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Enhanced Mechanical Properties of Extruded Mg-9massAl-1massZn-2massCa Alloy

机译:增强挤出Mg-9mass%Al-1mass%Zn-2mass%Ca合金的机械性能

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In order to investigate the relationships between microstructure and mechanical properties of extruded Mg-9mass%Al-lmass%Zn-2mass%Ca (AZX912) alloy, the AZX912 alloy ingots with and without solution treatment (ST) were extruded at a low temperature of 523 K, and some extrusions were subsequently annealed at 473-573 K. The as-extruded bar exhibited dynamically recrystallized fine grains, and the amount of fine Mg_(17)Al_(12) precipitates in grains. Grain coarsening occurred with an increased grain size from ~2 to ~8 μm after annealing. Solution treatment seems to affect grain coarsening during extrusion. All extruded bars exhibited basal texture, and the extruded bar annealed at 573 K exhibited slightly lower texture intensity than the others. The extruded bar exhibited high mechanical strength of 377 MPa and medium elongation of 6.6%, when solution treatment before extrusion and final annealing were not applied. The high mechanical strength was likely attributed to the small grain size, large work hardening and a great amount of fine Mg_(17)Al_(12) precipitates in the extrusions.
机译:为了研究挤出Mg-9mass%Al-Lmas%Zn-2mass%Ca(AZX912)合金的微观结构和机械性能之间的关系,在低温下挤出具有和不含溶液处理(ST)的AZX912合金锭随后在473-573K k下进行523 k和一些挤出物。用挤出的棒材显示出动态再结晶的细粒,细mg_(17)Al_(12)的沉淀物中的细菌。退火后,晶粒粗糙的晶粒尺寸增加到2至〜8μm。溶液治疗似乎在挤出过程中影响晶粒粗化。所有挤压条都表现出基础纹理,挤出棒在573 k下退火呈略低于其他纹理强度。当在挤出之前处理溶液和最终退火之前,挤出的杆呈现高机械强度为377MPa和6.6%的中伸长率为6.6%。高机械强度可能归因于小的晶粒尺寸,大型工作硬化和大量的细mg_(17)Al_(12)挤出挤出物。

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