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Dislocation Cross-Slip in Nanocrystalline fcc Metals

机译:纳米晶FCC金属中的位错错位

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摘要

Constant strain rate molecular dynamics simulations of nanocrystalline Al demonstrate that a significant amount of dislocations that have nucleated at the grain boundaries, exhibit cross-slip via the Fleischer mechanism as they propagate through the grain. The grain boundary structure is found to strongly influence when and where cross-slip occurs, allowing the dislocation to avoid local stress concentrations that otherwise can act as strong pinning sites for dislocation propagation.
机译:纳米晶Al的恒定应变速率分子动力学模拟表明,在晶界处成核的大量位错在通过晶粒扩散时通过Fleischer机理表现出交叉滑动。发现晶界结构强烈影响何时和何处发生横向滑移,从而使位错避免了局部应力集中,否则局部应力集中会成为位错传播的强大钉扎点。

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