首页> 外文会议>International Materials Symposium >Structural, Microstructural and Magnetic Properties of Ball Milled Boron-Substituted Sm(Co,Fe,Cu,Zr)_(7.5) Compounds
【24h】

Structural, Microstructural and Magnetic Properties of Ball Milled Boron-Substituted Sm(Co,Fe,Cu,Zr)_(7.5) Compounds

机译:球磨硼取代SM(CO,Fe,Cu,Zr)_(7.5)化合物的结构,微观结构和磁性。

获取原文

摘要

The powders in the micrometer scale of Sm(Co_(0.86)Fe_(0.1)B_(0.04))_(7.5), Sm(Co_(0.82)Fe_(0.1)Zr_(0.04)B_(0.04))_(7.5), Sm(Co_(0.715)Fe_(0.1)Cu_(0.12)Zr_(0.04)B_(0.025))_(7.5) compounds have been prepared by using a high-energy planetary ball miller. The X-ray diffraction patterns have an amorphous state after 42 hours milling while the average grain size is in the range of 0.5-10 μm, as measured by using a scanning electron microscope. Amorphization has been achieved at shorter milling times for samples with higher boron content. Depending on the annealing temperature, the major phases are 1:7, 2:17 hexagonal or fcc-Co as revealed from the X-ray patterns. The annealing at temperature over 900°C for 1h helps the formation of the fcc-Co which becomes the dominant phase, mostly on the higher boron doped samples. From the hysteresis curve of Sm(Co_(0.715)Fe_(0.1)Cu_(0.12)Zr_(0.04)B_(0.025))_(7.5), a coercive field of ~9 kOe has been determined. For this sample there is difference between the two coercive fields, H_(c(χirr=max) and H_(c(m=0). The zirconium doped sample has higher coercive field than the Sm(Co_(0.86)Fe_(0.1)B_(0.04))_(7.5) one. The coercive field is significant increases to the copper doped samples. In the thermomagnetic curves of the as-milled powders, it has been evidenced that there is crystallization, connected to the increase of the magnetization under the constant applied field. The initial and demagnetization curves exhibit slope variations that are connected to the soft fcc-Co phase. Almost zero hydrogen absorption was found for the Cu-doped samples at room temperature.
机译:SM的微米级(CO_(0.86)Fe_(0.04),SM(CO_(0.82)Fe_(0.04)Zr_(0.04))_(0.04))_(0.04))_(0.04))_(7.5)中的粉末(0.04))_(0.04))_(7.5) ,SM(CO_(0.715)Fe_(0.1)Cu_(0.02)Zr_(0.04)B_(0.025))_(7.5)通过使用高能行星球铣刀制备化合物。通过使用扫描电子显微镜测量,X射线衍射图案在42小时铣削后具有无定形状态,而平均晶粒尺寸在0.5-10μm的范围内。在具有较高硼含量的样品的较短铣削时间下已经实现了非杂化。根据退火温度,主要阶段为1:7,2:17六边形或FCC-CO,如X射线图案透露。在900℃超过900℃的温度下退火有助于形成变为优势相的FCC-Co,主要是在更高的硼掺杂样品上。从SM的滞后曲线(CO_(0.715)Fe_(0.1)Cu_(0.04)B_(0.025))_(0.025),已经确定了〜9ko的矫顽磁场。对于该样本,两个矫顽字段之间存在差异,H_(C(χICR= MAX)和H_(C(m = 0)。锆掺杂样品具有比SM更高的矫顽肌(CO_(0.86)FE_(0.1) B_(0.04))_(7.5)一。矫顽场对铜掺杂样品显着增加。在AS-MICKED粉末的热磁曲线中,已经证明存在结晶,连接到磁化的增加。在恒定的施加领域下。初始和退磁曲线表现出连接到软FCC-Co相的斜率变化。在室温下为Cu掺杂的样品发现几乎零氢吸收。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号