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Effect of Thermal History on Microstructures and Mechanical Properties of AZ31 Magnesium Alloy Prepared by Friction Stir Processing

机译:热历史对搅拌摩擦制备的AZ31镁合金组织和力学性能的影响

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摘要

Hot-rolled AZ31 (Mg-2.57Al-0.84Zn-0.32Mn, in mass percentage) magnesium alloy is subjected to friction stir processing in air (normal friction stir processing, NFSP) and under water (submerged friction stir processing, SFSP). Thermal history of the two FSP procedures is measured, and its effect on microstructures and mechanical properties of the experimental materials is investigated. Compared with NFSP, the peak temperature during SFSP is lower and the duration time at a high temperature is shorter due to the enhanced cooling effect of water. Consequently, SFSP results in further grain refinement, and the average grain size of the NFSP and SFSP specimens in the stir zone (SZ) are 2.9 μm and 1.3 μm, respectively. Transmission electron microscopy (TEM) examinations confirm that grain refinement is attributed to continuous dynamic recrystallization both for NFSP and SFSP. The average Vickers hardness in the SZ of the NFSP and SFSP AZ31 magnesium alloy are 76 HV and 87 HV. Furthermore, the ultimate tensile strength and the elongation of the SFSP specimen increase from 191 MPa and 31.3% in the NFSP specimen to 210 MPa and 50.5%, respectively. Both the NFSP and SFSP alloys fail through ductile fracture, but the dimples are much more obvious in the SFSP alloy.
机译:将热轧的AZ31(Mg-2.57Al-0.84Zn-0.32Mn,以质量百分比计)的镁合金在空气中(常规摩擦搅拌处理,NFSP)和水下(浸没式摩擦搅拌处理,SFSP)进行摩擦搅拌处理。测量了两种FSP程序的热历史,并研究了其对实验材料的微观结构和力学性能的影响。与NFSP相比,由于水的冷却效果增强,SFSP期间的峰值温度较低,高温下的持续时间较短。因此,SFSP可进一步细化晶粒,搅拌区(SZ)中NFSP和SFSP试样的平均晶粒尺寸分别为2.9μm和1.3μm。透射电子显微镜(TEM)检查确认晶粒细化归因于NFSP和SFSP的连续动态重结晶。 NFSP和SFSP AZ31镁合金在SZ中的平均维氏硬度为76 HV和87 HV。此外,SFSP试样的极限抗拉强度和伸长率从NFSP试样中的191 MPa和31.3%分别增加到210 MPa和50.5%。 NFSP和SFSP合金均会因韧性断裂而失效,但在SFSP合金中,凹痕更为明显。

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