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氢影响下纳米晶体晶界滑移和晶界三叉点裂纹形核模型
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作者 赵可可 朱云蝶 +1 位作者 张吉鼎 江晓禹 《应用数学和力学》 CSCD 北大核心 2024年第7期875-885,共11页
在远场均匀拉伸载荷下,裂纹尖端会产生应力集中,与裂纹尖端相邻的晶界会承受较大的切应力,此切应力会导致晶界滑移.该文研究了氢和纳米晶界滑移对晶界裂纹形核、临界应力强度因子以及屏蔽效应的影响.应用连续分布位错方法给出了模型的... 在远场均匀拉伸载荷下,裂纹尖端会产生应力集中,与裂纹尖端相邻的晶界会承受较大的切应力,此切应力会导致晶界滑移.该文研究了氢和纳米晶界滑移对晶界裂纹形核、临界应力强度因子以及屏蔽效应的影响.应用连续分布位错方法给出了模型的理论解.结果表明:由于位错在晶界三叉点和滑移带尖端处的塞积,楔形裂纹会优先沿着晶界三叉点DC方向和晶界BD向上萌生,而且氢会使得裂纹萌生的总能量降低,氢浓度每增加1%,萌生最稳定裂纹的总能量大约降低1.86%.虽然晶界滑移会使得裂纹尖端的临界应力强度因子和屏蔽效应增大,但是氢使得临界应力强度因子降低.最后根据弱键理论,研究了氢对表面能的影响,氢浓度每增加1%,表面能降低5%.这一理论工作提供了氢和晶界滑移对材料微观断裂力学的新信息,有助于解释金属断裂的微观机理. 展开更多
关键词 晶界滑移 晶界三叉点 裂纹 临界应力强度因子 屏蔽效应
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Structural transformation and energy analysis for pile-up dislocations at triple junction of grain boundary 被引量:1
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作者 Ying-jun GAO Zong-ji HUANG +4 位作者 Qian-qian DENG Kun LIAO Yi-xuan LI Xiao-Ai YI Zhi-rong LUO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第1期45-63,共19页
An energy model for the structure transformation of pile-ups of grain boundary dislocations(GBD)at the triple-junction of the grain boundary of ultrafine-grain materials was proposed.The energy of the pile-up of the G... An energy model for the structure transformation of pile-ups of grain boundary dislocations(GBD)at the triple-junction of the grain boundary of ultrafine-grain materials was proposed.The energy of the pile-up of the GBD in the system was calculated by the energy model,the critical geometric and mechanical conditions for the structure transformation of head dislocation of the pile-up were analyzed,and the influence of the number density of the dislocations and the angle between Burgers vectors of two decomposed dislocations on the transformation mode of head dislocation was discussed.The results show when the GBD is accumulated at triple junction,the head dislocation of the GBD is decomposed into two Burgers vectors of these dislocations unless the angle between the two vectors is less than 90°,and the increase of applied external stress can reduce the energy barrier of the dislocation decomposition.The mechanism that the ultrafine-grained metal material has both high strength and plasticity owing to the structure transformation of the pile-up of the GBD at the triple junction of the grain boundary is revealed. 展开更多
关键词 triple junction of grain boundary dislocation pile-up dislocation structural transformation energy model for pile-up ultrafine-grain materials
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