Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing

We aimed to clarify the behavior of change in the grain structure and hardness of hot-rolled pure W and its alloys plates developed for various properties by holding at high temperature for long and short durations in the absence of irradiation. The isothermal annealing was performed at 1100 °C for...

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Main Authors: Kohei Tsuchida, Takeshi Miyazawa, Akira Hasegawa, Shuhei Nogami, Makoto Fukuda
Format: Article
Language:English
Published: Elsevier 2018-05-01
Series:Nuclear Materials and Energy
Online Access:http://www.sciencedirect.com/science/article/pii/S2352179117301886
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spelling doaj-f3922e1603bc4f0ba3601d1943864b182020-11-25T01:10:53ZengElsevierNuclear Materials and Energy2352-17912018-05-0115158163Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealingKohei Tsuchida0Takeshi Miyazawa1Akira Hasegawa2Shuhei Nogami3Makoto Fukuda4Department of Quantum Science and Energy Engineering, Tohoku University, 6-6-01-2, Aramaki-aza-aoba, Aoba-ku, Sendai, Miyagi 980-8579, JapanCorresponding author.; Department of Quantum Science and Energy Engineering, Tohoku University, 6-6-01-2, Aramaki-aza-aoba, Aoba-ku, Sendai, Miyagi 980-8579, JapanDepartment of Quantum Science and Energy Engineering, Tohoku University, 6-6-01-2, Aramaki-aza-aoba, Aoba-ku, Sendai, Miyagi 980-8579, JapanDepartment of Quantum Science and Energy Engineering, Tohoku University, 6-6-01-2, Aramaki-aza-aoba, Aoba-ku, Sendai, Miyagi 980-8579, JapanDepartment of Quantum Science and Energy Engineering, Tohoku University, 6-6-01-2, Aramaki-aza-aoba, Aoba-ku, Sendai, Miyagi 980-8579, JapanWe aimed to clarify the behavior of change in the grain structure and hardness of hot-rolled pure W and its alloys plates developed for various properties by holding at high temperature for long and short durations in the absence of irradiation. The isothermal annealing was performed at 1100 °C for 10–3115 h. The isochronous annealing was performed for 1 h in a temperature range of 1100 to 2300 °C. After heat treatment, the grain structure was observed using electron backscatter diffraction (EBSD) and the Vickers hardness was measured in the observed plane. Pure W did not recrystallize by the heat treatment for a short duration of 1 h at 1100 °C, while the recrystallization of pure W progressed during the heat treatment for long duration of 3115 h at 1100 °C. The temperature and duration at which the recrystallization occurs increase because of the dispersion of K bubbles and solid solution of Re. Considering the actual operation period of fusion reactors, a temperature of 1100 °C can result in recrystallization. It is necessary to decrease the maximum operating temperature or to use materials having a high recrystallization temperature by alloying. Keywords: Tungsten, Thermal history, Recrystallization, Grain structure, Recoveryhttp://www.sciencedirect.com/science/article/pii/S2352179117301886
collection DOAJ
language English
format Article
sources DOAJ
author Kohei Tsuchida
Takeshi Miyazawa
Akira Hasegawa
Shuhei Nogami
Makoto Fukuda
spellingShingle Kohei Tsuchida
Takeshi Miyazawa
Akira Hasegawa
Shuhei Nogami
Makoto Fukuda
Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing
Nuclear Materials and Energy
author_facet Kohei Tsuchida
Takeshi Miyazawa
Akira Hasegawa
Shuhei Nogami
Makoto Fukuda
author_sort Kohei Tsuchida
title Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing
title_short Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing
title_full Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing
title_fullStr Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing
title_full_unstemmed Recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing
title_sort recrystallization behavior of hot-rolled pure tungsten and its alloy plates during high-temperature annealing
publisher Elsevier
series Nuclear Materials and Energy
issn 2352-1791
publishDate 2018-05-01
description We aimed to clarify the behavior of change in the grain structure and hardness of hot-rolled pure W and its alloys plates developed for various properties by holding at high temperature for long and short durations in the absence of irradiation. The isothermal annealing was performed at 1100 °C for 10–3115 h. The isochronous annealing was performed for 1 h in a temperature range of 1100 to 2300 °C. After heat treatment, the grain structure was observed using electron backscatter diffraction (EBSD) and the Vickers hardness was measured in the observed plane. Pure W did not recrystallize by the heat treatment for a short duration of 1 h at 1100 °C, while the recrystallization of pure W progressed during the heat treatment for long duration of 3115 h at 1100 °C. The temperature and duration at which the recrystallization occurs increase because of the dispersion of K bubbles and solid solution of Re. Considering the actual operation period of fusion reactors, a temperature of 1100 °C can result in recrystallization. It is necessary to decrease the maximum operating temperature or to use materials having a high recrystallization temperature by alloying. Keywords: Tungsten, Thermal history, Recrystallization, Grain structure, Recovery
url http://www.sciencedirect.com/science/article/pii/S2352179117301886
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AT takeshimiyazawa recrystallizationbehaviorofhotrolledpuretungstenanditsalloyplatesduringhightemperatureannealing
AT akirahasegawa recrystallizationbehaviorofhotrolledpuretungstenanditsalloyplatesduringhightemperatureannealing
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