Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single Crystal

Simultaneous differential scanning calorimetry, DSC, and acoustic emission, AE, measurements were carried out for single crystals of quenched and stress-induced martensite stabilized (SIM-aged) shape memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>...

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Main Authors: Nora Mohareb Samy, Lajos Daróczi, László Zoltán Tóth, Elena Panchenko, Yury Chumlyakov, Nikita Surikov, Dezső László Beke
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:Metals
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Online Access:https://www.mdpi.com/2075-4701/10/4/534
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spelling doaj-fdde5b389f47443c9d5abcf0ee4582c52020-11-25T03:10:02ZengMDPI AGMetals2075-47012020-04-011053453410.3390/met10040534Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single CrystalNora Mohareb Samy0Lajos Daróczi1László Zoltán Tóth2Elena Panchenko3Yury Chumlyakov4Nikita Surikov5Dezső László Beke6Department of Solid State Physics, University of Debrecen, P. O. Box 400, H-4002 Debrecen, HungaryDepartment of Solid State Physics, University of Debrecen, P. O. Box 400, H-4002 Debrecen, HungaryDepartment of Solid State Physics, University of Debrecen, P. O. Box 400, H-4002 Debrecen, HungarySiberian Physical Technical Institute, Tomsk State University, 634050 Tomsk, RussiaSiberian Physical Technical Institute, Tomsk State University, 634050 Tomsk, RussiaSiberian Physical Technical Institute, Tomsk State University, 634050 Tomsk, RussiaDepartment of Solid State Physics, University of Debrecen, P. O. Box 400, H-4002 Debrecen, HungarySimultaneous differential scanning calorimetry, DSC, and acoustic emission, AE, measurements were carried out for single crystals of quenched and stress-induced martensite stabilized (SIM-aged) shape memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> alloy. The transformation temperatures were shifted to higher values, the forward (from austenite to martensite) and reverse transitions became sharper and the width of the hysteresis increased in the SIM-aged sample. The energy distributions of acoustic hits showed similar behaviour to those of the quenched sample and the energy exponents, characterizing the power law behaviour, were also similar. For SIM-aged alloys at heating, in accordance with the sharper (burst-like) transition observed in the DSC run, few high-energy solitary hits were observed, and these hits did not fit to the energy distribution function fitted for smaller energies. Thus, these high-energy events were attributed to high sudden jumps in the phase transition during heating. The effect of long-range order (by applying a heat treatment at 573 K for 6 h to transform the B2 austenite to ordered L2<sub>1</sub> structure) and the SIM-aging on the transformation entropy was also investigated by DSC. It was found that the entropy was about 36% smaller after SIM-aging of the quenched sample and it was practically unchanged after austenite stabilization.https://www.mdpi.com/2075-4701/10/4/534shape memory alloysstress-induced martensite stabilizationacoustic emissiontransformation entropy
collection DOAJ
language English
format Article
sources DOAJ
author Nora Mohareb Samy
Lajos Daróczi
László Zoltán Tóth
Elena Panchenko
Yury Chumlyakov
Nikita Surikov
Dezső László Beke
spellingShingle Nora Mohareb Samy
Lajos Daróczi
László Zoltán Tóth
Elena Panchenko
Yury Chumlyakov
Nikita Surikov
Dezső László Beke
Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single Crystal
Metals
shape memory alloys
stress-induced martensite stabilization
acoustic emission
transformation entropy
author_facet Nora Mohareb Samy
Lajos Daróczi
László Zoltán Tóth
Elena Panchenko
Yury Chumlyakov
Nikita Surikov
Dezső László Beke
author_sort Nora Mohareb Samy
title Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single Crystal
title_short Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single Crystal
title_full Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single Crystal
title_fullStr Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single Crystal
title_full_unstemmed Effect of Stress-Induced Martensite Stabilization on Acoustic Emission Characteristics and the Entropy of Martensitic Transformation in Shape Memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> Single Crystal
title_sort effect of stress-induced martensite stabilization on acoustic emission characteristics and the entropy of martensitic transformation in shape memory ni<sub>51</sub>fe<sub>18</sub>ga<sub>27</sub>co<sub>4</sub> single crystal
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2020-04-01
description Simultaneous differential scanning calorimetry, DSC, and acoustic emission, AE, measurements were carried out for single crystals of quenched and stress-induced martensite stabilized (SIM-aged) shape memory Ni<sub>51</sub>Fe<sub>18</sub>Ga<sub>27</sub>Co<sub>4</sub> alloy. The transformation temperatures were shifted to higher values, the forward (from austenite to martensite) and reverse transitions became sharper and the width of the hysteresis increased in the SIM-aged sample. The energy distributions of acoustic hits showed similar behaviour to those of the quenched sample and the energy exponents, characterizing the power law behaviour, were also similar. For SIM-aged alloys at heating, in accordance with the sharper (burst-like) transition observed in the DSC run, few high-energy solitary hits were observed, and these hits did not fit to the energy distribution function fitted for smaller energies. Thus, these high-energy events were attributed to high sudden jumps in the phase transition during heating. The effect of long-range order (by applying a heat treatment at 573 K for 6 h to transform the B2 austenite to ordered L2<sub>1</sub> structure) and the SIM-aging on the transformation entropy was also investigated by DSC. It was found that the entropy was about 36% smaller after SIM-aging of the quenched sample and it was practically unchanged after austenite stabilization.
topic shape memory alloys
stress-induced martensite stabilization
acoustic emission
transformation entropy
url https://www.mdpi.com/2075-4701/10/4/534
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