首页> 外文会议>International conference on advanced materials and processing >MICROSTRUCTURE AND MAGNETIC PROPERTIES OF NANOSTRUCTURED Al2O3-20volFe70Co30 COMPOSITE PREPARED BY HIGH ENERGY MECHANICAL MILLING
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MICROSTRUCTURE AND MAGNETIC PROPERTIES OF NANOSTRUCTURED Al2O3-20volFe70Co30 COMPOSITE PREPARED BY HIGH ENERGY MECHANICAL MILLING

机译:高能量机械研磨制备的纳米结构Al2O3-20Vol%Fe70CO30复合材料的微观结构和磁性

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Al2O3-20vol%Fe70Co30 composite powders have been prepared by high energy ball milling a mixture of Al_2O_3 powder and Fe70Co30 alloy powder. The Fe70Co30 alloy powder was also prepared by mechanical alloying of Fe and Co powders using the same process. The effects of milling duration from 8 to 48 hours on microstructure and magnetic properties of the nanostructured composite powders have been studied by means of X-ray Diffractometry (XRD), scanning electron microscopy (SEM) and vibrating sample magnetometry (VSM). It was found that the nanostructured composite powder particles with irregular shapes and Fe70Co30 alloy particles being embedded in them formed after 8 hours of milling. The average grain size of the Al2O3 matrix reduced drastically to less than 18nm after 16 hours of milling. On the other hand, the embedded alloy particles demonstrated almost unchanged average grain size in the range of 14-15nm. Magnetic properties of the powder compacts at room temperature were measured from hysteresis curves, and show strong dependence of the milling time, with the coercivity increasing from 67.1 up to 127.9kOe with increasing the milling time from 8 to 48 hours. The possible microstructural reasons for this dependence are discussed.
机译:通过高能量球研磨制备Al2O3-20Vol%Fe70Co30复合粉末,其混合物Al_2O_3粉末和Fe70CO30合金粉末。还通过使用相同方法的Fe和Co粉末的机械合金化制备Fe70CO30合金粉末。通过X射线衍射(XRD),扫描电子显微镜(SEM)和振动样品磁体(VSM)研究了铣削持续时间从8至48小时对纳米结构复合粉末的微观结构和磁性的磁性性能的影响。发现纳米结构复合粉末颗粒具有不规则形状和Fe70CO30合金颗粒,其在铣削8小时后形成在它们中形成。在铣削16小时后,Al2O3基质的平均晶粒尺寸在较大程度上减小至小于18nm。另一方面,嵌入的合金颗粒在14-15nm的范围内显示出几乎不变的平均晶粒尺寸。从滞后曲线测量室温下粉末压块的磁性,并显示出铣削时间的强烈依赖,胁迫从67.1增加到127.9 koe,从8-48小时增加铣削时间。讨论了这种依赖的可能的微观结构原因。

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