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冷轧和退火对铒金属微观结构和织构的影响。

Effect of Cold Rolling and Annealing on the Microstructure and Texture of Erbium Metal.

作者信息

Chen Shiying, Zhang Xiaowei, Li Zongan, Wang Shuang, Wang Yixuan, Li Jinying, Wu Daogao, Wang Zhiqiang, Chen Dehong, Lu Wenli, Mao Ning, Yang Wensheng, Xu Minglei

机构信息

National Engineering Research Center for Rare Earth, GRINM Group Co., Ltd., Beijing 100088, China.

GRIREM Advanced Materials Co., Ltd., Beijing 100088, China.

出版信息

Materials (Basel). 2022 Feb 12;15(4):1370. doi: 10.3390/ma15041370.

Abstract

Erbium metal with purity ≥ 99% was cold rolled to 30%, 40%, 50%, and 60% deformations and the Er metal of 60% deformation was annealed at different temperatures for 1 h. The effect of cold rolling deformation and annealing on the microstructure and texture evolution of Er metal was investigated by XRD, EBSD, Microhardness tester, and OM. P is the orientation index, which is used to judge the preferred orientation. The research results showed that grains were broken and refined gradually with increasing deformation, the average grain size was 3.37 µm, and the orientation distribution was uniform for 60% deformation; deformation twins appeared in the grain when the deformation was less than 40%, which contributed to the generation of (0001) plane orientation. Comparing with the initial state, the (011-0) plane orientation gradually weakened and the (111-0) plane orientation had a trend of further strengthening with the increasing deformation; the (1-21-0) plane orientation remained unchanged, but there was a gradual weakening trend when the deformation was greater than 50%. For 60% deformation of Er metal, the deformed microstructure was replaced by fine equiaxed grains with the increasing annealing temperature, and the high-performance Er metal with fine and uniform equiaxed grains can be obtained under annealing at 740 °C for 1 h.

摘要

纯度≥99%的铒金属被冷轧至30%、40%、50%和60%的形变量,并且将形变量为60%的铒金属在不同温度下退火1小时。通过X射线衍射仪(XRD)、电子背散射衍射(EBSD)、显微硬度测试仪和光学显微镜(OM)研究了冷轧变形和退火对铒金属微观结构和织构演变的影响。P是取向指数,用于判断择优取向。研究结果表明,随着形变量增加,晶粒逐渐破碎细化,60%形变量时的平均晶粒尺寸为3.37 µm,且取向分布均匀;形变量小于40%时,晶粒内出现变形孪晶,这有助于(0001)面取向的产生;与初始状态相比,随着形变量增加,(011-0)面取向逐渐减弱,(111-0)面取向有进一步强化的趋势;(1-21-0)面取向保持不变,但形变量大于50%时呈逐渐减弱趋势。对于形变量为60%的铒金属,随着退火温度升高,变形后的微观结构被细小等轴晶粒取代,在740℃退火1小时可获得具有细小均匀等轴晶粒的高性能铒金属。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a61/8880798/7b8d9e9c718a/materials-15-01370-g001.jpg

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