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Effects of Grain Refining and Modification on Mechanical Properties and Microstructures of Multielement Al-7.5Si Cast Alloy

机译:晶粒细化和改性对多元施氮铸造合金机械性能和微观结构的影响

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摘要

With orthogonal tests the effects of grain refiners and modifiers, Al-10Sr, rare earth(RE) and Al-Ti-5B, on the mechanical properties of Al-Si alloy for automobile cylinder blocks were studied. The best result occurred when the proportion of refiners and modifiers was Al-10Sr = 0.1 wt%, RE = 0.3 wt%, Al-5Ti-B = 0.8 wt%. With SEM and EDS the as-cast microstructures of materials after grain refining and modification were observed and analyzed. Tiny branch-shaped AlSi phase, thin-striped AlCu phase, new small bone-shaped AlSiMn phase, new leaf-shaped or feathered B(AlCuCe) phase as well as the phases of other metal compounds made the as-cast microstructures more complicated and more compact after grain refining and modification. Some brittle phases reduced in size obviously and distributed in the grain boundaries of plastic α-phase in network, which acted as intercrystalline strengthening to certain degree. During the tensile deformation these brittle phases could reduce the stress concentration, impeded dislocation movement, and then strengthened the alloy matrix. In addition after grain refining and modification the porosity was significantly reduced.
机译:用正交检测晶粒缩合器和改性剂,Al-10SR,稀土(RE)和Al-Ti-5b的影响,研究了汽车缸体的Al-Si合金的机械性能。当炼油厂和改性剂的比例为Al-10SR = 0.1wt%时,最佳效果发生了最佳的效果,Re = 0.3wt%,Al-5ti-B = 0.8wt%。通过SEM和EDS观察并分析了晶粒精炼和修饰后材料的AS铸造微观结构。微小的分支形状,薄条纹Alcu相,新的小骨形Alsimn相,新的叶形或羽毛B(植物)和其他金属化合物的相位使得铸造的微观结构更复杂和晶粒精炼和修改后更紧凑。一些脆性阶段的尺寸明显减小,并在网络中塑料α-阶段的晶界分布,这作用于一定程度的肾间增强。在拉伸变形期间,这些脆性相可以降低应力浓度,受阻位错运动,然后加强合金基质。此外,在晶粒精制和修饰后,孔隙率显着降低。

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