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Deformation structure after fracture-toughness test of Mg-Al-Zn alloys processed by equal-channel-angular extrusion

机译:等通道角挤压Mg-Al-Zn合金断裂韧性试验后的变形组织

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Fracture toughness and deformation structures have been investigated using an AZ31 magnesium alloy processed by equal-channel-angular extrusion (ECAE). The ECAE-processed alloy (as-ECAE) was annealed at 573 K for 24 h ( annealed-ECAE). The average grain sizes of as-ECAE and annealed-ECAE alloys were 4.0 and 16.3 mu m, respectively. The plane-strain fracture toughness K-IC, obtained by stretched-zone analysis in as-ECAE and annealed-ECAE, were estimated to be 27.3 and 23.5 MPa/m(1/2), respectively. From optical microstructural observations in samples after the fracture-toughness tests, deformation twins were observed in annealed-ECAE. No deformation twins were observed in as-ECAE. In addition, dislocations on basal planes, as well as on non-basal planes, were activated in as-ECAE. It is concluded that the enhancement of the fracture toughness in the fine-grain structure was related to a reduction of deformation twins and dislocation movement in non-basal planes.
机译:已经使用通过等通道角挤压(ECAE)处理的AZ31镁合金研究了断裂韧性和变形结构。将经ECAE处理的合金(as-ECAE)在573 K退火24小时(经退火的ECAE)。 as-ECAE和退火的ECAE合金的平均晶粒尺寸分别为4.0和16.3微米。通过在as-ECAE和退火的ECAE中进行拉伸区分析获得的平面应变断裂韧性K-IC分别估计为27.3和23.5 MPa / m(1/2)。从断裂韧性测试后样品的光学显微结构观察中,在退火的ECAE中观察到变形孪晶。在as-ECAE中未观察到变形孪晶。另外,在as-ECAE中激活了基底平面以及非基底平面上的位错。结论是,细晶粒结构中断裂韧性的增强与变形孪晶的减少和在非基面上的位错运动有关。

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