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Effect of Calcium Additions on Creep Properties of a Die-Cast AM50 Magnesium Alloy

机译:钙添加对压铸AM50镁合金蠕变性能的影响

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Tensile creep tests have been carried out for the die-cast AM50 + xCa. (x = 0.47, 0.95 and 1.72 mass pct) alloys in the temperatures between 423 and 523 K to elucidate the effect of calcium additions on creep properties for the AM50 alloy. The creep curve for the AM50 + xCa alloys is characterized by a minimum in the creep rate followed by an extended accelerating stage, and the decrease in creep rate during transient stage becomes pronounced with calcium concentration. The creep strengthening by calcium addition is emphasized at lower stresses and lower temperatures, resulting in the positive dependence of creep parameters, n and Q_c, against calcium concentration. It is found that the eutectic intermetallic phase covering the primary alpha grains detected in the AM50 + xCa alloys prevents the dislocation annihilation at grain boundaries. The creep strengthening by the addition of calcium results from both the solid solution strengthening of the alpha matrix by solute calcium and the retardation of dislocation annihilation attributed to the eutectic intermetallic phase.
机译:已经对压铸AM50 + xCa进行了拉伸蠕变测试。 (x = 0.47、0.95和1.72质量pct)合金在423至523 K之间的温度下,以阐明钙添加对AM50合金蠕变性能的影响。 AM50 + xCa合金的蠕变曲线的特征是蠕变速率最小,随后是加速阶段,而过渡阶段蠕变速率的下降随钙浓度的升高而变得明显。在较低的应力和较低的温度下,通过添加钙来增强蠕变,从而导致蠕变参数n和Q_c与钙浓度成正相关。发现覆盖在AM50 + xCa合金中检测到的初生α晶粒的共晶金属间相可防止晶界处的位错an没。通过添加钙的蠕变强化是由于固溶钙对α基质的固溶强化和归因于共晶金属间相的位错an没的延迟所致。

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