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加入微量Sr(0.01%-0.1%,质量分数)可明显细化AZ91D镁合金晶粒,随Sr含量增加,初生相α-Mg尺寸逐渐减小,而二次枝晶间距变化不大,同时β-Mg17Al12析出相增多.Sr添加量为0.1%时,针状或块状Al4Sr相依附在枝晶间的β-Mg17Al12相上析出.Sr在AZ91D合金凝固固-液界面前沿富集,并且优先在曲率较大的枝晶端面富集,从而抑制晶粒长大,细化了合金中初生相α-Mg;同时,Sr在枝晶的尖端富集降低了初生相α-Mg的尖端生长优势,改变了初生相形貌. 相似文献
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利用六轴机器人夹持氩弧焊枪对AZ31B变形镁合金进行了平板对焊,探讨了焊后热处理对焊接接头微观组织、第二相及力学性能的影响规律。结果表明,焊后热处理有效改善了焊接接头的微观组织,大幅提升了焊接接头的力学性能。焊后热处理后,焊接接头微观组织中晶粒尺寸没有太大改变,但沿晶界分布的第二相数量明显减少,焊接接头的抗拉强度和伸长率分别达到了母材的97.8%和84.5%。未经热处理的拉伸样品是在焊缝处断裂,断口呈现出典型脆性断裂特征;而热处理之后的拉伸则是在热影响区断裂,断口呈现出准解理偏韧性的混合断裂特征。 相似文献
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The effects of pulsed magnetic field on the solidified microstructure of an AZ91D magnesium alloy were investigated. The experimental results show that the remarkable microstructural refinement is achieved when the pulsed magnetic field is applied in the solidification of AZ91D alloy. The average grain size of the as-cast microstructure of AZ91D alloy is refined to 104 μm. Besides the grain refinement, the morphology of the primary α-Mg is changed from dendritic to rosette, then to globular shape with changing the parameters of the pulsed magnetic field. The pulsed magnetic field causes melt convection during solidification, which makes the temperature of the whole melt homogenized, and produces an undercooling zone in front of the liquid/solid interface by the magnetic pressure, which makes the nucleation rate increased and big dendrites prohibited. In addition, primary α-Mg dendrites break into fine crystals, resulting in a refined solidification structure of the AZ91D alloy. The Joule heat effect induced in the melt also strengthens the grain refinement effect and spheroidization of dendrite arms. 相似文献