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Hall-Petch Relationship and Dislocation Model for Deformation of Ultrafine-Grained and Nanocrystalline Metals

机译:超细晶粒和纳米晶金属变形的霍尔-Petch关系和位错模型

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摘要

Models and theories to explain the Hall-Petch relationship are reviewed briefly. Then, a dislocation model to incorporate some characteristic mechanical properties of ultrafine-grained and nanocrystalline metals will be introduced and used to explain some experimental results. The model is based on the idea that dislocations emitted from grain boundaries and bow out into grain interiors during their propagation are responsible for plastic deformation and thermally-activated depinning process at grain boundaries is regarded to be rate controlling. Some implications of the model are discussed in the light of recent experimental results.
机译:简要回顾了解释霍尔与皮奇关系的模型和理论。然后,将引入结合了超细晶粒和纳米晶金属的某些特征力学性能的位错模型,并用于解释一些实验结果。该模型基于这样的思想:从晶界发出的位错在其传播过程中向晶内部弯曲并导致塑性变形,并且将晶界处的热活化脱钉过程视为速率控制。根据最近的实验结果,对该模型的一些含义进行了讨论。

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