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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 >Influence of Gd content on microstructure and mechanical properties of cast Al-12Si-4Cu-2Ni-0.8Mg alloys
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Influence of Gd content on microstructure and mechanical properties of cast Al-12Si-4Cu-2Ni-0.8Mg alloys

机译:Gd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 Gd content on the microstructure and mechanical properties of gravity cast Al-12Si-4 Cu-2Ni-0.8Mg alloys is reported. Metallographic and image analysis techniques have been used to quantitatively examine the microstructural changes at different Gd contents. After Gd additions, the Al3CuGd phase forms and the morphology of Al3CuGd phase gradually develops into needle-like. The morphology of the AlSiFeNiCu-Aluminide and some Al3CuNi phases changes from strip-like to small block-like. The secondary dendrite arm spacing (SDAS) first reduces from 23 mu m to 16 mu m and then increases up to 20 mu m when the addition of Gd increases from 0% to 0.1% and further to 0.5%. It turns out that adding 0.1% Gd into alloys can improve mechanical properties when the temperature is below 200 degrees C. The results show that adding 0.2% Gd into alloys can improve ultimate tensile strength, reduce elongation when the temperature is beyond 300 degrees C. A typical brittle fracture of untreated and 0.1% Gd treated alloys is dominating till 200 degrees C and ductile fracture happens during tests beyond 300 degrees C. However, a typical brittle fracture of 0.2% Gd and 0.5% Gd treated alloys is dominating till 300 degrees C, and brittle and ductile fracture coexist in 350 degrees C. (C) 2015 Elsevier B.V. All rights reserved.
机译:报道了Gd含量对重力铸造Al-12Si-4 Cu-2Ni-0.8Mg合金的组织和力学性能的影响。金相和图像分析技术已用于定量检查不同Gd含量下的显微组织变化。添加Gd后,形成Al3CuGd相,Al3CuGd相的形态逐渐发展为针状。 AlSiFeNiCu-铝化物和一些Al3CuNi相的形态从条状变为小块状。二次枝晶臂间距(SDAS)首先从23微米减小到16微米,然后在Gd的添加从0%增大到0.1%并进一步增加到0.5%时增大到20微米。结果表明,当温度低于200摄氏度时,向合金中添加0.1%的Gd可以改善机械性能。结果表明,当温度超过300摄氏度时,向合金中添加0.2%的Gd可以提高极限拉伸强度,降低伸长率。未经处理的和0.1%Gd处理的合金的典型脆性断裂占主导地位,直到200摄氏度,超过300摄氏度的测试过程中发生延性断裂。但是,直到0.2摄氏度,典型的0.2%Gd和0.5%Gd处理的合金的脆性破裂占主导地位。 C,脆性和延性断裂在350摄氏度下共存。(C)2015 Elsevier BV保留所有权利。

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