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Microstructural Analysis of Orientation-Dependent Recovery and Recrystallization in a Modified 9Cr-1Mo Steel Deformed by Compression at a High Strain Rate

机译:高应变速率压缩变形9Cr-1mo钢取向依赖回复与再结晶组织分析

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摘要

The evolution of the microstructure and texture during annealing of a modified ferritic/martensitic 9Cr-1Mo steel compressed by dynamic plastic deformation (DPD) to a strain of 2.3 has been investigated using transmission electron microscopy and electron backscatter diffraction. It is found that the duplex 〈111〉 + 〈100〉 fiber texture formed by DPD is transformed during annealing to a dominant 〈111〉 fiber texture, and that crystallites of the 〈111〉 component have an advantage during both nucleation and growth. Detailed characterization of the microstructural morphology, and estimation of the stored energies in 〈111〉- and 〈100〉-oriented regions in deformed and annealed samples, as well as investigations of the growth of recrystallizing grains, are used to analyze the annealing behavior. It is concluded that recrystallization in the given material occurs by a combination of oriented nucleation and oriented growth.
机译:使用透射电子显微镜和电子背散射衍射研究了改性的铁素体/马氏体9Cr-1Mo钢在退火过程中的微观结构和织构的演变,该钢被动态塑性变形(DPD)压缩至2.3应变。发现由DPD形成的双相<111> + <100>纤维织构在退火过程中转变为主要的<111>纤维织构,& 111&组分的微晶在成核和生长期间均具有优势。显微组织形态的详细表征,以及变形和退火后样品在〈111〉和〈100〉取向区域的​​储能估计,以及对重结晶晶粒长大的研究,都用于分析退火行为。结论是,给定材料中的重结晶是通过定向成核和定向生长的结合而发生的。

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