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Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect

Active elements made of Ti(50)Ni(45)Cu(5) shape memory alloy (SMA) were martensitic at room temperature (RT) after hot rolling with instant water quenching. These pristine specimens were subjected to two thermomechanical training procedures consisting of (i) free recovery shape memory effect (FR-SME...

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Autores principales: Popa, Mihai, Lohan, Nicoleta-Monica, Pricop, Bogdan, Cimpoeșu, Nicanor, Porcescu, Marieta, Comăneci, Radu Ioachim, Cazacu, Maria, Borza, Firuța, Bujoreanu, Leandru-Gheorghe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228680/
https://www.ncbi.nlm.nih.gov/pubmed/35745427
http://dx.doi.org/10.3390/nano12122088
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author Popa, Mihai
Lohan, Nicoleta-Monica
Pricop, Bogdan
Cimpoeșu, Nicanor
Porcescu, Marieta
Comăneci, Radu Ioachim
Cazacu, Maria
Borza, Firuța
Bujoreanu, Leandru-Gheorghe
author_facet Popa, Mihai
Lohan, Nicoleta-Monica
Pricop, Bogdan
Cimpoeșu, Nicanor
Porcescu, Marieta
Comăneci, Radu Ioachim
Cazacu, Maria
Borza, Firuța
Bujoreanu, Leandru-Gheorghe
author_sort Popa, Mihai
collection PubMed
description Active elements made of Ti(50)Ni(45)Cu(5) shape memory alloy (SMA) were martensitic at room temperature (RT) after hot rolling with instant water quenching. These pristine specimens were subjected to two thermomechanical training procedures consisting of (i) free recovery shape memory effect (FR-SME) and (ii) work generating shape memory effect (WG-SME) under constant stress as well as dynamic bending and RT static tensile testing (TENS). The structural-functional changes, caused by the two training procedures as well as TENS were investigated by various experimental techniques, including differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), X-ray diffraction (XRD), and atomic force microscopy (AFM). Fragments cut from the active regions of trained specimens or from the elongated gauges of TENS specimens were analyzed by DSC, XRD, and AFM. The DSC thermograms revealed the shift in critical transformation temperatures and a diminution in specific absorbed enthalpy as an effect of training cycles. The DMA thermograms of pristine specimens emphasized a change of storage modulus variation during heating after the application of isothermal dynamical bending at RT. The XRD patterns and AMF micrographs disclosed the different evolution of martensite plate variants as an effect of FR-SME cycling and of being elongated upon convex surfaces or compressed upon concave surfaces of bent specimens. For illustrative reasons, the evolution of unit cell parameters of B19′ martensite, as a function of the number of cycles of FR-SME training, upon concave regions was discussed. AFM micrographs emphasized wider and shallower martensite plates on the convex region as compared to the concave one. With increasing the number of FR-SME training cycles, plates’ heights decreased by 84–87%. The results suggest that FR-SME training caused marked decreases in martensite plate dimensions, which engendered a decrease in specific absorbed enthalpy during martensite reversion.
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spelling pubmed-92286802022-06-25 Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect Popa, Mihai Lohan, Nicoleta-Monica Pricop, Bogdan Cimpoeșu, Nicanor Porcescu, Marieta Comăneci, Radu Ioachim Cazacu, Maria Borza, Firuța Bujoreanu, Leandru-Gheorghe Nanomaterials (Basel) Article Active elements made of Ti(50)Ni(45)Cu(5) shape memory alloy (SMA) were martensitic at room temperature (RT) after hot rolling with instant water quenching. These pristine specimens were subjected to two thermomechanical training procedures consisting of (i) free recovery shape memory effect (FR-SME) and (ii) work generating shape memory effect (WG-SME) under constant stress as well as dynamic bending and RT static tensile testing (TENS). The structural-functional changes, caused by the two training procedures as well as TENS were investigated by various experimental techniques, including differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), X-ray diffraction (XRD), and atomic force microscopy (AFM). Fragments cut from the active regions of trained specimens or from the elongated gauges of TENS specimens were analyzed by DSC, XRD, and AFM. The DSC thermograms revealed the shift in critical transformation temperatures and a diminution in specific absorbed enthalpy as an effect of training cycles. The DMA thermograms of pristine specimens emphasized a change of storage modulus variation during heating after the application of isothermal dynamical bending at RT. The XRD patterns and AMF micrographs disclosed the different evolution of martensite plate variants as an effect of FR-SME cycling and of being elongated upon convex surfaces or compressed upon concave surfaces of bent specimens. For illustrative reasons, the evolution of unit cell parameters of B19′ martensite, as a function of the number of cycles of FR-SME training, upon concave regions was discussed. AFM micrographs emphasized wider and shallower martensite plates on the convex region as compared to the concave one. With increasing the number of FR-SME training cycles, plates’ heights decreased by 84–87%. The results suggest that FR-SME training caused marked decreases in martensite plate dimensions, which engendered a decrease in specific absorbed enthalpy during martensite reversion. MDPI 2022-06-17 /pmc/articles/PMC9228680/ /pubmed/35745427 http://dx.doi.org/10.3390/nano12122088 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Popa, Mihai
Lohan, Nicoleta-Monica
Pricop, Bogdan
Cimpoeșu, Nicanor
Porcescu, Marieta
Comăneci, Radu Ioachim
Cazacu, Maria
Borza, Firuța
Bujoreanu, Leandru-Gheorghe
Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect
title Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect
title_full Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect
title_fullStr Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect
title_full_unstemmed Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect
title_short Structural-Functional Changes in a Ti(50)Ni(45)Cu(5) Alloy Caused by Training Procedures Based on Free-Recovery and Work-Generating Shape Memory Effect
title_sort structural-functional changes in a ti(50)ni(45)cu(5) alloy caused by training procedures based on free-recovery and work-generating shape memory effect
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228680/
https://www.ncbi.nlm.nih.gov/pubmed/35745427
http://dx.doi.org/10.3390/nano12122088
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