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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of Sr content on the microstructure and mechanical properties of cast Al-12Si-4Cu-2Ni-0.8Mg alloys
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Effects of Sr content on the microstructure and mechanical properties of cast Al-12Si-4Cu-2Ni-0.8Mg alloys

机译:Sr含量对铸造Al-12Si-4Cu-2Ni-0.8Mg合金组织和力学性能的影响

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摘要

The influence of Sr content on the microstructure and mechanical properties of gravity cast Al-12Si-4Cu-2Ni-0.8Mg alloy is reported. From the SEM, EDS and XRD results, five kinds of intermetallic phases including Al2Cu, Al7Cu4Ni, Al3CuNi, AlSiFeNiCu-Aluminide and Al5Cu2Mg8Si6 are detected. Metallographic and image analysis techniques have been used to quantitatively examine the microstructural changes at different Sr contents. After Sr additions, the morphology of the eutectic silicon changing from acicular to fibrous, the eutectic cells formed and the morphology of the AlSiFeNiCu-Aluminide changing from block-like to strip-like. When the addition of Sr increased from 0 wt.% to 0.02 wt.%, the secondary dendrite arm spacing (SDAS) reduced from 18 mu m to 13 mu m, and there were no noticeable changes of the volume of AlSiFeNiCu-Aluminide phase. The changes results in the ultimate tensile strength increased from 196 MPa to 249 MPa, the yield strength increased from 176 MPa to 207 MPa, the elongation increase from 0.74% to 0.95% and the quality index (Q) increased from 176 MPa to 246 MPa. When the addition of Sr increased from 0.02 wt.% to 0.04 wt.%, the SDAS increased from 13 mu m to 21 mu m, and the volume of AlSiFeNiCu-Aluminide phase reduced from 1.4 vol.% to 0.8 vol.%. As a result, the ultimate tensile strength reduced from 249 MPa to 226 MPa, the yield strength reduced from 207 MPa to 165 MPa, and there were no noticeable changes of the elongation and the quality index (Q) reduced from 246 MPa to 219 MPa. A typical brittle fracture mode was observed on the tensile fractograph. Plate-like particles and interdendritic regions acted as an easy path for crack propagation. (C) 2014 Elsevier B.V. All rights reserved.
机译:报道了Sr含量对重力铸造Al-12Si-4Cu-2Ni-0.8Mg合金组织和力学性能的影响。从SEM,EDS和XRD结果可以检测出5种金属间相,包括Al2Cu,Al7Cu4Ni,Al3CuNi,AlSiFeNiCu-铝化物和Al5Cu2Mg8Si6。金相和图像分析技术已用于定量检查不同Sr含量下的显微组织变化。加入Sr后,共晶硅的形态从针状变为纤维状,形成了共晶胞,AlSiFeNiCu-铝化物的形态从块状变为条状。当Sr的添加量从0重量%增加到0.02重量%时,二次枝晶臂间距(SDAS)从18μm减小到13μm,并且AlSiFeNiCu-铝化物相的体积没有明显变化。变化的结果是极限抗拉强度从196 MPa增加到249 MPa,屈服强度从176 MPa增加到207 MPa,伸长率从0.74%增加到0.95%,质量指数(Q)从176 MPa增加到246 MPa 。当Sr的添加从0.02重量%增加到0.04重量%时,SDAS从13μm增加到21μm,并且AlSiFeNiCu-铝化物相的体积从1.4体积%减少到0.8体积%。结果,极限抗拉强度从249 MPa降低到226 MPa,屈服强度从207 MPa降低到165 MPa,伸长率没有明显变化,质量指数(Q)从246 MPa降低到219 MPa。 。在拉伸断裂仪上观察到典型的脆性断裂模式。板状颗粒和树枝状区域是裂纹扩展的简便途径。 (C)2014 Elsevier B.V.保留所有权利。

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