stainless steels for IPC) and of structural (construction) elements of the above-mentioned devices subjected to pulsed high-energy radiation streams. The results obtained suggest also that DPF devices can be used in new pulse technologies for material treatment by means of powerful nanosecond and microsecond pulses of plasma and ion streams.
Słowa kluczowe
Czasopismo
Rocznik
Strony
111--121
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
autor
autor
autor
autor
autor
autor
  • A. A. Baikov Institute of Metallurgy and Material Science, Russian Academy of Sciences, 49 Leninsky Pr., 119991 Moscow, Russia, Tel.: +7 095 135 9604, Fax: +7 095 135 8680,, pimval@mail.ru
Bibliografia
  • 1. Borowiecki M, De Chiara P, Dubrovsky AV et al. (2001)Experimental study of a powerful energy flow effect on materials in PF-1000 installation. Nukleonika 46;S1:s117–s122
  • 2. Burtsev VA, Gribkov VA, Filippova TI (1981) Hightemperature pinch phenomena. Itogi Nauki i Tekhniki.Fizika Plazmy 2:80–137 (in Russian)
  • 3. Gauster WB, Spears WR, and ITER Joint Central Team (1994) Requirements and selection criteria for plasmafacing materials and components in the ITER EDA design. Nucl Fusion 5;Suppl:7–18
  • 4. Gribkov VA, Banaszak A, Bienkowska B et al. (2007) Plasma dynamics in PF-1000 device under the full-scale energy storage: II. Fast electrons and ions characteristics vs. neutron emission parameters, and the gun optimization properties. J Phys D: Appl Phys 40:3592–3607
  • 5. Gribkov VA, Dubrovsky AV, Scholz M et al. (2006) PF-6 –an effective plasma focus as a source of ionizing radiation and plasma streams for application in material technology, biology and medicine. Nukleonika 51;1:55–62
  • 6. Gribkov VA, Grebenschikova YeS, Demina YeV et al. (2008) Carbon-tungsten samples under influence of deuterium ions and dense plasma streams within plasma-focus facility. In: Proc of Int Conf Plasma 2007 on Research and Applications of Plasmas combined with the 4th German-Polish Conf on Plasma Diagnostics for Fusion and Applications and the 6th French-Polish Seminar on Thermal Plasma in Space and Laboratory,October 16–19, 2007, Greifswald, Germany. American Institute of Physics, CP 993, pp 361–364
  • 7. Gribkov VA, Ivanov LI, Maslyaev SA et al. (2004) On the nature of changes in the optical characterization produced in sapphire on its irradiation with a pulsed powerful stream of hydrogen ions. Nukleonika 49;2:43–49
  • 8. Gribkov VA, Pimenov VN, Ivanov LI et al. (2003) Interaction of high temperature deuterium plasma streams and fast ion beams with condensed materials in Dense Plasma Focus device. J Phys D: Appl Phys 36:1817–1825
  • 9. Hassanein A, Konkashbaev I (1994) Erosion of plasmafacing materials during a tokamak disruption. Nucl Fusion 5;Suppl:193–224
  • 10. Ivanov LI, Maslyaev SA, Pimenov VN (1999) The use of liquid metals in porous materials for diverter applications. J Nucl Mater 271/272:405–409
  • 11. Ivanov LI, Pimenov VN, Maslyaev SA et al. (2000) Influence of dense deuterium plasma pulses on materials in Plasma Focus device. Nukleonika 45;3:203–207
  • 12. Ivanov LI, Platov YuM (2002) Radiation physics of metals and applications. Intercontact Nauka, Moscow (in Russian)
  • 13. Kodentsov AA, Ugaste YuE, Pimenov VN et al. (2003) Influence of dense deuterium plasma pulses on Fe and Fe-Mn alloy specimens in a plasma focus device. In: Proc of the Tallinn University of Social and Educational Sciences, Tallinn, B2:51–56
  • 14. Lawrence Livermore National Laboratory (1992) Inertial confinement fusion. In: 1991 ICF Annual Report,pp 1–198
  • 15. Martynenko YuV, Moskovkin PG, Kolbasov BN (2001) Accumulation and penetration of tritium in the firstwall of tokamak ITER in disruption regime. Voprosy Atomnoy Nauki i Tekhniki, Series: Thermonuclear Fusion 3:65–72 (in Russian)
  • 16. Pimenov VN, Dyomina EV, Ivanov LI et al. (2002) Damage of structural materials for fusion devices under pulsed ion and high temperature plasma beams. J Nucl Mater 307/311;1:95–99
  • 17. Pimenov VN, Gribkov VA, Dubrovsky AV et al. (2002) Influence of powerful pulses of hydrogen plasma upon materials in PF-1000 device. Nukleonika 47;4:155–162
  • 18. Pimenov VN, Maslyaev SA, Demina EV et al. (2006)Influence of pulsed energy beams on the surface of the Al alloy tube in dense plasma focus device. Perspektivnye Materialy 4:43–52 (in Russian)
  • 19. Pimenov VN, Maslyaev SA, Ivanov LI et al. (2003) Interaction of pulsed streams of deuterium plasma with aluminium alloy in a plasma focus device. II. Investigation of irradiated material. In: Proc of the Tallinn University of Social and Educational Sciences, Tallinn, B2:40–50
  • 20. Pimenov VN, Maslyaev SA, Ivanov LI et al. (2006) Surface and bulk processes in materials induced by pulsed ion and plasma beams at Dense Plasma Focus devices. Nukleonika 51;1:71–78
  • 21.Pleshivtsev NV, Bazhin AI (1998) Physics of interaction of ion beams with the materials. Vuzovskaya kniga, Moscow (in Russian)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0023-0030
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