Search Results - "Padalko, G."

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  1. 1

    Analysis of the Effect of Hydrostatic Pressure on the Nonvariant Eutectic Transformation in Al–Si, Al–Cu, and Al–Cu–Si Systems by Akopyan, T. K., Belov, N. A., Padalko, A. G., Letyagin, N. V., Avksent’yeva, N. N.

    Published in Physics of metals and metallography (01-06-2019)
    “…Differential barothermal analysis (DBA) is used to analyze the effect of hydrostatic pressure of 100 MPa on characteristic temperatures of a number of eutectic…”
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    Journal Article
  2. 2

    Thermal and Barothermal Treatment, Microstructure, and Properties of an Al–8Si–3.5Cu–0.2Mn Alloy by Padalko, A. G., Pyrov, M. S.

    Published in Russian metallurgy Metally (01-09-2022)
    “…The effect of heat treatment, including hot isostatic pressing (HIP), on the structure and mechanical properties of a cast Al–8Si–3.5Cu–0.2Mn (wt %) aluminum…”
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  3. 3

    Thermal Analysis, Barothermal Treatment, Microstructure, and Properties of an Al–2.5 at % Ca Binary Alloy by Padalko, A. G., Pyrov, M. S., Antonova, O. S.

    Published in Russian metallurgy Metally (01-11-2022)
    “…An Al–2.5 at % Ca binary alloy is thermographically studied by differential scanning calorimetry at atmospheric pressure and by differential barothermal…”
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  4. 4

    Analysis of the Microstructural Evolution of a Co–28Cr–6Mo Alloy during Hot Deformation by Gamin, Yu. V., Kin, T. Yu, Galkin, S. P., Ali, A. Mahmoud Alhaj, Karashaev, M. M., Padalko, A. G.

    Published in Russian metallurgy Metally (01-11-2023)
    “…The deformation behavior and microstructural evolution of a Co–28Cr–6Mo alloy during uniaxial compression tests have been analyzed. The tests are carried out…”
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  5. 5

    Barothermal Treatment, Cold Plastic Deformation, Microstructure and Properties of Binary Silumin Al–8 at % Si by Padalko, A. G., Pyrov, M. S., Karelin, R. D., Yusupov, V. S., Talanova, G. V.

    Published in Russian metallurgy Metally (01-09-2021)
    “…Barothermal treatment of the cast binary alloy Al–8 at % Si has been performed at 560°C/100 MPa/3 h. A microstructure with silicon particles with an average…”
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  6. 6

    Effect of Hot Isostatic Pressing on the Structure and the Mechanical Properties of an Al–7Si–7Cu Composite Alloy by Akopyan, T. K., Belov, N. A., Padalko, A. G., Letyagin, N. V.

    Published in Russian metallurgy Metally (01-09-2019)
    “…Differential scanning calorimetry and differential barothermal analysis demonstrate that a hydrostatic pressure of 100 MPa leads to a shift in the…”
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  7. 7

    Phase Transformations of 1.4 at % Cu–Al Binary Alloy at High Pressures and Temperatures by Padalko, A. G., Akopyan, T. K., Pyrov, M. S., Izotov, A. D., Khoroshilov, A. V., Talanova, G. V.

    Published in Inorganic materials (01-09-2019)
    “…— Phase transformations of 1.4 at % Cu + 98.6 at % Al alloy have been studied at atmospheric pressure by differential scanning calorimetry and at a moderately…”
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  8. 8

    Effect of Barothermal Treatment on the Structure and the Mechanical Properties of a High-Strength Eutectic Al–Zn–Mg–Cu–Ni Aluminum Alloy by Akopyan, T. K., Padalko, A. G., Belov, N. A., Karpova, Zh. A.

    Published in Russian metallurgy Metally (01-11-2017)
    “…The effect of barothermal treatment by hot isostatic pressing (HIP) on the structure and the properties of castings of a promising high-strength cast aluminum…”
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  9. 9

    Effect of Barothermal Processing on the Solid-State Formation of the Structure and Properties of 16 at % Si–Al Hypereutectic Alloy by Dedyaeva, E. V., Zaitsev, D. V., Lukina, E. A., Nikiforov, P. N., Padalko, A. G., Talanova, G. V., Solntsev, K. A.

    Published in Inorganic materials (01-02-2018)
    “…We describe barothermal processing (hot isostatic pressing) of a 16 at % Si–Al binary alloy for 3 h at a temperature of 560°C and pressure of 100 MPa for 3 h,…”
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  10. 10

    Effect of barothermal processing on the microstructure and properties of Al–10 at % Si hypoeutectic binary alloy by Dedyaeva, E. V., Nikiforov, P. N., Padalko, A. G., Talanova, G. V., Shvorneva, L. I.

