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Mechanical and Fractographical Characterization of Extruded Al-Mg-Si-Zr Alloys

机译:挤出Al-Mg-Si-Zr合金的机械和分焦表征

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In this study, the chemical composition of Al-0.8Mg-0.8Si alloys was modified with the addition of 0.1 and 0.2 wt.-% Zr. The billets were manufactured by direct chill casting method, homogenized at 560 °C for 6h and then extruded in order to obtain profiles having hollow and circular sections. Recrystallization layer (shell) became narrower due to the addition of Zr. This was attributed to the formation of very fine precipitates (Al_(3)Zr) within the matrix. The mechanical properties showed that both yield and tensile strengths increased as a function of Zr content. Tensile fracture surfaces were examined by scanning electron microscope and the fractographs reflected the effect of grain structure on the fracture behavior of studied alloys. All fracture surfaces indicated typical dimple ruptures, however, the size of dimples were observed as finer structures as a function of Zr content. As seen in cross-sectional graphs, as the Zr content increased the grain structure was refined due to Al_(3)Zr precipitates. These fine precipitates caused the formation of fine and shallow dimples under loading.
机译:在该研究中,通过添加0.1和0.2重量%的Zr来改变Al-0.8mg-0.8Si合金的化学成分.-%Zr。坯料通过直接冷却铸造方法制造,在560℃下匀浆6小时,然后挤出,以获得具有中空和圆形部分的曲线。重结晶层(壳)由于添加Zr而变窄。这归因于在基质中形成非常细的沉淀物(Al_(3)Zr)。机械性能表明,由于Zr含量的函数增加,产率和拉伸强度增加。通过扫描电子显微镜检查拉伸骨折表面,分数反映了晶粒结构对所研究合金的裂缝行为的影响。所有骨折表面都表示典型的凹坑破裂,然而,作为Zr含量的函数,观察到晶颗粒的尺寸。如在横截面图中所见,随着Zr含量的增加,由于Al_(3)Zr沉淀物,细化晶粒结构。这些细沉淀物导致在载荷下形成精细和浅凹坑。

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