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Published in: Shape Memory and Superelasticity 4/2023

01-09-2023 | ORIGINAL RESEARCH ARTICLE

The Influence of Aging on Shape Memory Effect in Ti-50.7at.%Ni and Ti-51.7at.%Ni Single Crystals

Authors: E. E. Timofeeva, M. V. Zherdeva, E. Yu. Panchenko, A. S. Eftifeeva, N. Yu. Surikov, A. I. Tagiltsev, Yu. I. Chumlyakov, E. S. Marchenko

Published in: Shape Memory and Superelasticity | Issue 4/2023

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Abstract

The shape memory effect (SME) during stress-assisted thermal cycles under compressive load in [001]-oriented Ti-50.7at.%Ni and Ti-51.7at.%Ni single crystals aged at 823 K for 1 h has been studied. Ti3Ni4 particles with a diameter of 300–400 nm were precipitated with volume fractions of 11 and 22% and interparticle distances of 300–500 nm and 50–150 nm, respectively. In quenched single crystals, the SME parameters were determined by the transformation type (thermal-induced martensitic transformation (MT) or strain glass transition). In contrast, the SME parameters of aged single crystals were determined by the volume fraction of particles and interparticle distances. Differing volume fractions of particles and interparticle distances led to different temperatures (\({M}_{s}^{0}\)) for the formation of B19′-martensite, different strain (εrev), different dependences of the interval of forward MT (\({\Delta }_{1}^{\upsigma }\)) and thermal hysteresis (\({\Delta T}_{1}^{\sigma }={\mathrm{A}}_{\mathrm{f}}^{\upsigma }- {\mathrm{M}}_{\mathrm{s}}^{\upsigma }\) and \({\Delta T}_{2}^{\sigma } ={\mathrm{A}}_{\mathrm{s}}^{\upsigma }- {\mathrm{M}}_{\mathrm{f}}^{\upsigma }\)) on applied stresses, and changes in the morphology of martensite crystals. Practically, these differences do not affect the stresses (σmin and σmax) required to achieve the minimum strain and maximum reversible strain (εrev) and strain growth coefficient (rev/). The influence of aging on the dependence of the SME parameters on the chemical composition was analysed in comparison with quenched crystals.
Literature
1.
go back to reference Timofeeva EE, Panchenko EYu, Zherdeva MV, Eftifeeva AS, Surikov NYu, Tagiltsev AI, Fatkullin I, Tokhmetova A, Yanushonite EI, Chumlyakov YuI (2022) Shape memory effect in TiNi single crystals with thermal-induced martensite transformation or strain glass transition. J Alloys Compd 922:166275CrossRef Timofeeva EE, Panchenko EYu, Zherdeva MV, Eftifeeva AS, Surikov NYu, Tagiltsev AI, Fatkullin I, Tokhmetova A, Yanushonite EI, Chumlyakov YuI (2022) Shape memory effect in TiNi single crystals with thermal-induced martensite transformation or strain glass transition. J Alloys Compd 922:166275CrossRef
2.
go back to reference Timofeeva EE, Panchenko EYu, Surikov NYu, Tagiltsev AI, Marchenko ES, Chumlyakov YuI (2022) On the stress-temperature dependences in TiNi-based shape memory alloys. J Alloys Compd 905:164227CrossRef Timofeeva EE, Panchenko EYu, Surikov NYu, Tagiltsev AI, Marchenko ES, Chumlyakov YuI (2022) On the stress-temperature dependences in TiNi-based shape memory alloys. J Alloys Compd 905:164227CrossRef
3.
go back to reference Sehitoglu H, Jun J, Zhang X, Karaman I, Chumlyakov Y, Maier HJ, Gall K (2001) Shape memory and pseudoelastic behavior of 51.5%Ni–Ti single crystals in solutionized and overaged state. Acta Mater 49:3609–3620CrossRef Sehitoglu H, Jun J, Zhang X, Karaman I, Chumlyakov Y, Maier HJ, Gall K (2001) Shape memory and pseudoelastic behavior of 51.5%Ni–Ti single crystals in solutionized and overaged state. Acta Mater 49:3609–3620CrossRef
4.
