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Dr. Einat Strumza

Departments

  • חוקר מוביל במרכז לאפיון תרמופיזיקלי ותרמוכימי

    Faculty of Engineering Sciences, Department of Materials Engineering

    בניין פלינקמן למעבדות מחקר - 64 Floor 1 Room 113, קמפוס מרקוס

  • Ph.D. in Materials Engineering

    THE FACULTY OF ENGINEERING SCIENCES, Materials Engineering

Staff member contact section

strumza@bgu.ac.il

About

Dr. Einat Strumza earned her Ph.D. in Materials Engineering from Ben-Gurion University of the Negev in 2022, following an M.Sc. (2018) and B.Sc. (2016) in the same field. Her doctoral research, titled Experimental Thermochemistry and Kinetics of High Entropy Alloys, focused on phase stability and thermodynamic behavior in multicomponent alloy systems. She has received multiple academic honors, including the Dean of the Faculty of Engineering Award for Excellence, the European Materials Research Society Best Student Presentation Award, and scholarships from the Kreitman School of Advanced Graduate Studies.
Dr. Strumza?s research interests include high-temperature thermal analysis, phase characterization of complex alloys, and thermophysical properties of advanced ceramics and polymers. She has published extensively in leading journals.
Her contributions advance understanding of high-entropy alloys, additive manufacturing, and thermal characterization techniques, bridging fundamental science and industrial applications.

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Publications

On the effects of LiF on the synthesis and reactive sintering of gahnite (ZnAl2O4)

Kinetics of the ?-?? phase separation in a 14%Cr oxide dispersion steel at intermediate temperatures

In situ detection of thermally induced porosity in additively manufactured and sintered objects

Precipitation kinetics, microstructure, and equilibrium state of A2 and B2 phases in multicomponent Al2.75CoCrFeNi alloy

Microstructure, kinetics and thermodynamics of HEA Al0.5CoCrFeNi at T ? 800 °C

Comprehensive study of phase transitions in equiatomic AlCoCrFeNi high-entropy alloy

The effect of texture on the anisotropy of thermophysical properties of additively manufactured AlSi10Mg
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