Search Results - "EZERSKY, V"

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  1. 1

    Addressing the issue of precipitates in maraging steels – Unambiguous answer by Moshka, O., Pinkas, M., Brosh, E., Ezersky, V., Meshi, L.

    “…Despite several decades' long study, the identity of the precipitating phases responsible for the strengthening of maraging steels is still not clear. In the…”
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    Journal Article
  2. 2

    Hydrogen diffusivity measurement and microstructural characterization of Custom 465 stainless steel by Ifergane, S., Sabatani, E., Carmeli, B., Barkay, Z., Ezersky, V., Beeri, O., Eliaz, N.

    Published in Electrochimica acta (01-10-2015)
    “…Hydrogen diffusivity in Custom 465® martensitic precipitation hardened stainless steel is determined using electrochemical permeation tests. Hydrogen…”
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  3. 3

    Microstructural characterization of spark plasma sintered boron carbide ceramics by Hayun, S., Kalabukhov, S., Ezersky, V., Dariel, M.P., Frage, N.

    Published in Ceramics international (01-03-2010)
    “…Fully dense boron carbide specimens were fabricated by the spark plasma sintering (SPS) technology in the absence of any sintering additives. Densification…”
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  4. 4

    EPITAXY and orientation control in chemical solution deposited PbS and PbSe monocrystalline films by Osherov, A., Shandalov, M., Ezersky, V., Golan, Y.

    Published in Journal of crystal growth (01-06-2007)
    “…Fabrication of monocrystalline semiconductor thin films using chemical solution deposition (CD) has far reaching fundamental and technological implications. We…”
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  5. 5

    The role of solution composition in chemical bath deposition of epitaxial thin films of PbS on GaAs(1 0 0) by Osherov, A., Ezersky, V., Golan, Y.

    Published in Journal of crystal growth (15-10-2007)
    “…Spontaneous reaction of Pb(NO 3) 2 and CS(NH 2) 2 in aqueous NaOH solution was used for depositing PbS thin films on GaAs(1 0 0) single-crystal substrates. The…”
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    High-density nanometer-scale InSb dots formation using droplets heteroepitaxial growth by MOVPE by Shusterman, S., Paltiel, Y., Sher, A., Ezersky, V., Rosenwaks, Y.

    Published in Journal of crystal growth (01-06-2006)
    “…InSb nanostructures were grown by metalorganic vapor-phase epitaxy, using the droplet heteroepitaxial mode. We studied the factors governing the nanodots…”
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    Identification of a new hexagonal phase in the Al–Cu–Re system by Meshi, L., Grushko, B., Ezersky, V.

    Published in Journal of alloys and compounds (20-11-2009)
    “…Particles of an unknown intermetallic phase with the approximate composition Al 65Cu 25Re 10 were observed in a ternary Al–Cu–Re alloy. The structure of this…”
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  10. 10

    New orthorhombic phase in U–Fe–Al–Si system by Zenou, V.Y., Ezersky, V., Meshi, L., Fuks, D., Talianker, M.

    Published in Journal of alloys and compounds (12-01-2011)
    “…▶ In this paper we report on the results of structure investigation of a new quaternary phase observed in U–Fe–Al–Si system. ▶ The composition of this phase…”
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  11. 11

    Analysis of the creep behaviour of a thixoformed AZ91 magnesium alloy by Spigarelli, S, Cabibbo, M, Evangelista, E, Talianker, M, Ezersky, V

    “…Experiments were conducted to determine the creep response of a thixoformed Mg–Al–Zn AZ91 alloy in the temperature range between 120 and 180°C. The initial…”
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  12. 12

    The structure of the ternary aluminide ThFe2Al10 by Meshi, L., Ezersky, V., Venkert, A., Talianker, M.

    Published in Intermetallics (01-07-2005)
    “…A new ternary aluminide containing actinide, ThFe2Al10, was observed in the Al-8 at. %Th-16 at.%Fe alloy. Microstructural study has shown that grains of the…”
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  13. 13

    Tetragonal phase in Al-rich region of U–Fe–Al system by Meshi, L., Zenou, V., Ezersky, V., Munitz, A., Talianker, M.

    Published in Journal of alloys and compounds (27-10-2005)
    “…A new ternary aluminide U 2FeAl 20 with the approximate composition Al–4.2 at% Fe–8.5 at% U was observed in the Al-rich corner of the U–Al–Fe system…”
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  14. 14

    The stability of structures with icosahedral local order in Al-based alloys with transition metals by Kiv, A.E, Ezersky, V.I, Talianker, M.M

    “…The paper considers the stability of the phases formed in alloys of aluminum with transition metals (TM) in terms of the theory of coordination compounds. The…”
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  15. 15

    Identification of the structure of a new Al–U–Fe phase by electron microdiffraction technique by Meshi, L, Zenou, V.Y, Ezersky, V, Munitz, A, Talianker, M

    Published in Journal of alloys and compounds (16-12-2002)
    “…The particles of an unknown intermetallic phase with the approximate composition Al 10Fe 2U were observed in a ternary Al–Fe–U alloy. The structure of this…”
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  16. 16

    Densification of transparent yttrium aluminum garnet (YAG) by SPS processing by Frage, Naum, Kalabukhov, Sergey, Sverdlov, Nataliya, Ezersky, Vladimir, Dariel, Moshe P.

    Published in Journal of the European Ceramic Society (01-12-2010)
    “…Nano-size YAG powder co-mixed with 0.25 wt.% LiF was used to fabricate transparent polycrystalline YAG specimens by means of the Spark Plasma Sintering (SPS)…”
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    Morphological changes induced by thermal anneals in NiFe/Ag multilayers; their relation to the resistive and magnetoresistive properties by Rozenberg, E., Pelleg, J., Dariel, M.P., Mogilaynski, D., Ezersky, V., Sade, G.

    Published in Thin solid films (21-11-1997)
    “…X-ray diffraction and simulation were used to characterize the morphological evolution that takes place in permalloy/silver (NiFe/Ag) multilayers as the result…”
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  19. 19

    Crystal structure of the Al sub(2)CuIr phase by Meshi, L, Ezersky, V, Kapush, D, Grushko, B

    Published in Journal of alloys and compounds (30-04-2010)
    “…A new ternary Al sub(2)CuIr phase was revealed in the Al-Cu-Ir system. It is formed below 1063 degree C from the beta -phase (CsCl-type structure) extending at…”
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  20. 20

    Crystal structure of the Al 2CuIr phase by Meshi, L., Ezersky, V., Kapush, D., Grushko, B.

    Published in Journal of alloys and compounds (2010)
    “…A new ternary Al 2CuIr phase was revealed in the Al–Cu–Ir system. It is formed below 1063 °C from the β-phase (CsCl-type structure) extending at elevated…”
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