首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Nonuniform Recrystallization and Growth Behavior of Grains Dominated by Grain Misorientation and Interfacial Energy in Metastable beta Titanium Alloy
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Nonuniform Recrystallization and Growth Behavior of Grains Dominated by Grain Misorientation and Interfacial Energy in Metastable beta Titanium Alloy

机译:由晶粒错位和亚稳态β钛合金中晶粒错位和界面能量主导的谷物的非均匀重结晶和生长行为

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Metastable titanium alloys usually exhibit nonuniform grain growth behavior under solution treatment, resulting in black spots with dimension of millimeter or centimeter. In this paper, the nonuniform recrystallization and growth behavior of grains were studied in the Ti-5Al-5Mo-5V-1Cr-1Fe metastable titanium alloy. Electron backscatter diffraction technique was used to characterize the crystallographic orientation after solution in both the normal and abnormal (black spot) macroscopic regions, containing grains with high misorientation angles (10 deg) and subgrains with low misorientation angles (10 deg), respectively. The nonuniform growth behavior of grains in the abnormal regions was clarified based on the following two aspects: (1) grain recrystallization and growth inside the abnormal region were delayed due to the low-accumulated plastic strain and low-angle subgrain boundaries; and the growth of some subgrains with favorable neighboring region was accelerated with the transition from low-angle subgrain boundary to high-angle grain boundary; (2) with enough holding time at the phase region, the abnormal region was consumed via the normal grains growing inside. The migration of grain boundaries with various orientations depends on the interfacial energy, which is relevant to the misorientation angle and the interfacial plane between the neighboring grains.
机译:亚稳钛合金通常在溶液处理下表现出不均匀的晶粒生长行为,导致黑点具有毫米或厘米的尺寸。本文在Ti-5Al-5MO-5V-1CR-1FA稳定钛合金中研究了晶粒的不均匀重结晶和生长行为。电子反向散射衍射技术用于在正常和异常(黑点)宏观区域中溶液中溶液的结晶取向,含有高错位角(& 10℃)的晶粒和具有低错位角度的亚甲(10°) , 分别。基于以下两个方面,阐明了异常区域中晶粒的不均匀生长行为:(1)由于低积聚的塑性应变和低角度底层边界,晶粒重结晶和颗粒重结晶和生长被延迟;从低角度粒边界到大角晶边界的过渡,将一些具有良好相邻区域的子征收的生长加速了; (2)在相位区域的持有时间足够,通过在内部生长的正常颗粒消耗异常区域。各种取向的晶界迁移取决于界面能量,与邻近谷物之间的错位角和界面平面相关。

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