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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >The formation of a metastable peritectic phase in Nd-Fe-B alloys investigated by in situ X-ray diffraction during solidification
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The formation of a metastable peritectic phase in Nd-Fe-B alloys investigated by in situ X-ray diffraction during solidification

机译:在凝固过程中通过原位X射线衍射研究了Nd-Fe-B合金中亚稳态包晶相的形成

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The electromagnetic levitation technique was combined with the diagnostic means at beamline ID 15A of the European Synchrotron Radiation Facility (ESRF) in Grenoble to study in situ phase selection phenomena during solidification of undercooled Nd-Fe-B alloy melts. By energy dispersive diffraction experiments complete diffraction spectra were recorded within a short-time interval of some seconds thus enabling the identification of metastable phases that exhibit a limited lifetime. Nd-Fe-B alloys are used for the development of advanced permanent magnets, which are based on the hard magnetic Nd_2Fe_(14)B_1-phase (φ-phase). A metastable phase is formed peritectically from the pro-peritectic γ-Fe-phase below a critical temperature while the stable peritectic φ-phase is formed in a subsequent step. The metastable phase is identified as a ternary extension of the rhombohedral Nd_2Fe_(17)-phase being stable in binary Nd-Fe alloys. The same Nd_2Fe_(17)-type phase crystallizes primarily in the deeply undercooled melt. The critical undercooling for the primary crystallization of the metastable phase was investigated for different alloy compositions.
机译:电磁悬浮技术与格勒诺布尔欧洲同步辐射设施(ESRF)的光束线ID 15A处的诊断手段相结合,以研究过冷Nd-Fe-B合金熔体凝固过程中的原位相选择现象。通过能量色散衍射实验,可以在几秒钟的短时间内记录完整的衍射光谱,从而可以鉴定出寿命有限的亚稳相。 Nd-Fe-B合金用于开发基于永磁Nd_2Fe_(14)B_1相(φ相)的先进永磁体。在临界温度以下,由包晶前的γ-Fe相蠕变形成亚稳相,而在随后的步骤中形成稳定的包晶φ相。亚稳态相被确定为在二元Nd-Fe合金中稳定的菱形Nd_2Fe_(17)相的三元延伸。相同的Nd_2Fe_(17)型相主要在深度过冷的熔体中结晶。对于不同的合金成分,研究了亚稳相初晶的临界过冷。

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