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Prediction and identification of calcium-rich phases in Al-Si alloys by electron backscatter diffraction EBSD/SEM

机译:电子背散射衍射EBSD / SEM预测和鉴定Al-Si合金中富钙相

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摘要

Al-7Si-3Cu-Fe, Al-7Si-3Cu-Fe-0.5Mn, Al-12Si-Mg-Ni-Cu, A319 and A380 alloys containing 0.0020, 0.0040, 0.0080, 0.1 and 0.2 wt. percent Ca were used in this research to study the effects of Ca additions on their microstructures and hardness. Samples from the molten alloys were taken and characterized by SEM, EDS and EBSD analysis. Electron backscatter diffraction patterns (EBSDPs) were used to assess the crystallographic characteristics of calcium compounds, thus identifying their stoichiometry. On the other hand, microstructural formation was predicted using an adapted version of Thermo-Calc~(?) software. Compounds which contain calcium-rich particles with "needle-like" or "plate-like" morphologies were consistent with that of the hexagonal CaAl_2Si_2 intermetallic phase in all of the alloys used. Moreover, it was found that Ca additions of 40 ppm and higher, refined the eutectic Si particles and coarsened the iron-rich intermetallics as well. Brinell hardness was evaluated to determine the effect of calcium concentration on the hardness of the Al-Si alloys used in this study.
机译:含有0.0020、0.0040、0.0080、0.1和0.2重量%的Al-7Si-3Cu-Fe,Al-7Si-3Cu-Fe-0.5Mn,Al-12Si-Mg-Ni-Cu,A319和A380合金。在本研究中,使用%Ca来研究Ca添加对其微观结构和硬度的影响。从熔融合金中取样并通过SEM,EDS和EBSD分析进行表征。电子背散射衍射图谱(EBSDP)用于评估钙化合物的晶体学特征,从而确定其化学计量。另一方面,使用Thermo-Calc®软件的改进版本可以预测微结构的形成。在所有使用的合金中,含有富钙颗粒且具有“针状”或“板状”形态的化合物与六角形CaAl_2Si_2金属间相具有一致。此外,发现Ca的添加量为40ppm或更高,使共晶Si颗粒细化并且也使富铁的金属间化合物粗化。对布氏硬度进行了评估,以确定钙浓度对本研究中使用的Al-Si合金硬度的影响。

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