Study of Properties of Structural Materials of Powerful Pulsed Plasma Facilities under Extreme Loads
https://doi.org/10.56304/S2079562922010092
Abstract
The effect of high-current relativistic electron beams on samples made of polycrystalline tungsten (Goodfellow) and corrosion-resistant ferrite-martensitic steel EK-181 was studied experimentally. In the experiments, a combined (molybdenum and steel) cathode was used, which made it possible to minimize the deposition of the cathode plasma on the materials under study. The experiments were carried out on a Kalmar high-current electron accelerator with an average pulse energy of E ≈ 100 J. A series of 1, 3, 6, and 10 pulses of accelerator operation were carried out for each material. The dependences of the ablation on the number of pulses were obtained. The microscopic examination of irradiated samples was carried out mass.
Keywords
About the Authors
N. P. BobyrRussian Federation
E. D. Kazakov
National Research University Moscow Power Engineering Institute, Moscow, 111250 Russia
Russian Federation
D. I. Krutikov
Russian Federation
A. A. Kurilo
Russian Federation
M. Yu. Orlov
Russian Federation
A. V. Spitsyn
Russian Federation
M. G. Strizhakov
Russian Federation
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Review
For citations:
Bobyr N.P., Kazakov E.D., Krutikov D.I., Kurilo A.A., Orlov M.Yu., Spitsyn A.V., Strizhakov M.G. Study of Properties of Structural Materials of Powerful Pulsed Plasma Facilities under Extreme Loads. Nuclear Physics and Engineering. 2022;13(2):113-117. (In Russ.) https://doi.org/10.56304/S2079562922010092