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Sergey Kustov

Researcher at University of the Balearic Islands

Publications -  73
Citations -  1043

Sergey Kustov is an academic researcher from University of the Balearic Islands. The author has contributed to research in topics: Diffusionless transformation & Martensite. The author has an hindex of 16, co-authored 66 publications receiving 896 citations.

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Entropy change and effect of magnetic field on martensitic transformation in a metamagnetic Ni–Co–Mn–In shape memory alloy

TL;DR: In this article, the authors studied the entropy change and the shift of the martensitic transformation temperatures with magnetic field in samples of a polycrystalline Ni-Co-Mn-In alloy having different degrees of long-range atomic order due to different heat treatments.
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Entropy change linked to the martensitic transformation in metamagnetic shape memory alloys

TL;DR: In this paper, a Bragg-Williams approximation was proposed to describe the observed behavior in terms of the evolution of the magnetic contribution to the total entropy change in metamagnetic shape memory alloys.
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Entropy change linked to the magnetic field induced martensitic transformation in a Ni–Mn–In–Co shape memory alloy

TL;DR: In this paper, the temperature dependence of the entropy change induced by magnetic field in a Ni-Mn-In-Co ferromagnetic shape memory alloy has been analyzed, and a model which takes into account the value of the martensitic transformation temperature shift and the transformation temperature range, has been proposed.
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Chemical and mechanical stabilization of martensite

TL;DR: In this article, an algorithm of quantitative analysis of two basic contributions to the stabilization of martensite, atomic reordering and pinning of interfaces, has been developed using data obtained by routine calorimetry measurements.
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Isothermal martensitic transformation in metamagnetic shape memory alloys

TL;DR: In this paper, it was shown that in metamagnetic shape memory alloys exhibiting a magnetostructural first order phase transition the direct transition from ferromagnetic austenite to nonmagnetic martensite is isothermal.