Search Results - "Samaee, Vahid"

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  1. 1

    Deciphering the interactions between single arm dislocation sources and coherent twin boundary in nickel bi-crystal by Samaee, Vahid, Dupraz, Maxime, Pardoen, Thomas, Van Swygenhoven, Helena, Schryvers, Dominique, Idrissi, Hosni

    Published in Nature communications (11-02-2021)
    “…The introduction of a well-controlled population of coherent twin boundaries (CTBs) is an attractive route to improve the strength ductility product in face…”
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    Journal Article
  2. 2

    Dislocation driven nanosample plasticity: new insights from quantitative in-situ TEM tensile testing by Samaee, Vahid, Gatti, Riccardo, Devincre, Benoit, Pardoen, Thomas, Schryvers, Dominique, Idrissi, Hosni

    Published in Scientific reports (13-08-2018)
    “…Intrinsic dislocation mechanisms in the vicinity of free surfaces of an almost FIB damage-free single crystal Ni sample have been quantitatively investigated…”
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    Journal Article
  3. 3

    Precipitation Behaviors in Ti–2.3 Wt Pct Cu Alloy During Isothermal and Two-Step Aging by Akamine, Hiroshi, Mitsuhara, Masatoshi, Nishida, Minoru, Samaee, Vahid, Schryvers, Dominique, Tsukamoto, Genki, Kunieda, Tomonori, Fujii, Hideki

    “…Time evolution of precipitates related to age-hardening in Ti–2.3 wt pct Cu alloys was investigated by electron microscopy. In isothermal aging at 723 K, the…”
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    Journal Article
  4. 4

    In-Situ TEM Stress Induced Martensitic Transformation in Ni50.8Ti49.2 Microwires by Pourbabak, Saeid, Orekhov, Andrey, Samaee, Vahid, Verlinden, Bert, Van Humbeeck, Jan, Schryvers, Dominique

    “…In-situ transmission electron microscopy tensile straining is used to study the stress induced martensitic transformation in Ni 50.8 Ti 49.2 . Two microwire…”
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  5. 5

    Recent Advances in Transmission Electron Microscopy for Materials Science at the EMAT Lab of the University of Antwerp by Guzzinati, Giulio, Altantzis, Thomas, Batuk, Maria, De Backer, Annick, Lumbeeck, Gunnar, Samaee, Vahid, Batuk, Dmitry, Idrissi, Hosni, Hadermann, Joke, Van Aert, Sandra, Schryvers, Dominique, Verbeeck, Johan, Bals, Sara

    Published in Materials (28-07-2018)
    “…The rapid progress in materials science that enables the design of materials down to the nanoscale also demands characterization techniques able to analyze the…”
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  6. 6

    In Situ Quantitative Tensile Testing of Antigorite in a Transmission Electron Microscope by Idrissi, Hosni, Samaee, Vahid, Lumbeeck, Gunnar, Werf, Thomas, Pardoen, Thomas, Schryvers, Dominique, Cordier, Patrick

    “…The determination of the mechanical properties of serpentinites is essential toward the understanding of the mechanics of faulting and subduction. Here we…”
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  7. 7

    Datasets for the analysis of dislocations at grain boundaries and during vein formation in cyclically deformed Ni micropillars by Sandfeld, Stefan, Samaee, Vahid, Idrissi, Hosni, Groten, Jonas, Pardoen, Thomas, Schwaiger, Ruth, Schryvers, Dominique

    Published in Data in brief (01-12-2019)
    “…The dataset together with the corresponding Python scripts and Jupyter notebooks presented in this article are supplementary data for the work presented in…”
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  8. 8

    Shearing and rotation of β″ and βʹ precipitates in an Al-Mg-Si alloy under tensile deformation: In-situ and ex-situ studies by Yang, Mingjun, Orekhov, Andrey, Hu, Zhi-Yi, Feng, Man, Jin, Shenbao, Sha, Gang, Li, Kai, Samaee, Vahid, Song, Min, Du, Yong, Van Tendeloo, Gustaaf, Schryvers, Dominique

    Published in Acta materialia (01-11-2021)
    “…The interaction between dislocations and nano-precipitates during deformation directly influences hardening response of precipitation-strengthening metals such…”
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  9. 9

    Dislocation structures and the role of grain boundaries in cyclically deformed Ni micropillars by Samaee, Vahid, Sandfeld, Stefan, Idrissi, Hosni, Groten, Jonas, Pardoen, Thomas, Schwaiger, Ruth, Schryvers, Dominique

    “…Transmission electron microscopy and finite element-based dislocation simulations were combined to study the development of dislocation microstructures after…”
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  10. 10
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