go back to reference Karaca HE, Kaya I, Tobe H, Basaran B, Nagasako M, Kainuma R, Chumlyakov Y (2013) Shape memory behavior of high strength Ni54Ti46 alloys. Mater Sci Eng A 580:66–70CrossRef Karaca HE, Kaya I, Tobe H, Basaran B, Nagasako M, Kainuma R, Chumlyakov Y (2013) Shape memory behavior of high strength Ni54Ti46 alloys. Mater Sci Eng A 580:66–70CrossRef
5.
go back to reference Yang Z, Tirry W, Schryvers D (2005) Analytical TEM investigations on concentration gradients surrounding Ni4Ti3 precipitates in Ni–Ti shape memory material. Scr Mater 52:1129–1134CrossRef Yang Z, Tirry W, Schryvers D (2005) Analytical TEM investigations on concentration gradients surrounding Ni4Ti3 precipitates in Ni–Ti shape memory material. Scr Mater 52:1129–1134CrossRef
6.
go back to reference Schryvers D, Tirry W, Yang ZQ (2006) Measuring strain fields and concentration gradients around Ni4Ti3 precipitates. Mater Sci Eng A 438–440:485–488CrossRef Schryvers D, Tirry W, Yang ZQ (2006) Measuring strain fields and concentration gradients around Ni4Ti3 precipitates. Mater Sci Eng A 438–440:485–488CrossRef
7.
go back to reference Chumlyakov YuI, Efimenko SP, Kireeva IV, Panchenko EYu, Sehitogly H, Gall K, Yahia LH (2001) Effects of shape memory and superelasticity in aged TiNi single crystals. Dokl Phys 46:849–852CrossRef Chumlyakov YuI, Efimenko SP, Kireeva IV, Panchenko EYu, Sehitogly H, Gall K, Yahia LH (2001) Effects of shape memory and superelasticity in aged TiNi single crystals. Dokl Phys 46:849–852CrossRef
8.
go back to reference Otsuka К, Ren X (2005) Physical metallurgy of Ti–Ni-based shape memory alloys. Prog Mater Sci 50:511–678CrossRef Otsuka К, Ren X (2005) Physical metallurgy of Ti–Ni-based shape memory alloys. Prog Mater Sci 50:511–678CrossRef
9.
go back to reference Timofeeva EE, Surikov NYu, Tagiltsev AI, Eftifeeva AS, Neyman AA, Panchenko EYu, Chumlyakov YuI (2020) The superelasticity and shape memory effect in Ni-rich Ti-51.5Ni single crystals after one-step and two-step ageing. Mater Sci Eng A 796:140025CrossRef Timofeeva EE, Surikov NYu, Tagiltsev AI, Eftifeeva AS, Neyman AA, Panchenko EYu, Chumlyakov YuI (2020) The superelasticity and shape memory effect in Ni-rich Ti-51.5Ni single crystals after one-step and two-step ageing. Mater Sci Eng A 796:140025CrossRef
10.
go back to reference Hamilton RF, Sehitoglu H, Chumlyakov Y, Maier HJ (2004) Stress dependence of the hysteresis in single crystal NiTi alloys. Acta Mater 52:3383–3402CrossRef Hamilton RF, Sehitoglu H, Chumlyakov Y, Maier HJ (2004) Stress dependence of the hysteresis in single crystal NiTi alloys. Acta Mater 52:3383–3402CrossRef
11.
go back to reference Fan G, Chen W, Yang S, Zhu J, Ren X, Otsuka K (2004) Origin of abnormal multi-stage martensitic transformation behavior in aged Ni-rich Ti–Ni shape memory alloys. Acta Mater 52:4351–4362CrossRef Fan G, Chen W, Yang S, Zhu J, Ren X, Otsuka K (2004) Origin of abnormal multi-stage martensitic transformation behavior in aged Ni-rich Ti–Ni shape memory alloys. Acta Mater 52:4351–4362CrossRef
12.
go back to reference Kang J, Li R, Zheng D, Wu H, Wang M, Niu P, Li J, Liu X, Lai D, Yuana T (2023) Unconventional precipitation and martensitic transformation behaviour of Ni-rich NiTi alloy fabricated via laser-directed energy deposition. Virtual Phys Prototyp 18:2231415CrossRef Kang J, Li R, Zheng D, Wu H, Wang M, Niu P, Li J, Liu X, Lai D, Yuana T (2023) Unconventional precipitation and martensitic transformation behaviour of Ni-rich NiTi alloy fabricated via laser-directed energy deposition. Virtual Phys Prototyp 18:2231415CrossRef
13.
