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Atomistic Simulation of He Clustering and Defects Produced in Ni 被引量:1

Atomistic Simulation of He Clustering and Defects Produced in Ni
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摘要 Using the molecular dynamics method, the stability of small He-vacancy clusters is studied under the condition of the high He and low vacancy densities. The result shows that there is a competition between He atoms detrapped and self-interstitial atoms (SIAs) emitted during the clustering of He atoms. When the He number is above a critical value of 9, the SIA emission is predominant. The SIA emission can result in deep capture of He atoms since the binding energy of He to a He-vacancy cluster is increased with the number of SIAs created. The cluster thus grows up. In addition, more SIAs are created when the temperature is elevated. The average volume of a He atom is increased. The cluster expansion takes place at high temperature. Using the molecular dynamics method, the stability of small He-vacancy clusters is studied under the condition of the high He and low vacancy densities. The result shows that there is a competition between He atoms detrapped and self-interstitial atoms (SIAs) emitted during the clustering of He atoms. When the He number is above a critical value of 9, the SIA emission is predominant. The SIA emission can result in deep capture of He atoms since the binding energy of He to a He-vacancy cluster is increased with the number of SIAs created. The cluster thus grows up. In addition, more SIAs are created when the temperature is elevated. The average volume of a He atom is increased. The cluster expansion takes place at high temperature.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2006年第5期1261-1264,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No 10376008.
关键词 HIGH-TEMPERATURE EMBRITTLEMENT FORMATION ENERGIES HELIUM METALS IRRADIATION NICKEL HIGH-TEMPERATURE EMBRITTLEMENT FORMATION ENERGIES HELIUM METALS IRRADIATION NICKEL
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