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Nanometer Scale Mechanical Behavior of Grain Boundaries

机译:晶界的纳米尺度力学行为

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A nonlinear field projection method has been developed to study nanometer scale mechanical properties of grain boundaries in nanocrystalline FCC metals. The nonlinear field projection is based on the principle of virtual work, for virtual variations of atomic positions in equilibrium through nonlocal interatomic interactions such as EAM potential interaction, to get field-projected subatomic-resolution traction distributions on various grain boundaries. The analyses show that the field projected traction produces periodic concentrated compression sites on the grain boundary, which act as crack trapping or dislocation nucleation sites. The field projection was also used to assess the nanometer scale failure processes of Cu 15 grain boundaries doped with Pb. It was revealed that the Pb dopants prevented the emission of dislocations by grain boundary slip and embrittles the grain boundary.
机译:已经开发出非线性场投影方法来研究纳米晶FCC金属中晶界的纳米级机械性能。非线性场投影基于虚拟功的原理,通过非局部原子间相互作用(例如EAM电位相互作用)使平衡中原子位置发生虚拟变化,以获得在各种晶界上的场投影亚原子分辨率牵引力分布。分析表明,场投射的牵引力在晶界上产生周期性的集中压缩点,这是裂纹捕获或位错成核点。场投影还用于评估掺杂Pb的Cu 15晶界的纳米尺度破坏过程。结果表明,Pb掺杂阻止了晶界滑移引起的位错的释放,并使晶界变脆。

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