go back to reference Khalil-Allafi J, Dlouhy A, Eggeler G (2002) Ni4Ti3-precipitation during aging of NiTi shape memory alloys and its influence on martensitic phase transformations. Acta Mater 50:4255–4274CrossRef Khalil-Allafi J, Dlouhy A, Eggeler G (2002) Ni4Ti3-precipitation during aging of NiTi shape memory alloys and its influence on martensitic phase transformations. Acta Mater 50:4255–4274CrossRef
14.
go back to reference Ryklina EP, Polyakova KA, Tabachkova NYu, Resnina NN, Prokoshkin SD (2018) Effect of B2 austenite grain size and aging time on microstructure and transformation behavior of thermomechanically treated titanium nickelide. J Alloys Compd 764:626–638CrossRef Ryklina EP, Polyakova KA, Tabachkova NYu, Resnina NN, Prokoshkin SD (2018) Effect of B2 austenite grain size and aging time on microstructure and transformation behavior of thermomechanically treated titanium nickelide. J Alloys Compd 764:626–638CrossRef
15.
go back to reference Kaya I, Karaca HE, Souri M, Chumlyakov Y, Kurkcu H (2017) Effects of orientation on the shape memory behavior of Ni51Ti49 single crystals. Mater Sci Eng A 686:73–81CrossRef Kaya I, Karaca HE, Souri M, Chumlyakov Y, Kurkcu H (2017) Effects of orientation on the shape memory behavior of Ni51Ti49 single crystals. Mater Sci Eng A 686:73–81CrossRef
16.
go back to reference Stebner AP, Bigelow GS, Yang J, Shukla DP, Saghaian SM, Rogers R, Garg A, Karaca HE, Chumlyakov Y, Bhattacharya K, Noebe RD (2014) Transformation strains and temperatures of a nickel–titanium–hafnium high temperature shape memory alloy. Acta Mater 76:40–53CrossRef Stebner AP, Bigelow GS, Yang J, Shukla DP, Saghaian SM, Rogers R, Garg A, Karaca HE, Chumlyakov Y, Bhattacharya K, Noebe RD (2014) Transformation strains and temperatures of a nickel–titanium–hafnium high temperature shape memory alloy. Acta Mater 76:40–53CrossRef
17.
go back to reference Evirgen A, Karaman I, Santamarta R, Pons J, Noebe RD (2015) Microstructural characterization and shape memory characteristics of the Ni50.3Ti34.7Hf15 shape memory alloy. Acta Mater 83:48–60CrossRef Evirgen A, Karaman I, Santamarta R, Pons J, Noebe RD (2015) Microstructural characterization and shape memory characteristics of the Ni50.3Ti34.7Hf15 shape memory alloy. Acta Mater 83:48–60CrossRef
18.
go back to reference Chumlyakov YI, Kireeva IV, Panchenko EY, Timofeeva EE, Kretinina IV, Kuts OA (2015) Physics of thermoelastic martensitic transformation in high-strength single crystals. Mater Sci Found 81–82:107–173CrossRef Chumlyakov YI, Kireeva IV, Panchenko EY, Timofeeva EE, Kretinina IV, Kuts OA (2015) Physics of thermoelastic martensitic transformation in high-strength single crystals. Mater Sci Found 81–82:107–173CrossRef
19.
go back to reference Miyazaki S, Wayman CM (1988) The R-phase transition and associated shape memory mechanism in Ti-Ni single crystals. Acta Metall 36:181–192CrossRef Miyazaki S, Wayman CM (1988) The R-phase transition and associated shape memory mechanism in Ti-Ni single crystals. Acta Metall 36:181–192CrossRef
20.
go back to reference Miyazaki S, Kimura S, Otsuka K (1998) Shape-memory effect and pseudoelasticity associated with the R-phase transition in Ti-50.5at.%Ni single crystals. Philos Mag A 57:467–478CrossRef Miyazaki S, Kimura S, Otsuka K (1998) Shape-memory effect and pseudoelasticity associated with the R-phase transition in Ti-50.5at.%Ni single crystals. Philos Mag A 57:467–478CrossRef
21.
