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Effects of Milling Time on Structural and Magnetic Properties of Cu10wtCo15wtNb_3Sn Alloys Consolidated by Hot Pressing

机译:铣削时间对热压巩固Cu10wt%CO15wt%NB_3SN合金结构和磁性的影响

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In this work, Cu-Co-Nb magnetic composite alloys were obtained by hot-pressing under argon atmosphere of an alloy prepared by mechanical mixing. For the preparation of this powder master alloy, it was mixed 15wt% of intermetallic Nb_3Sn, synthesized by mechanical alloying of elemental Nb and Sn and subsequent thermal treatment, and a Cu-10wt%Co solid solution, also prepared by mechanical alloying of elemental Cu and Co. A laboratory mill working at 250 rpm under argon atmosphere during 5 and 10h was used to disperse ultrafine Nb_3Sn particles into the copper-10wt%Co matrix. Microstructure of resulting powders and consolidated materials were characterized by means of X-ray diffraction, scanning electron microscopy, and electron micro probe analysis. Magnetic properties and mechanical properties were measured by means of a vibrating sample magnetometer and a durometer, respectively. Fitting of the X-ray diffraction patterns with the Rietveld method, revealed that during the hot pressing process, the Nb_3Sn particles reacted with cobalt to form (Co,Sn)_2Nb, liberating some Sn that difussed in Cu forming a Cu-Sn solid solution. The influence of the milling time on this structural change and the associated variation of magnetic properties are discussed.
机译:在这项工作中,通过通过机械混合制备的合金的氩气氛下热压获得Cu-Co-Nb磁性复合合金。为了制备该粉末母合金,将其混合15wt%的金属间Nb_3sn,通过元素Nb和Sn的机械合金化合并,随后的热处理,以及Cu-10wt%Co固体溶液,也通过元素Cu的机械合金化制备在5和10H期间,在氩气氛下在氩气氛下工作在250rpm下工作的实验室磨机将超细Nb_3sn颗粒分散到铜-10wt%co基质中。通过X射线衍射,扫描电子显微镜和电子微探针分析,表征得到的粉末和固结材料的微观结构。通过分别通过振动样品磁力计和硬度计测量磁性和机械性能。用RIETVELD方法拟合X射线衍射图案,揭示了在热压过程中,Nb_3Sn颗粒与钴反应以形成(CO,Sn)_2NB,从形成Cu-Sn固体溶液中释放的一些Sn 。讨论了研磨时间对该结构变化的影响和磁性的相关变化。

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