Synergy of high-intensity chromium ion implantation and ion beam energy impact on the zirconium alloy surface; Journal of Applied Physics; Vol. 136, iss. 14

Бібліографічні деталі
Parent link:Journal of Applied Physics.— .— New York: AIP Publishing
Vol. 136, iss. 14.— 2024.— Article number 145903, 15 p.
Співавтор: Томский политехнический университет (570)
Інші автори: Ryabchikov A. I. Aleksandr Ilyich, Korneva O. S. Olga Sergeevna, Bozhko I. A. Irina Aleksandrovna, Gurulev A. V. Aleksandr Valerjevich, Dektyarev S. V. Sergey Valentinovich, Ivanova A. I. Anna Ivanovna, Zaytsev Daniil Dmitrievich D. D.
Резюме:Title screen
The peculiarities and modes of material modification with high-intensity, high-power density ion beams on the irradiated surface are studied for the first time. Chromium ions are implanted into a zirconium alloy using a 25 kW/cm2, 450 μs beam at the pulse repetition rates within 8–35 pps. Every high-energy ion pulse impact is followed by ultrafast cooling of the surface due to heat removal into the target material. Three modes are studied at the temperatures of 580, 700, and 900 °C with an additional pulsed heating. An increase in the average target temperature from 580 to 700 °C within 1 h at the same pulse power density allows increasing the depth of chromium ion alloying from 1.5 to more than 7 μm. The use of ultrafast cooling of the Zr1%Nb alloy surface offers a grain size reduction from a few μm to approximately 50–250 nm, without any microstructural changes throughout the sample volume. An inhomogeneous chromium ion distribution over the target surface and depth is observed
Текстовый файл
Мова:Англійська
Опубліковано: 2024
Предмети:
Онлайн доступ:https://doi.org/10.1063/5.0214379
Формат: Електронний ресурс Частина з книги
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=676886

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330 |a The peculiarities and modes of material modification with high-intensity, high-power density ion beams on the irradiated surface are studied for the first time. Chromium ions are implanted into a zirconium alloy using a 25 kW/cm2, 450 μs beam at the pulse repetition rates within 8–35 pps. Every high-energy ion pulse impact is followed by ultrafast cooling of the surface due to heat removal into the target material. Three modes are studied at the temperatures of 580, 700, and 900 °C with an additional pulsed heating. An increase in the average target temperature from 580 to 700 °C within 1 h at the same pulse power density allows increasing the depth of chromium ion alloying from 1.5 to more than 7 μm. The use of ultrafast cooling of the Zr1%Nb alloy surface offers a grain size reduction from a few μm to approximately 50–250 nm, without any microstructural changes throughout the sample volume. An inhomogeneous chromium ion distribution over the target surface and depth is observed 
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463 1 |t Vol. 136, iss. 14  |v Article number 145903, 15 p.  |d 2024 
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701 1 |a Ryabchikov  |b A. I.  |c Professor of Tomsk Polytechnic University, Doctor of physical and mathematical sciences  |c physicist  |f 1950-  |g Aleksandr Ilyich  |9 15150 
701 1 |a Korneva  |b O. S.  |c physicist  |c engineer of Tomsk Polytechnic University  |f 1988-  |g Olga Sergeevna  |9 20156 
701 1 |a Bozhko  |b I. A.  |c physicist  |c Associate Professor of Tomsk Polytechnic University, Candidate of physical and mathematical sciences  |f 1980-  |g Irina Aleksandrovna  |9 17740 
701 1 |a Gurulev  |b A. V.  |c physicist  |c Engineer of Tomsk Polytechnic University  |f 1998-  |g Aleksandr Valerjevich  |9 88686 
701 1 |a Dektyarev  |b S. V.  |c physicist  |c design engineer of Tomsk Polytechnic University  |f 1957-  |g Sergey Valentinovich  |9 18833 
701 1 |a Ivanova  |b A. I.  |c physicist  |c Associate Scientist of Tomsk Polytechnic University  |f 1987-  |g Anna Ivanovna  |9 20002 
701 1 |a Zaytsev  |g Daniil Dmitrievich  |b D. D.  |f 2001-  |c specialist in the field of nuclear technologies  |c Engineer of Tomsk Polytechnic University  |9 88759 
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