Search Results - "Krivosheev, S. I."

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  1. 1

    Magnetic-Pulse Deformation of TiNi Alloy: Experiment and Calculation by Ostropiko, E. S., Magazinov, S. G., Krivosheev, S. I.

    Published in Technical physics (01-12-2023)
    “…Magnetic-pulse loading methods have been known since the 1980s and, as a rule, are used to determine the laws of destruction of materials under the action of…”
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    Ecological Plasticity, Yield, and Grain Quality of Different Soybean Varieties under Conditions of Kursk Oblast by Dubovik, D. V., Dubovik, E. V., Shumakov, A. V., Krivosheev, S. I.

    Published in Russian agricultural sciences (2024)
    “…The purpose of the research was to select the most promising soybean varieties for the conditions of Kursk oblast on the basis of the results of the assessment…”
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  3. 3

    Features in Describing the Impulse Insulation Strength of Polymer Dielectrics by Adam’yan, Yu. E., Krivosheev, S. I., Magazinov, S. G.

    Published in Technical physics letters (01-03-2021)
    “…A scenario is proposed for using the model of field ionization of macromolecules to describe the impulse breakdown of polymer dielectrics with allowance for…”
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  4. 4

    Specific Features of the Nonlinear Diffusion of a Strong Pulsed Magnetic Field near the Conductor Edge by Krivosheev, S. I., Magazinov, S. G., Shneerson, G. A.

    Published in Technical physics letters (01-02-2019)
    “…The nonlinear diffusion of a strong magnetic field to a conductor with the boundaries forming a right dihedral angle has been considered. In a transverse field…”
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    Conceptual Model of a Quasi-Force-Free Magnet of Small Volume with Inertial Retention of Its End Part by Shneerson, G. A., Parfentiev, A. A., Titkov, V. V., Krivosheev, S. I., Lagutkina, A. D., Nemov, A. S., Nenashev, A. P., Shimansky, S. A.

    Published in Technical physics letters (01-08-2021)
    “…The efficiency of using a diamagnetic screen with inertial retention in a non-destructive quasi-force-free magnet of a small volume (with a characteristic…”
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  6. 6

    Substantiation of the Possibility of Predicting Behavior of Solids under Extreme Conditions at Various High-Intensity Impacts by Kosheleva, E. V., Krivosheev, S. I., Sel’chenkova, N. I., Uchaev, A. Ya

    Published in Physics of atomic nuclei (01-12-2017)
    “…The paper is devoted to the data analysis on the amplitude-time regularities of the dynamic failure process of solids under various types of high-intensity…”
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  7. 7

    Effect of conductive screens on the stabilization of plasma channels with currents of hundreds kAmps by Bochkov, V. D., Bochkov, D. V., Krivosheev, S. I., Adamian, Yu. E.

    Published in Physics of particles and nuclei letters (01-12-2016)
    “…Based on experimental data, we analyzed the results of the influence of external conductive shield on stabilization of plasma channels in high-power…”
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  8. 8

    The fracture energy of materials under pulse microsecond-scale loading by Gruzdkov, A. A., Krivosheev, S. I., Petrov, Yu. V.

    Published in Physics of the solid state (01-05-2003)
    “…Based on the results of fracture in polymethyl methacrylate and a spheroplastic using a magnetic-pulse setup, the specific work of the formation of a new…”
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  9. 9

    Behavior of particle-filled polymer composite under static and dynamic loading by Klepaczko, J.R., Petrov, Y.V., Atroshenko, S.A., Chevrier, P., Fedorovsky, G.D., Krivosheev, S.I., Utkin, A.A.

    Published in Engineering fracture mechanics (2008)
    “…Experimental results of quasi-static and dynamic fracture of particle-filled polymer composite (PFPCM) “ALTUGLAS EI CH25” with a matrix of…”
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    Characteristics of winter common wheat varieties according to a set of adaptability indicators in the Kursk region by S. I. Krivosheev, A. A. Emeliyanova, E. V. Logvinova

    Published in Zernovoe hozâjstvo Rossii (Online) (01-09-2024)
    “…The current paper has presented the results of environmental testing of various winter common wheat varieties in 2018–2020 and given an estimation of their…”
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  12. 12

    The Peculiarities of the Application of Magnetic-Pulse Method for Forming Controlled Pressure Pulses to Test Metal Samples by Krivosheev, S. I., Magazinov, S. G., Alekseev, D. I.

    Published in IEEE transactions on plasma science (01-04-2018)
    “…Experimental study of brittle nonconductive materials with magnetic-pulse method revealed a number of common patterns of fracture process. Numerical simulation…”
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  13. 13

    Magnetohydrodynamic Instability of the Surface Metal Layer Melted by Pulsed Current by Samuilov, S. D., Shcherbakov, I. P., Bocharov, Y. N., Krivosheev, S. I., Magazinov, S. G.

    Published in Technical physics (01-06-2024)
    “…It is shown that the results of dispersion of various materials in the mode of pulsed current action correspond to theoretical estimates of the wavelength of…”
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    Fracture Of Polymethylmethacrylate Under Pulse Loading Conditions by Atroshenko, S A, Krivosheev, S I, Petrov, Y A

    Published in Strength of materials (01-05-2002)
    “…Crack propagation in polymethylmethacrylate has been investigated experimentally under- shock loading conditions generated by a pulse magnetic field. Using…”
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  16. 16

    Magnetic-field strength measurements in ferromagnetic materials for determining the orthogonal biasing effect by Adamian, Yu. E., Krivosheev, S. I.

    “…The mutual influence of orthogonal magnetic fields on ferrite magnetic characteristics was experimentally studied. Experiments were performed in a pulse mode…”
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  17. 17

    Investigation Of Fracture Of Spheroplastics Under Static And Dynamic Loading by Atroshenko, S A, Krivosheev, S I, Petrov, Y A, Utkin, A A, Fedorovskii, G D

    Published in Strength of materials (01-05-2002)
    “…An experimental stuck, of static and dynamic fracture properties of a spheroplastic that has a matrix of polyester resin containing a filler of-lass…”
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    Specific features of shock wave formation in superstrong magnetic field by Krivosheev, S. I., Pomazov, V. S., Shneerson, G. A.

    Published in Technical physics letters (01-09-2011)
    “…Modern numerical simulation methods have been used to describe the electric explosion of a conductor at an extremely high linear current density. This process…”
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