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FRACTURE TOUGHNESS IN MAGNESIUM ALLOYS PRODUCED BY SEVERE PLASTIC DEFORMATION

机译:严重塑性变形产生的镁合金中的断裂韧性

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The fracture toughness and deformation structures an AZ31 magnesium alloy processed by equal-channel-angular extrusion (ECAE) were investigated. 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), in as-ECAE and annealed-ECAE were estimated to be 27.3 and 23.5 MPam~(1/2), respectively, by stretched zone analysis. The fracture toughness indicated higher value with grain refinement. From optical microstructural observations in samples after fracture toughness tests, although deformation twins were observed in annealed-ECAE, no deformation twins were observed in as-ECAE. From TEM observations, the dislocations on basal and non-basal planes were activated in as-ECAE. With grain refinement, the activations of dislocations on both basal and non-basal planes were possibly related to the reduction in formation of deformation twins in as-ECAE. In addition, in comparison with direct extruded process, ECAE process was more effective method to improve the fracture toughness in magnesium alloys.
机译:研究了通过等通道角挤出(ECAE)处理的AZ31镁合金的断裂韧性和变形。 AS-ECAE和退火 - ECAE合金的平均晶粒尺寸分别为4.0和16.3μm。通过拉伸区域分析,估计平面应变骨折韧性K_(IC),AS-ECAE和退火ECAE,分别为27.3和23.5mPam〜(1/2)。断裂韧性表明晶粒细化值较高。从裂缝韧性试验后的样品中的光学微观结构观察,尽管在退火 - ECAE中观察到变形双胞胎,但在ECAE中没有观察到变形双胞胎。根据TEM观察,在AS-ECAE中激活基础和非基础架的脱位。通过晶粒细化,基础和非基层的脱位激活可能与AS-ECAE中变形双胞胎的形成的减少有关。另外,与直接挤出过程相比,ECAE过程更有效地改善镁合金中的断裂韧性。

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