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高温预熔化晶界位错的结构组态转变的探究
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作者 余一婉 覃默清 +2 位作者 易小爱 廖坤 高英俊 《广西科学》 CAS 北大核心 2023年第2期332-339,共8页
晶体材料的性能受其内部晶界特性的影响。在高温下,晶体材料在晶界上易发生预熔化。本研究采用晶体相场(PFC)方法模拟高温二维六角晶体的晶界预熔化区在双轴加载作用下的结构演化情况。结果显示,晶界位错会发生配对,形成具有对称结构的... 晶体材料的性能受其内部晶界特性的影响。在高温下,晶体材料在晶界上易发生预熔化。本研究采用晶体相场(PFC)方法模拟高温二维六角晶体的晶界预熔化区在双轴加载作用下的结构演化情况。结果显示,晶界位错会发生配对,形成具有对称结构的位错团,一对位错上下排列,另一对位错左右排列,构成4个位错的组合。随着施加的应变增大,晶界位错预熔化区域横向扩展,其形状最初为棒状,逐渐转化为六边形,再转变成“V”形,最后又收缩为六边形。晶界预熔化区的形状变化伴随着内部位错结构的转变,从而发生位错芯扩展,原来上下配对的位错转变为并行排列的位错,左右排列的位错发生扩展滑移,并在左右两端萌生出一对新的位错。当预熔化区域扩展达到横向最宽时,该区域发射一对位错,随后预熔化区域开始收缩,最后又恢复到初始的形状。上述结果表明,位错结构的组态转变对晶体材料的高温变形机制能产生强烈的影响。 展开更多
关键词 预熔化 晶界位错 位错组态 组态转变 晶体相场模型
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Microstructure evolution and dislocation configurations in nanostructured Al-Mg alloys processed by high pressure torsion 被引量:3
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作者 刘满平 蒋婷慧 +3 位作者 谢学锋 刘强 李雪峰 Hans J.ROVEN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第12期3848-3857,共10页
Microstructure evolution and dislocation configurations in nanostructured Al–Mg alloys processed by high pressure torsion (HPT) were analyzed by transmission electron microscopy (TEM) and high-resolution TEM (HR... Microstructure evolution and dislocation configurations in nanostructured Al–Mg alloys processed by high pressure torsion (HPT) were analyzed by transmission electron microscopy (TEM) and high-resolution TEM (HRTEM). The results show that the grains less than 100 nm have sharp grain boundaries (GBs) and are completely free of dislocations. In contrast, a high density of dislocation as high as 1017 m^-2 exists within the grains larger than 200 nm and these larger grains are usually separated into subgrains and dislocation cells. The dislocations are 60° full dislocations with Burgers vectors of 1/2〈110〉and most of them appear as dipoles and loops. The microtwins and stacking faults (SFs) formed by the Shockley partials from the dissociation of both the 60° mixed dislocation and 0° screw dislocation in ultrafine grains were simultaneously observed by HRTEM in the HPT Al–Mg alloys. These results suggest that partial dislocation emissions, as well as the activation of partial dislocations could also become a deformation mechanism in ultrafine-grained aluminum during severe plastic deformation. The grain refinement mechanism associated with the very high local dislocation density, the dislocation cells and the non-equilibrium GBs, as well as the SFs and microtwins in the HPT Al-Mg alloys were proposed. 展开更多
关键词 Al-Mg aluminum alloy severe plastic deformation high pressure torsion dislocation configurations grain refinement deformation mechanism
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