    Published in Inorganic materials (01-07-2016)
    “…We describe barothermal processing (hot isostatic pressing) of an Al–10 at % Si binary alloy for 3 h at a temperature of 560°C and pressure of 100 MPa. The…”
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  11. 11

    Effect of a high temperature and hydrostatic pressure on the structure and the properties of a high-strength cast AM5 (the 201.2 alloy type) aluminum alloy by Akopyan, T. K., Padalko, A. G., Belov, N. A., Shurkin, P. K.

    Published in Russian metallurgy Metally (01-07-2016)
    “…The phase-transition temperatures of a high-strength cast AM5 aluminum alloy are determined at atmospheric pressure and an excess pressure of 100 MPa using…”
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  12. 12

    Influence of hot isostatic pressing on the structure and properties of an innovative low-alloy high-strength aluminum cast alloy based on the Al–Zn–Mg–Cu–Ni–Fe system by Akopyan, T. K., Padalko, A. G., Belov, N. A.

    Published in Russian metallurgy Metally (01-11-2015)
    “…Hot isostatic pressing (HIP) is applied for treatment of castings of innovative low-ally high-strength aluminum alloy, nikalin ATs6N0.5Zh based on the…”
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  13. 13

    Differential barothermal analysis (DBA) of Ni-base alloys by Padalko, A G, Veselov, A N, Avduhin, S P, Nipan, G D, Sanygin, V P

    “…The technique of differential barothermal analysis (DBA) combines the hot isostatic pressing technique and classical differential thermal analysis has been…”
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  14. 14

    Pressure effect on the phase transitions in Ni-base multicomponent systems by Padalko, A. G., Veselov, A. N., Avduhin, S. P., Nipan, G. D., Sanygin, V. P.

    “…The phase transformations in the three Ni-base alloys at the temperature range up to 1500 deg C and at the pressure of 170 MPa were studied. Solidus, y'-phase…”
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  15. 15

    Microstructure and properties of the eutectic 12Si–Al alloy subjected to barothermal treatment by Dedyaeva, E. V., Nikiforov, P. N., Padalko, A. G., Talanova, G. V., Shvorneva, L. I.

    Published in Russian metallurgy Metally (01-09-2016)
    “…A binary 12Si–Al alloy is subjected to barothermal treatment (hot isostatic pressing) at a temperature of 560°C and a pressure of 100 MPa for 3 h. This…”
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  16. 16

    High-pressure phase transitions and structure of Al–20 at % Si hypereutectic alloy by Dedyaeva, E. V., Akopyan, T. K., Padalko, A. G., Talanova, G. V., Zubarev, G. I., Izotov, A. D., Suchkov, A. N., Fedotov, V. T., Shvorneva, L. I.

    Published in Inorganic materials (01-10-2016)
    “…Phase transformations of an Al–20 at % Si high-silicon hypereutectic alloy have been studied by differential barothermal analysis at temperatures of up to…”
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  17. 17

    A new jet–emulsion metallurgical process by Tsymbal, V. P., Kozhemyachenko, V. I., Rybenko, I. A., Padalko, A. G., Olennikov, A. A.

    Published in Steel in translation (01-08-2015)
    “…The operation of a jet–emulsion reactor is considered. The possibility of employing fundamental synergetic principles (the theory of self-organization) in…”
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  18. 18

    Effect of barothermal processing on the structure and properties of a WC-Ni3Al alloy by Talanova, G. V., Padalko, A. G., Panov, V. S., Veselov, A. N., Shvorneva, L. I.

    Published in Inorganic materials (01-03-2008)
    “…We have studied the effect of barothermal processing (BTP) on the properties of samples prepared by sintering mixtures of tungsten carbide and aluminum…”
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  19. 19

    FINDING SPATIAL SPECTRAL SCANNING ALTITUDE BY FAR INFRARED BAND RADIATION SENSOR by Vitaly V. Dudnik, Vadim V. Rozhentsov, Grigory G. Padalko

    “…Operation principles and application of the aircraft thermal vision scanners are considered. Their workability is described. The operation diagram of the…”
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  20. 20

    Differential barothermal analysis in the course of reactive powder barothermal processing of RuAl alloys by Povarova, K. B., Padalko, A. G., Drozdov, A. A., Kasanskaya, N. K., Korenovskii, N. L., Skachkov, O. A., Veselov, A. N., Morozov, A. E., Bannykh, I. O.

    “…Thermostable high-temperature structural alloys based on the refractory (melting temperature Tm 2060 deg C) RuAl intermetallic (IM) with an ordered B2 crystal…”
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