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终轧温度对等径角轧制与连续弯曲制备的AZ31合金板材组织和力学性能的影响

Effect of Final Rolling Temperature on Microstructures and Mechanical Properties of AZ31 Alloy Sheets Prepared by Equal Channel Angular Rolling and Continuous Bending.

作者信息

Shi Laixin, Liu Lei, Hu Li, Zhou Tao, Yang Mingbo, Lian Yong, Zhang Jin

机构信息

College of Material Science and Engineering, Chongqing University of Technology, Chongqing 400054, China.

Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China.

出版信息

Materials (Basel). 2020 Jul 28;13(15):3346. doi: 10.3390/ma13153346.

Abstract

The effects of final rolling temperature on the microstructures, texture and mechanical properties of AZ31 Mg alloy sheets prepared by equal channel angular rolling and continuous bending (ECAR-CB) were investigated. Extension twins {10-12} could be observed in the ECAR-CB deformed sheets. The increase in the number of {10-12} extension twins with increasing final rolling temperature might be attributed to the larger grain size and faster grain boundary migration. For all the ECAR-CB sheets at different final rolling temperatures, the deformation texture contains a basal texture component and a prismatic texture component, whereas the annealing recrystallization texture becomes a non-basal (pyramidal) texture with double peaks tilting away from normal direction (ND) to rolling direction (RD). With increasing final rolling temperature, the tilted angle of double peaks of annealing recrystallization non-basal texture increases. In addition, the plasticity and formability of ECAR-CB-A (ECAR-CB and then annealing) AZ31 Mg alloy sheets at room temperature can be improved by increasing the final rolling temperature.

摘要

研究了终轧温度对等径角轧制和连续弯曲(ECAR-CB)制备的AZ31镁合金板材的微观组织、织构和力学性能的影响。在ECAR-CB变形板材中可以观察到延伸孪晶{10-12}。随着终轧温度升高,{10-12}延伸孪晶数量增加可能归因于更大的晶粒尺寸和更快的晶界迁移。对于不同终轧温度下的所有ECAR-CB板材,变形织构包含一个基面织构组分和一个棱柱面织构组分,而退火再结晶织构变为具有从法线方向(ND)向轧制方向(RD)倾斜的双峰的非基面(棱锥面)织构。随着终轧温度升高,退火再结晶非基面织构双峰的倾斜角度增大。此外,通过提高终轧温度可以改善ECAR-CB-A(ECAR-CB然后退火)AZ31镁合金板材在室温下的塑性和成形性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cd1/7435862/197309c98b9d/materials-13-03346-g001.jpg

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