科技报告详细信息
Computer Simulation of Bubble Growth in Metals Due to He
FOILES, STEPHEN M. ; HOYT, JEFFREY J.
Sandia National Laboratories
关键词: Interstitial Helium Generation;    Bubble Growth;    Tritides;    Swelling;    Computerized Simulation;   
DOI  :  10.2172/780304
RP-ID  :  SAND2001-0661
RP-ID  :  AC04-94AL85000
RP-ID  :  780304
美国|英语
来源: UNT Digital Library
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【 摘 要 】
Atomistic simulations of the growth of helium bubbles in metals are performed. The metal is represented by embedded atom method potentials for palladium. The helium bubbles are treated via an expanding repulsive spherical potential within the metal lattice. The simulations predict bubble pressures that decrease monotonically with increasing helium to metal ratios. The swelling of the material associated with the bubble growth is also computed. It is found that the rate of swelling increases with increasing helium to metal ratio consistent with experimental observations on the swelling of metal tritides. Finally, the detailed defect structure due to the bubble growth was investigated. Dislocation networks are observed to form that connect the bubbles. Unlike early model assumptions, prismatic loops between the bubbles are not retained. These predictions are compared to available experimental evidence.
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