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Dive into the research topics where Nataliya Malyar is active.

Publication


Featured researches published by Nataliya Malyar.


Acta Materialia | 2017

Dislocation-twin boundary interaction in small scale Cu bi-crystals loaded in different crystallographic directions

Nataliya Malyar; Jean-Sébastien Micha; Gerhard Dehm; Christoph Kirchlechner


Acta Materialia | 2017

Size effect in bi-crystalline micropillars with a penetrable high angle grain boundary

Nataliya Malyar; Jean-Sébastien Micha; Gerhard Dehm; Christoph Kirchlechner


Acta Materialia | 2017

Dislocation interaction and twinning-induced plasticity in face-centered cubic Fe-Mn-C micro-pillars

Won Seok Choi; Stefanie Sandlöbes; Nataliya Malyar; Christoph Kirchlechner; Sandra Korte-Kerzel; Gerhard Dehm; Bruno C. De Cooman; Dierk Raabe


Scripta Materialia | 2017

Strain rate dependence of the slip transfer through a penetrable high angle grain boundary in copper

Nataliya Malyar; Gerhard Dehm; Christoph Kirchlechner


Scripta Materialia | 2018

On the nature of twin boundary-associated strengthening in Fe-Mn-C steel

Won-Seok Choi; Stefanie Sandlöbes; Nataliya Malyar; Christoph Kirchlechner; Sandra Korte-Kerzel; Gerhard Dehm; Pyuck-Pa Choi; Dierk Raabe


ESMC 2018 | 2018

Nondestructive 3D information on dislocation density and elastic strain in deforming micro-fatigue specimen

Jean-Baptiste Molin; Loïc Renversade; Nataliya Malyar; Oliver Ulrich; Jean-Sébastien Micha; Christoph Kirchlechner


EMRS Spring Meeting | 2018

Deformation of nanotwinned silver by micropillar compression

Maya K. Kini; Nataliya Malyar; Christoph Kirchlechner; Gerhard Dehm


E-MRS Spring Meeting 2018 | 2018

Strain rate sensitivity of dislocation transmission through individual copper grain boundaries

Nataliya Malyar; Blazej Grabowski; Gerhard Dehm; Christoph Kirchlechner


Acta Materialia | 2018

Dislocation slip transmission through a coherent Σ3{111} copper twin boundary: Strain rate sensitivity, activation volume and strength distribution function

Nataliya Malyar; Blazej Grabowski; Gerhard Dehm; Christoph Kirchlechner


TMS 2017 | 2017

New Insights into Plasticity at Grain Boundaries by Nano- and Micromechanics

Christoph Kirchlechner; Nataliya Malyar; Nicolas J. Peter; Gerhard Dehm; Jean-Sébastien Micha

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Jean-Sébastien Micha

Centre national de la recherche scientifique

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Peter Julian Imrich

Austrian Academy of Sciences

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Bruno C. De Cooman

Pohang University of Science and Technology

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