基于Fe-Cr-Co体系的粉末合金滞回性能控制

M. A. Marieva, A. Shatsov
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引用次数: 0

摘要

基于Fe-Cr-Co体系的磁滞合金具有很高的可制造性、高水平和温度稳定性,可提供所需的磁滞磁体性能,包括剩余磁感应强度、矫顽力和环方比,具有科学和实用价值。研究了利用再时效控制和稳定Fe-Cr-Co脊合金磁性能的方法。对22Kh15K4MS硬质磁粉合金进行了淬火和多级时效研究。在600 MPa的压力下进行冷压,然后在真空中烧结得到坯料。在接触熔融形成的液相存在的情况下,在α相烧结得到的样品孔隙率高达1%。铬钴分布的浓度不均一性为0.06 ~ 0.08。用电镜测定了合金的磁性结构参数。建立了时效过程中磁性结构形成动力学与磁性能水平的关系。时效后,22Kh15K4MS合金的细化组织表现为α2相基体中拉长的α1相截面。第一阶段时效后α1相的平均粒径分别为»124 nm和»44 nm,最终时效后α1相的平均粒径保持不变。结果表明,不需要反复淬火,可以通过时效来控制磁性能。在时效过程中,磁性相颗粒的尺寸和形貌发生了微小的变化。测定了老化循环次数对磁性能随时间稳定性的影响。
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Control of hysteretic properties in powder alloys based on the Fe–Cr–Co system
Hysteresis alloys based on the Fe–Cr–Co system are of scientific and practical interest, primarily due to their high manufacturability, high level and temperature stability of magnetic properties, which provide the required hysteresis magnet performance including residual magnetic induction, coercive force, and loop squareness ratio. The research was aimed to control and stabilize the Fe–Cr–Co ridge alloy magnetic properties using reageing. The 22Kh15K4MS hard magnetic powder alloy was investigated after quenching and multistage aging. Billets were obtained by cold pressing at a pressure of 600 MPa and subsequent sintering in vacuum. The samples obtained by sintering in the α phase in the presence of the liquid phase formed during contact melting had a porosity of up to 1 %. The concentration heterogeneity of chromium and cobalt distribution was 0.06–0.08. The alloy magnetic structure parameters were determined by electron microscopy. The relationship between the magnetic structure formation kinetics during aging and the level of magnetic properties was established. After aging, the fine structure of the 22Kh15K4MS alloy was represented by elongated α1 phase sections in the α2 phase matrix. The average particle sizes of the α1 phase were »124 nm in length and »44 nm in width after the first stage of aging, and they remained the same after final aging. It was shown that it is possible to control magnetic properties by reaging without repeated quenching. A slight change in the size and morphology of magnetic phase particles was observed during aging. The influence of the number of reaging cycles on the stability of magnetic properties over time was determined.
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