• CN:11-2187/TH
  • ISSN:0577-6686

›› 1997, Vol. 33 ›› Issue (1): 22-27.

• 论文 • 上一篇    下一篇

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铁基非晶态合金磁性改善与退火脆化

车晓舟;李祖鑫;戴礼智   

  1. 华南理工大学机电系;冶金部钢铁研究总院
  • 发布日期:1997-01-01

MAGNETISM IMPROVEMENT AND ANNEALING EM BRITTLEMENT OF Fe-BASED AMORPHOUS ALLOYS

Che Xiaozhou;Li Zuxin;Dai Lizhi   

  1. South China University of Technology Central Iron & Steel Research Institute
  • Published:1997-01-01

摘要: 分析了退火过程中非晶态合金条带内应力的松驰与合金的磁性改善之间的联系,以及退火脆化对铁基非晶合金磁应用的影响。磁性改善退火过程中条带内应力的充分松弛,可使淬态Fe79B16Si5非晶合金的饱和磁感应强度增大72%,最大磁导率提高22倍,矫顽力和损耗分别降低86%和83%。但由于合金在磁性最佳温度之前较低的温度下发生的延—脆转化,经磁性改善退火后,合金往往因严重脆化而基本丧失变形能力,在一定程度上对材料的磁应用产生影响。脉冲电流加热快速退火,可在显著改善合金磁性的前提下,使条带保持足够的变形能力,是实现铁基非晶合金磁性改善与足够变形能力配合的有效途径之一。

关键词: 磁性, 脆化, 非晶态合金, 退火, 应力松弛

Abstract: The correlation between the stress relief and magnetism improvement during the annealing process, and the influence of annealing embrittlement on the magnetic application of Fe-based amorphous alloys are analyzed. After isochronal annealing, the saturation induction and maximum permeability of as-quenched amorphous Fe79B16Si5 alloy increase by 72 % and 22 times, respectively, concurrently with the reduction of coercive force and power loss by 86 % and 83 %, respectively. These changes are primarily due to the effective removal of the stress - induced magnetic anisotropy resulted from the complete relaxation of internal stresses during annealing. However, because of the ductile - brittle transition which occours well below the temperatures for magnetism improvement, amorphous alloy strips be-come very brittle after magnetism improvement annealing and cannot be deformed any more. As a result, this will obviously affect the application of Fe - based amorphous alloys: Annealing by pulse current heating can effectively improve the magnetic properties of as – quenched Fe - based amorphous alloys with no or few loss of ductility. So it is hopeful to become a practical method for obtaining optimum ductility and magnetic properties of amorphous Fe-based alloys.

Key words: Amorphous alloy, Embrittle ment, Magnetism Annealing, Stress relief

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