go back to reference Michutta J, Somsen Ch, Yawny A, Dlouhy A, Eggeler G (2006) Elementary martensitic transformation processes in Ni-rich NiTi single crystals with Ni4Ti3 precipitates. Acta Mater 54:3525–3542CrossRef Michutta J, Somsen Ch, Yawny A, Dlouhy A, Eggeler G (2006) Elementary martensitic transformation processes in Ni-rich NiTi single crystals with Ni4Ti3 precipitates. Acta Mater 54:3525–3542CrossRef
22.
go back to reference Panchenko EYu, Chumlyakov YuI, Maier H (2014) Features of multistage thermoelastic B2-R-B19′ martensitic transformations in heterophase single crystals of Ti–Ni alloys. Russ Phys J 57:1116–1125CrossRef Panchenko EYu, Chumlyakov YuI, Maier H (2014) Features of multistage thermoelastic B2-R-B19′ martensitic transformations in heterophase single crystals of Ti–Ni alloys. Russ Phys J 57:1116–1125CrossRef
23.
go back to reference Bataillard L, Bidaux J-E, Gotthardt R (1998) Interaction between microstructure and multiple-step transformation in binary NiTi alloys using in-situ transmission electron microscopy observations. Philosop Mag A 78:327–344CrossRef Bataillard L, Bidaux J-E, Gotthardt R (1998) Interaction between microstructure and multiple-step transformation in binary NiTi alloys using in-situ transmission electron microscopy observations. Philosop Mag A 78:327–344CrossRef
24.
go back to reference Li J-F, Zheng Z-Q, Li X-W, Li S-C (2009) Effect of compressive stress aging on transformation strain and microstructure of Ni-rich TiNi alloy. Mater Sci Eng A 523:207–213CrossRef Li J-F, Zheng Z-Q, Li X-W, Li S-C (2009) Effect of compressive stress aging on transformation strain and microstructure of Ni-rich TiNi alloy. Mater Sci Eng A 523:207–213CrossRef
25.
go back to reference Hornbogen E, Mertinger V, Wurzel D (2001) Microstructure and tensile properties of two binary NiTi-alloys. Scripta Mater 44:171–178CrossRef Hornbogen E, Mertinger V, Wurzel D (2001) Microstructure and tensile properties of two binary NiTi-alloys. Scripta Mater 44:171–178CrossRef
26.
go back to reference Zhang H, Li X, Zhang X (2012) Grain-size-dependent martensitic transformation in bulk nanocrystalline TiNi under tensile deformation. J Alloys Compd 544:19–23CrossRef Zhang H, Li X, Zhang X (2012) Grain-size-dependent martensitic transformation in bulk nanocrystalline TiNi under tensile deformation. J Alloys Compd 544:19–23CrossRef
27.
go back to reference Waitz T, Antretter T, Fischer FD, Simha NK, Karnthaler HP (2007) Size effects on the martensitic phase transformation of NiTi nanograins. J Mech Phys Solids 55:419–444CrossRef Waitz T, Antretter T, Fischer FD, Simha NK, Karnthaler HP (2007) Size effects on the martensitic phase transformation of NiTi nanograins. J Mech Phys Solids 55:419–444CrossRef
28.
go back to reference Waitz T, Pranger W, Antretter T, Fischer FD, Karnthaler HP (2008) Competing accommodation mechanisms of the martensite in nanocrystalline NiTi shape memory alloys. Mater Sci Eng A 481–482(1):479–483CrossRef Waitz T, Pranger W, Antretter T, Fischer FD, Karnthaler HP (2008) Competing accommodation mechanisms of the martensite in nanocrystalline NiTi shape memory alloys. Mater Sci Eng A 481–482(1):479–483CrossRef
29.
go back to reference Waitz T, Kazykhanov V, Karnthaler HP (2004) Martensitic phase transformations in nanocrystalline NiTi studied by TEM. Acta Mater 52:137–147CrossRef Waitz T, Kazykhanov V, Karnthaler HP (2004) Martensitic phase transformations in nanocrystalline NiTi studied by TEM. Acta Mater 52:137–147CrossRef
30.
