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Featured researches published by Zhenyu Shen.


Philosophical Magazine | 2017

Evolution of dislocation loops in austenitic stainless steels implanted with high concentration of hydrogen

Zhongcheng Zheng; Ning Gao; Rui Tang; Yanxia Yu; Weiping Zhang; Zhenyu Shen; Yunxiang Long; Yaxia Wei; Liping Guo

Abstract It has been found that under certain conditions, hydrogen retention would be strongly enhanced in irradiated austenitic stainless steels. To investigate the effect of the retained hydrogen on the defect microstructure, AL-6XN stainless steel specimens were irradiated with low energy (100 keV) H2+ so that high concentration of hydrogen was injected into the specimens while considerable displacement damage dose (up to 7 dpa) was also achieved. Irradiation induced dislocation loops and voids were characterised by transmission electron microscopy. For specimens irradiated to 7 dpa at 290 °C, dislocation loops with high number density were found and the void swelling was observed. At 380 °C, most of dislocation loops were unfaulted and tangled at 7 dpa, and the void swellings were observed at 5 dpa and above. Combining the data from low dose in previous work to high dose, four stages of dislocation loops evolution with hydrogen retention were suggested. Finally, molecular dynamics simulation was made to elucidate the division of large dislocation loops under irradiation.


Philosophical Magazine | 2018

Bubble-loop complexes induced by helium irradiation and effect of pre-irradiation and post-irradiation of hydrogen in reduced-activation ferritic/martensitic steel

Weiping Zhang; Zhenyu Shen; Yunxiang Long; Yaxia Wei; X.D. Zhou; Cheng Chen; Liping Guo; Jinping Suo

ABSTRACT In the present work, the synergistic effect of high concentration hydrogen and helium on the dislocation loops and bubbles as well as their correlations in reduced-activation ferritic/martensitic (RAFM) steels is investigated. Such an effect was transmuted from 14 MeV neutron irradiation and has been one of the most challenging issues for RAFM steels for future fusion reactors. After low dose (0.18 dpa) high concentration (5000 appm) single-ion helium irradiation at 723 K, very large dislocation loops were observed, and the majority of bubbles were inside dislocation loops, forming bubble-loop complexes. These bubble-loop complexes defects were also present in hydrogen/helium and helium/hydrogen sequential-ion irradiated steels. Pre-irradiated hydrogen ion effectively inhibited the later growth of loops induced by helium post-irradiation, and the higher the ratio of hydrogen to helium fluence, the greater the effect of inhibition. At high fluence of hydrogen pre-irradiation, the structure of bubble-loop complexes disappeared. On the other hand, hydrogen post-irradiation promoted the growth of loops induced by helium pre-irradiation, and the higher the ratio of hydrogen to helium fluence, the greater the effect of promotion. The mechanisms for hydrogen/helium synergistic effects are discussed.


Materials | 2018

Investigation of Helium Behavior in RAFM Steel by Positron Annihilation Doppler Broadening and Thermal Desorption Spectroscopy

Zhenyu Shen; Liping Guo; Weiping Zhang; Shuoxue Jin; Xingzhong Cao; Yunxiang Long; Yaxia Wei

The behavior of helium in reduced-activation ferritic/martensitic steels was investigated systematically with positron annihilation Doppler broadening measurement and thermal desorption spectroscopy. Specimens were irradiated with helium ions with different energies to various fluences at different temperatures. A threshold fluence was observed above which the rate of formation and growth of helium bubbles dramatically increased. Irradiation at higher temperature could suppress the formation and growth of HenVm clusters with low binding energies and enhance that of helium bubbles and HenVm clusters with high binding energies. Different changes of S parameters were observed in various depth after the irradiation temperature was increased from 523 K to 723 K. Irradiation of 18 keV-He+ enhanced the growth of HenVm clusters and helium bubbles compared with 100 keV-He+ irradiation. A possible mechanism is discussed.


Fusion Engineering and Design | 2015

Hydrogen bubble formation and evolution in tungsten under different hydrogen irradiation conditions

Wenhui Hu; Fengfeng Luo; Zhenyu Shen; Liping Guo; Zhongcheng Zheng; Yongming Wen; Yaoyao Ren


Fusion Engineering and Design | 2017

Effects of sequential helium and hydrogen ion irradiation on the nucleation and evolution of bubbles in tungsten

Zhenyu Shen; Zhongcheng Zheng; Fengfeng Luo; Wenhui Hu; Weiping Zhang; Liping Guo; Yaoyao Ren


Journal of Nuclear Materials | 2016

Synergistic effects on dislocation loops in reduced-activation martensitic steel investigated by single and sequential hydrogen/helium ion irradiation

Weiping Zhang; Fengfeng Luo; Yanxia Yu; Zhongcheng Zheng; Zhenyu Shen; Liping Guo; Yaoyao Ren; Jinping Suo


Acta Metallurgica Sinica (english Letters) | 2017

Evolution of Dislocation Loops in AL-6XN Stainless Steels Irradiated by Hydrogen Ions

Zhongcheng Zheng; Yanxia Yu; Weiping Zhang; Zhenyu Shen; Fengfeng Luo; Liping Guo; Yaoyao Ren; Rui Tang


Fusion Engineering and Design | 2017

TEM observation of bubbles induced by single and sequential He/H irradiation in tungsten

Fengfeng Luo; Liping Guo; Deping Lu; Jiawei Wang; Zhongcheng Zheng; Weiping Zhang; Zhenyu Shen


Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms | 2018

Proton-irradiation induced defects in modified 310S steels characterized with positron annihilation spectroscopy and transmission electron microscopy

Weiping Zhang; Zhenyu Shen; Rui Tang; Suoxue Jin; Yaoxiang Song; Yunxiang Long; Yaxia Wei; X.D. Zhou; Cheng Chen; Liping Guo


Radiation Physics and Chemistry | 2017

Radiation-induced segregation at grain boundaries in AL-6XN stainless steels irradiated by hydrogen ions

Yunxiang Long; Zhongcheng Zheng; Liping Guo; Weiping Zhang; Zhenyu Shen; Rui Tang

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Jinping Suo

Huazhong University of Science and Technology

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