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首页> 外文期刊>Journal of Materials Science >Structure and mechanical properties of mechanically alloyed Al/Al-Cu-Fe composites
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Structure and mechanical properties of mechanically alloyed Al/Al-Cu-Fe composites

机译:机械合金化的Al / Al-Cu-Fe复合材料的结构和力学性能

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Quasicrystalline (QC) powder was prepared by mechanical alloying and subsequent annealing of Al65Cu23Fe12 composition. Obtained quasicrystals were milled together with pure aluminium in the ratios of Al-20 wt% QC and Al-10 wt% QC. A hot consolidation of samples was performed under pressure of 4.5 GPa at elevated temperatures. X-ray diffraction study of the as-consolidated samples shows that the quasicrystalline phase remained in the samples if consolidation temperature was lower than 500degreesC. Consolidation at higher temperatures results in disappearing of the QC and formation of crystalline phases, such as Al2Cu and Al7Cu2Fe by reaction between QC and aluminium matrix. SEM study of microstructure of the composite alloys shows an absence of open porosity in the consolidated bulk samples. Besides rather large particles of reinforcing phase of about 20 mum there are also very small particles of less than 1 mum. The uniformity of particles distribution in the matrix increases with increase in the milling duration. Microhadrness measurements and compression tests were performed, an effect of the treatment parameters on the compressive strength was studied. (C) 2004 Kluwer Academic Publishers.
机译:通过机械合金化和随后对Al65Cu23Fe12成分进行退火来制备准晶(QC)粉末。将获得的准晶体与纯铝一起以Al-20 wt%QC和Al-10 wt%QC的比例研磨。在高温下在4.5 GPa的压力下对样品进行热固结。固结样品的X射线衍射研究表明,如果固结温度低于500摄氏度,则准晶相仍保留在样品中。较高温度下的固结会导致QC消失并通过QC与铝基体之间的反应形成结晶相,例如Al2Cu和Al7Cu2Fe。扫描电镜对复合合金微观结构的研究表明,固结块状样品中没有开孔。除了约20μm的相当大的增强相颗粒外,还有小于1μm的非常小的颗粒。随着研磨时间的增加,基质中颗粒分布的均匀性增加。进行了微硬度测量和压缩试验,研究了处理参数对压缩强度的影响。 (C)2004 Kluwer学术出版社。

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