go back to reference Tirry W, Schryvers D (2005) Quantitative determination of strain fields around Ni4Ti3 precipitates in NiTi. Acta Mater 53:1041–1049CrossRef Tirry W, Schryvers D (2005) Quantitative determination of strain fields around Ni4Ti3 precipitates in NiTi. Acta Mater 53:1041–1049CrossRef
31.
go back to reference Beke DL, Daroczi L, Samy NM, Toth LZ, Bolgar MK (2020) On the thermodynamic analysis of martensite stabilization treatments. Acta Mater 200:490–501CrossRef Beke DL, Daroczi L, Samy NM, Toth LZ, Bolgar MK (2020) On the thermodynamic analysis of martensite stabilization treatments. Acta Mater 200:490–501CrossRef
32.
go back to reference Waitz T (2005) The self-accommodated morphology of martensite in nanocrystalline NiTi shape memory alloys. Acta Mater 53:2273–2283CrossRef Waitz T (2005) The self-accommodated morphology of martensite in nanocrystalline NiTi shape memory alloys. Acta Mater 53:2273–2283CrossRef
33.
go back to reference Fan QC, Zhang YH, Wang YY, Sun MY, Meng YT, Huang SK, Wen YH (2017) Influences of transformation behavior and precipitates on the deformation behavior of Ni-rich NiTi alloys. Mater Sci Eng A 700:269–280CrossRef Fan QC, Zhang YH, Wang YY, Sun MY, Meng YT, Huang SK, Wen YH (2017) Influences of transformation behavior and precipitates on the deformation behavior of Ni-rich NiTi alloys. Mater Sci Eng A 700:269–280CrossRef
34.
go back to reference Fleck NA, Muller GM, Ashby MF, Hutchinson JW (1994) Strain gradient plasticity: theory and experiment. Acta Metal Mater 42:475–487CrossRef Fleck NA, Muller GM, Ashby MF, Hutchinson JW (1994) Strain gradient plasticity: theory and experiment. Acta Metal Mater 42:475–487CrossRef
35.
go back to reference Kim JI, Liu Y, Miyazaki S (2004) Ageing-induced two-stage R-phase transformation in Ti-50.9at.%Ni. Acta Mater 52:487–499CrossRef Kim JI, Liu Y, Miyazaki S (2004) Ageing-induced two-stage R-phase transformation in Ti-50.9at.%Ni. Acta Mater 52:487–499CrossRef
36.
go back to reference Roytburd AL, Slusker Ju (1995) Deformation through a coherent phase transformation. Scripta Metall Mater 32:761–766CrossRef Roytburd AL, Slusker Ju (1995) Deformation through a coherent phase transformation. Scripta Metall Mater 32:761–766CrossRef
37.
go back to reference Sittner P, Landa M, Lukas P, Novak V (2006) R-phase transformation phenomena in thermomechanically loaded NiTi polycrystals. Mech Mater 38:475–492CrossRef Sittner P, Landa M, Lukas P, Novak V (2006) R-phase transformation phenomena in thermomechanically loaded NiTi polycrystals. Mech Mater 38:475–492CrossRef
38.
go back to reference Prokoshkin SD, Korotitskiy AV, Brailovski V, Turenne S, Khmelevskaya IYu, Trubitsyna IB (2004) On the lattice parameters of phases in binary Ti–Ni shape memory alloys. Acta Mater 52:4479–4492CrossRef Prokoshkin SD, Korotitskiy AV, Brailovski V, Turenne S, Khmelevskaya IYu, Trubitsyna IB (2004) On the lattice parameters of phases in binary Ti–Ni shape memory alloys. Acta Mater 52:4479–4492CrossRef
Metadata
Title
The Influence of Aging on Shape Memory Effect in Ti-50.7at.%Ni and Ti-51.7at.%Ni Single Crystals
Authors
E. E. Timofeeva
M. V. Zherdeva
E. Yu. Panchenko
A. S. Eftifeeva
N. Yu. Surikov
A. I. Tagiltsev
Yu. I. Chumlyakov
E. S. Marchenko
Publication date
01-09-2023
Publisher
Springer US
Published in
Shape Memory and Superelasticity / Issue 4/2023
Print ISSN: 2199-384X
Electronic ISSN: 2199-3858
DOI
https://doi.org/10.1007/s40830-023-00462-w

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