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Effect of rare-earth elements on the microstructural characterization in rapidly quenched thermally strengthened aluminium alloys

机译:稀土元素对快速淬火热增强铝合金组织的影响

摘要

The influence of rare-earth elements on the microstructural features of rapidly solidified Al93.3 - xFe4.3V0.7Si1.7Mmx(x = 0, 0.5, 1.0, 3.0, 6.0) alloy was systematically studied by differential scanning calorimetry, X-ray diffraction, transmission electron microscopy and energy dispersive X-ray analysis. Experimental results show that there are different type of phase transformation depending on mischmetal (Mm) concentration. For Al87.3Fe4.3V0.7Si1.7Mm6.0 metallic glass, a shoulder was observed on the high-angle side of the main peak in the X-ray diffraction patterns due to quenched-in aluminium nuclei and a prepeak resulting from Mm-Mm pairs. By means of particle extraction analysis, it has been proved that the α-Al13(Fe, V)3Si phase existing in as-cast Al-Fe-V-Si alloy is wholly or partly inhibited for Al93.3 - xFe4.3V0.7Si1.7Mmx(x = 0.5, 1.0, 3.0) crystalline alloys. In addition, a new phenomenon has been reported that the lattice parameter of as-quenched Al-Fe-V-Si-Mm alloys decrease with increasing Mm content; the "cell lessening effect". This effect is presumably due to the results of composite interactions between rare-earth elements and alloy elements.
机译:通过差示扫描量热法,X射线系统研究了稀土元素对快速凝固Al93.3-xFe4.3V0.7Si1.7Mmx(x = 0,0.5,1.0,3.0,6.0)合金显微组织特征的影响。衍射,透射电子显微镜和能量色散X射线分析。实验结果表明,根据混合金属(Mm)的浓度,有不同类型的相变。对于Al87.3Fe4.3V0.7Si1.7Mm6.0金属玻璃,由于铝核淬火和Mm-形成的预峰,在X射线衍射图中主峰的高角度侧观察到肩部。毫米对。通过颗粒萃取分析证明,铸态的Al-Fe-V-Si合金中存在的α-Al13(Fe,V)3Si相被Al93.3-xFe4.3V0完全或部分抑制。 7Si1.7Mmx(x = 0.5,1.0,3.0)晶体合金。另外,据报道,一种新的现象是,淬火的Al-Fe-V-Si-Mm合金的晶格参数随着Mm含量的增加而降低; “细胞减少作用”。可能是由于稀土元素和合金元素之间的复合作用所致。

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