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Phase-field modeling of microstructure evolutions in magnetic materials

机译:磁性材料微观结构演变的相场建模

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摘要

Recently, the phase-field method has been extended and utilized across many fields of materials science. Since this method can incorporate, systematically, the effect of the coherency induced by lattice mismatch and the applied stress as well as the external electrical and magnetic fields, it has been applied to many material processes including solidification, solid-state phase transformations and various types of complex microstructure changes. In this paper, we focus on the recent phase-field simulations of real magnetic materials, and the simulation method for magnetic materials is explained comprehensively. Several applications of the phase-field method to clarifying the microstructure changes in magnetic materials, such as Ni2MnGa ferromagnetic shape memory alloy, FePt nanogranular thin film, Co–Sm–Cu rare-earth magnet, Fe–Cr–Co spinodal magnet, and Fe–C steel with external magnetic field, are demonstrated. Furthermore, the general concept of the effective strategy for controlling microstructure in magnetic materials is proposed.
机译:最近,相场方法已在材料科学的许多领域得到扩展和利用。由于该方法可以系统地合并由晶格失配和施加的应力以及外部电场和磁场引起的相干效应,因此已应用于许多材料工艺,包括凝固,固态相变和各种类型复杂的微观结构变化。在本文中,我们将重点放在最近的真实磁性材料的相场模拟上,并对磁性材料的模拟方法进行全面的解释。相场法在阐明磁性材料的微观结构变化中的几种应用,例如Ni2MnGa铁磁形状记忆合金,FePt纳米颗粒薄膜,Co-Sm-Cu稀土磁体,Fe-Cr-Co旋节线形磁体和Fe演示了带有外部磁场的–C钢。此外,提出了控制磁性材料微观结构的有效策略的一般概念。

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