Recovery of Scratch Grooves in Ti-6Al-4V Alloy Caused by Reversible Phase Transformations; Metals; Vol. 10, iss. 10

Opis bibliograficzny
Parent link:Metals
Vol. 10, iss. 10.— 2020.— [1332, 14 p.]
Kolejni autorzy: Shugurov A. R. Artur Rubinovich, Panin A. V. Alexey Viktorovich, Dmitriev A. I. Andrey Ivanovich, Nikonov A. Yu. Anton Yurjevich
Streszczenie:Title screen
The deformation behaviors of Ti-6Al-4V alloy samples with lamellar and bimodal microstructures under scratch testing were studied experimentally and using molecular dynamics simulation. It was found that the scratch depth in the sample with a bimodal microstructure was twice as shallow as that measured in the sample with a lamellar microstructure. This effect is attributed to the higher hardness of the sample with a bimodal microstructure and the larger amount of elastic recovery of scratch grooves in this sample. On the basis of the results of molecular dynamics simulation, a mechanism was proposed, which associates the recovery of the scratch grooves with the inhomogeneous vanadium distribution in the Я-areas. The calculations showed that at a vanadium content typical for Ti-6Al-4V alloy, both the body-centered cubic (BCC) and hexagonal close-packed (HCP) structures can be more energetically favorable depending on the atomic volume. Therefore, compressive or tensile stresses induced by the indenter could facilitate Я?a and a?Я phase transformations, respectively, in the vanadium-depleted domains of the Я-areas, which contribute to the recovery of the Ti-6Al-4V alloy subjected to scratching.
Język:angielski
Wydane: 2020
Hasła przedmiotowe:
Dostęp online:https://doi.org/10.3390/met10101332
Format: Elektroniczne Rozdział
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=662929

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200 1 |a Recovery of Scratch Grooves in Ti-6Al-4V Alloy Caused by Reversible Phase Transformations  |f A. R. Shugurov, A. V. Panin, A. I. Dmitriev, A. Yu. Nikonov 
203 |a Text  |c electronic 
300 |a Title screen 
320 |a [References: 42 tit.] 
330 |a The deformation behaviors of Ti-6Al-4V alloy samples with lamellar and bimodal microstructures under scratch testing were studied experimentally and using molecular dynamics simulation. It was found that the scratch depth in the sample with a bimodal microstructure was twice as shallow as that measured in the sample with a lamellar microstructure. This effect is attributed to the higher hardness of the sample with a bimodal microstructure and the larger amount of elastic recovery of scratch grooves in this sample. On the basis of the results of molecular dynamics simulation, a mechanism was proposed, which associates the recovery of the scratch grooves with the inhomogeneous vanadium distribution in the Я-areas. The calculations showed that at a vanadium content typical for Ti-6Al-4V alloy, both the body-centered cubic (BCC) and hexagonal close-packed (HCP) structures can be more energetically favorable depending on the atomic volume. Therefore, compressive or tensile stresses induced by the indenter could facilitate Я?a and a?Я phase transformations, respectively, in the vanadium-depleted domains of the Я-areas, which contribute to the recovery of the Ti-6Al-4V alloy subjected to scratching. 
461 |t Metals 
463 |t Vol. 10, iss. 10  |v [1332, 14 p.]  |d 2020 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
610 1 |a Ti-6Al-4V 
610 1 |a scratch testing 
610 1 |a molecular dynamics 
610 1 |a microstructure 
610 1 |a phase transformations 
610 1 |a скретч-тестирование 
610 1 |a молекулярная динамика 
610 1 |a микроструктура 
610 1 |a фазовые превращения 
701 1 |a Shugurov  |b A. R.  |c Specialist in the field of material science  |c Professor of Tomsk Polytechnic University, Doctor of Physical and Mathematical Sciences  |f 1967-  |g Artur Rubinovich  |y Tomsk  |9 22641 
701 1 |a Panin  |b A. V.  |c physicist  |c Professor of Tomsk Polytechnic University, doctor of physical and mathematical Sciences  |f 1971-  |g Alexey Viktorovich  |3 (RuTPU)RU\TPU\pers\34630  |9 17992 
701 1 |a Dmitriev  |b A. I.  |c physicist  |c engineer of Tomsk Polytechnic University, doctor of physical and mathematical sciences  |f 1972-  |g Andrey Ivanovich  |9 18967 
701 1 |a Nikonov  |b A. Yu.  |g Anton Yurjevich 
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856 4 |u https://doi.org/10.3390/met10101332  |z https://doi.org/10.3390/met10101332 
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