Search Results - "Mosleh, A O"

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  1. 1

    Modelling approach for predicting the superplastic deformation behaviour of titanium alloys with strain hardening/softening characterizations by Mosleh, A O, Mestre-Rinn, P, Khalil, A M, Kotov, A D, Mikhaylovskaya, A V

    Published in Materials research express (01-01-2020)
    “…This paper introduces an approach for modelling the flow behaviour of different titanium alloys (VT6, OT4-1 and VT14 alloys by Russian specifications) in…”
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    Journal Article
  2. 2

    Initial microstructure influence on Ti–Al–Mo–V alloy's superplastic deformation behavior and deformation mechanisms by Mosleh, A.O., Kotov, A.D., Vidal, V., Mochugovskiy, A.G., Velay, V., Mikhaylovskaya, A.V.

    “…Superplastic forming is an effective way to manufacture complex-shaped parts of titanium-based alloys. This paper studies the influence of the initial…”
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    Journal Article
  3. 3

    High-Strength Titanium-Based Alloy for Low-Temperature Superplastic Forming by Mikhaylovskaya, A. V., Mosleh, A. O., Mestre-Rinn, P., Kotov, A. D., Sitkina, M. N., Bazlov, A. I., Louzguine-Luzgin, D. V.

    “…Reducing the deformation temperature is an important research task for superplastic forming of Ti-based alloys. This study demonstrates that the additions of…”
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    Journal Article
  4. 4

    Controlling liquation behavior and solidification cracks by continuous laser melting process of AA-7075 aluminum alloy by Khalil, A.M., Loginova, I.S., Solonin, A.N., Mosleh, A.O.

    Published in Materials letters (15-10-2020)
    “…•Continuous laser melting of AA7075 standard and modified alloy with Sc + Zr, Ti + B and Fe + Ni was performed.•The microstructure and elemental distribution…”
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    Journal Article
  5. 5

    Superplasticity of an Ultrafine-Grained Ti–4% Al–1% V–3% Mo Alloy by Kotov, A. D., Mikhailovskaya, A. V., Mosleh, A. O., Pourcelot, T. P., Prosviryakov, A. S., Portnoi, V. K.

    “…This paper investigates the microstructure and superplastic indicators of industrial titanium sheets (Ti–4% Al–1% V–3% Mo alloy) in a temperature range of…”
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    Journal Article
  6. 6

    Superplastic deformation behaviour and microstructure evolution of near-α Ti-Al-Mn alloy by Mikhaylovskaya, A.V., Mosleh, A.O., Kotov, A.D., Kwame, J.S., Pourcelot, T., Golovin, I.S., Portnoy, V.K.

    “…Superplastic deformation behaviour of conventional sheets of a near-α titanium alloy (Ti-2.5Al-1.8Mn) was studied by a step-by-step decrease of the strain rate…”
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    Journal Article
  7. 7

    Experimental, modelling and simulation of an approach for optimizing the superplastic forming of Ti-6%Al-4%V titanium alloy by Mosleh, A.O., Mikhaylovskaya, A.V., Kotov, A.D., Kwame, J.S.

    Published in Journal of manufacturing processes (01-09-2019)
    “…[Display omitted] •An integrated approach for superplastic forming of Ti-6%Al-4%V titanium alloy was introduced.•The flow behavior of Ti-6%Al-4%V titanium…”
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    Journal Article
  8. 8

    Microstructure, superplasticity, and mechanical properties of Al–Mg–Er–Zr alloys by Kotov, A.D., Mochugovskiy, A.G., Mosleh, A.O., Kishchik, A.A., Rofman, O.V., Mikhaylovskaya, A.V.

    Published in Materials characterization (01-04-2022)
    “…Minor additions of rare-earth elements improve the mechanical properties of aluminum-based alloys due to precipitation strengthening, increased…”
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    Journal Article
  9. 9

    Superplastic deformation behaviour and microstructure evolution of near-a Ti-Al-Mn alloy by Mikhaylovskaya, AV, Mosleh, AO, Kotov, AD, Kwame, JS, Pourcelot, T, Golovin, IS, Portnoy, VK

    “…Superplastic deformation behaviour of conventional sheets of a near-α titanium alloy (Ti-2.5Al-1.8Mn) was studied by a step-by-step decrease of the strain rate…”
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    Journal Article