首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >A Comparative Study on the Static Recrystallization Behavior of Cold-Rolled Mg-3Al-1Zn Alloy Stimulated by Electropulse Treatment and Conventional Heat Treatment
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A Comparative Study on the Static Recrystallization Behavior of Cold-Rolled Mg-3Al-1Zn Alloy Stimulated by Electropulse Treatment and Conventional Heat Treatment

机译:耐冷轧Mg-3Al-1Zn合金静态再结晶行为的比较研究及常规热处理刺激

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摘要

Cold-rolled AZ31 Mg alloy strips, with a reduction of 33 pct, were subjected to electropulse treatment (EPT) and conventional heat treatment (HT) to evaluate the respective influences of electropulses and temperature on the recrystallization behavior of AZ31. The highest measured temperature during the EPT (543 K) was used in HT. The electron backscattered diffraction results demonstrated that the EPT-stimulated recrystallization was completed within 8 seconds, whereas for HT, recrystallization was still far from completion even after 240 seconds. It was found that both the nucleation and grain growth of these two processes were totally different. In the EPT samples, nucleation tended to occur preferentially near extension twin boundaries and grain boundaries by continuous recrystallization, whereas in the HT samples, nucleation occurred mainly by grain boundaries bulging via discontinuous recrystallization. As grain growth proceeded, the texture intensities of the EPT samples decreased gradually and finally evolved into an obvious transverse-direction-split texture. This is likely attributable to the impact of electropulses on the boundary energy and the contribution of nonbasal dislocations; however, the basal-type textures of the HT samples were notably strengthened, which is associated with a 30 degaOE (c) 0001 orientation with respect to the deformed texture.
机译:冷轧AZ31镁合金条,用降低33 PCT的,进行电脉冲处理(EPT)和常规热处理(HT),以评估对AZ31的再结晶行为electropulses和温度的相应的影响。的EPT(543 K)中测得的最高温度在HT使用。电子背散射衍射结果表明,EPT刺激的重结晶在8秒钟内完成,而对于HT,再结晶从完成甚至240秒后仍远。结果发现,这两个两个过程的核和晶粒生长是完全不同的。在EPT样品,成核趋于通过连续再结晶,产生优先附近延伸孪晶界和晶界,而HT样品中,成核主要发生由晶粒间界的不连续通过重结晶鼓出。作为晶粒生长的进行,EPT样品的纹理强度逐渐降低,最终发展成为一个明显的横向方向分割的质地。这可能是由于在边界能量和nonbasal位错的贡献electropulses的影响;然而,HT样品的基础型的纹理被显着增强,这是与一个30 degaOE(c)中0001&GT相关联;取向相对于所述变形织构。

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