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Effect of annealing on microstructure and mechanical properties of ZK60 magnesium alloy sheets processed by twin-roll cast and differential speed rolling

机译:退火对双辊连铸和差速轧制ZK60镁合金薄板组织和力学性能的影响

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In this study, ZK60 magnesium strips produced by twin-roll casting were subjected to differential speed rolling with velocity ratios of 1.2 and 1.5 and equal speed rolling. Annealing treatment was applied to the rolled strips to investigate its effect on microstructure, texture and mechanical properties. The results show that compared with the sheet processed by equal speed rolling, the sheets processed by differential speed rolling show more apparent shear bands in the rolled state and a higher fraction of fine grains after annealing. The sheets processed by differential speed rolling show a single-peak basal fiber with a decreased maximum pole intensity compared to a clear double-peak texture of the sheet processed by equal speed rolling, and both are weakened after annealing. The sheets processed by differential speed rolling present significantly higher ductility and slightly lower yield strength than the sheet processed by equal speed rolling. The annealing process contributes to decreases in the strengths and improvement in ductility, which can be attributed to the weakening of basal texture by recrystal-lization. These results suggest that the annealing is an effective way to enhance the formability of sheets produced by differential speed rolling.
机译:在这项研究中,对双辊铸造生产的ZK60镁带材进行了速比为1.2和1.5的等速轧制和等速轧制。对轧制带钢进行退火处理,以研究其对组织,织构和机械性能的影响。结果表明,与等速轧制的板相比,差速轧制的板在轧制状态下表现出更多的表观剪切带,退火后的细晶粒比例更高。与通过等速轧制加工的板材的清晰双峰织构相比,通过差速轧制加工的板材显示出单峰基础纤维的最大磁极强度降低,并且两者均在退火后变弱。与通过等速轧制处理的板相比,通过差速轧制处理的板呈现出显着更高的延展性并且屈服强度略低。退火过程有助于降低强度并改善延展性,这可归因于由于重结晶而导致的基础组织的减弱。这些结果表明,退火是增强通过差速轧制生产的板的可成形性的有效方法。

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