Imashuku Susumu, Wagatsuma Kazuaki, Kawai Jun
1Department of Materials Science and Engineering,Kyoto University,Sakyo,Kyoto 606-8501,Japan.
2Institute for Materials Research,Tohoku University,2-1-1 Katahira,Aoba-ku,Sendai 980-8577,Japan.
Microsc Microanal. 2016 Feb;22(1):82-6. doi: 10.1017/S1431927615015676. Epub 2016 Jan 7.
Scanning electron microscope-cathodoluminescence (SEM-CL) analysis was performed for neodymium-iron-boron (NdFeB) and samarium-cobalt (Sm-Co) magnets to analyze the rare-earth elements present in the magnets. We examined the advantages of SEM-CL analysis over conventional analytical methods such as SEM-energy-dispersive X-ray (EDX) spectroscopy and SEM-wavelength-dispersive X-ray (WDX) spectroscopy for elemental analysis of rare-earth elements in NdFeB magnets. Luminescence spectra of chloride compounds of elements in the magnets were measured by the SEM-CL method. Chloride compounds were obtained by the dropwise addition of hydrochloric acid on the magnets followed by drying in vacuum. Neodymium, praseodymium, terbium, and dysprosium were separately detected in the NdFeB magnets, and samarium was detected in the Sm-Co magnet by the SEM-CL method. In contrast, it was difficult to distinguish terbium and dysprosium in the NdFeB magnet with a dysprosium concentration of 1.05 wt% by conventional SEM-EDX analysis. Terbium with a concentration of 0.02 wt% in an NdFeB magnet was detected by SEM-CL analysis, but not by conventional SEM-WDX analysis. SEM-CL analysis is advantageous over conventional SEM-EDX and SEM-WDX analyses for detecting trace rare-earth elements in NdFeB magnets, particularly dysprosium and terbium.
对钕铁硼(NdFeB)磁体和钐钴(Sm-Co)磁体进行了扫描电子显微镜 - 阴极发光(SEM-CL)分析,以分析磁体中存在的稀土元素。我们研究了SEM-CL分析相对于传统分析方法(如SEM能量色散X射线(EDX)光谱法和SEM波长色散X射线(WDX)光谱法)在分析NdFeB磁体中稀土元素方面的优势。通过SEM-CL方法测量了磁体中元素的氯化物化合物的发光光谱。通过在磁体上逐滴加入盐酸,然后真空干燥来获得氯化物化合物。通过SEM-CL方法在NdFeB磁体中分别检测到了钕、镨、铽和镝,在Sm-Co磁体中检测到了钐。相比之下,通过传统的SEM-EDX分析很难区分镝浓度为1.05 wt%的NdFeB磁体中的铽和镝。通过SEM-CL分析检测到了NdFeB磁体中浓度为0.02 wt%的铽,但传统的SEM-WDX分析未检测到。SEM-CL分析在检测NdFeB磁体中的痕量稀土元素,特别是镝和铽方面优于传统的SEM-EDX和SEM-WDX分析。