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60 Years of Hall-Petch: Past to Present Nano-Scale Connections

机译:Hall-Petch的60年:过去到现在的纳米级连接

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Pioneering research results reported in the early 1950's by E. O. Hall and N. J. Petch on iron and steel materials have led to an expanded description of the grain size dependence of the complete stress-strain behavior of a wider range of materials and including assessments of other mechanical properties such as the ductile to brittle transition behavior and the hardness of materials, particularly, of nanocrystalline materials. The dislocation pile-up model that was presented originally for the inverse square root of grain diameter dependence of material strength has endured. Most recently, the pile-up model description has been more definitely associated with the Griffith theory of achieving a critical stress concentration at the tip of a crack; and, the Hall-Petch analysis has been connected to the macro-scale description of the fracture mechanics stress intensity parameter. These topics and other "60 years of Hall-Petch" type researches are tracked over time in the present report while giving special emphasis to current order-of-magnitude strength improvements that are reported for metals with nanopolycrystalline grain diameters,
机译:EO Hall和NJ Petch在1950年代初期对钢铁材料进行的开创性研究结果,导致了对更广泛材料的完全应力-应变行为的晶粒尺寸依赖性的扩展描述,包括对其他机械性能的评估例如韧性到脆性的转变行为和材料,特别是纳米晶材料的硬度。最初提出的位错堆积模型是针对材料强度的晶粒直径依赖性的平方根倒数而提出的。最近,堆积模型的描述与格里菲斯理论更加明确地联系在一起,该理论在裂纹尖端处实现了临界应力集中。并且,Hall-Petch分析已与断裂力学应力强度参数的宏观描述相联系。这些主题和其他“ 60年的霍尔-佩奇(Hall-Petch)类型”研究在本报告中会随着时间的流逝而进行,同时特别强调了目前报道的具有纳米多晶晶粒直径的金属在强度上的数量级提高,

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