Cu-Al混合粉末机械合金化过程的核磁共振分析

Li Bai-qin, N. Chu
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引用次数: 1

摘要

对粒径为200目(75 μ m)的纯铜和纯铝单质粉末进行称重和混合,得到所需的Cu15 - Al - 85的平均成分(at.%)。测定了不同球磨次数的粉末混合物的27铝核磁共振谱的变化。通过分析27 Al的核磁共振谱,通过与前人报道的比较,根据核磁共振元素原理进行了详细的物理讨论,并对原子尺度上的机械合金化过程进行了研究。随着球磨时间的延长,Cu - 15al - 85系列样品中的27 Al Knight位移从0.164%降低到0.158%。这意味着价电子的状态被改变了,传导电子的s型分量减少了。27个Al核附近的化学短程序(CSRO)发生了显著变化。具有不同CSRO的合金团簇的形成和发展是由铣削加工过程中混合物中的铜和铝在原子尺度上的强烈相互作用引起的。Cu和Al价电子之间的强相互作用引起了波函数的变化。实验结果表明,真正的合金化反应发生在球磨过程中,在我们的机械合金化条件下,球磨约90小时后完成。此外,MA制备的样品中的CSRO与熔融制备的样品中的CSRO相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
27Al Nuclear Magnetic Resonance Analysis of Mechanical Alloy ing Process in Cu-Al Mixed Powders
Pure elemental powders of copper and aluminum with particle size 200 mesh (75 μ m) were weighted and mixed to give the desired average composition of Cu15 Al 85 (at.%). The variations of the 27 Al nuclear magnetic resonance (NMR) spectra have been measured for the powder mixtures after different times of ball milling. By analyzing the 27 Al NMR spectra, through the comparison with the earlier reports, the detailed physical discussion has proceeded based on the elemental principles of NMR and the process of mechanical alloying (MA) on an atomic scale has been investigated. With increasing the ball milling time, 27 Al Knight shifts in the series of Cu 15 Al 85 samples decrease from 0.164% to 0.158%. This means that the states of valence electrons have been altered and the s like component of the conduction electrons reduced. The chemical short ranged order (CSRO) near the 27 Al nuclei is changed significantly. The formation and development of the alloyed clusters having various CSRO are caused by a strong interaction, on an atomic scale, between copper and aluminum in the mixtures during the milling processing. The strong interactions among the valence electrons of Cu and Al cause the changes in wavefunctions. The experimental results indicate that the true alloying reaction takes place during the ball milling process, and it completes after about 90 hours of ball milling on our mechanical alloying conditions. Moreover, the CSRO in the samples prepared by MA are the same as those with the ingredients prepared by melting.
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