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Study of the effect of Mn and Cu in Fe–Mn–Al–C–Cu alloys by ICEMS and XRD

机译:ICEMS和XRD研究Mn和Cu在Fe–Mn–Al–C–Cu合金中的作用

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摘要

Experimental analysis of magnetic and structural properties of Fe–Mn–Al–C–Cu alloys with compositions Fe x Mn0.915 ? x Al0.075C0.01 (series A) and Fe x Mn0.912 ? x Al0.075C0.01Cu0.003 (series B), 0.500 ≤ x ≤ 0.800, in steps of 0.050 is presented and discussed. The analysis was performed by integral conversion electrons M?ssbauer spectrometry and X-ray diffraction at room temperature. The results suggest, for both series of alloys, that for the highest Mn content, samples exhibit an antiferromagnetic behavior, typical of the FCC or austenite FeMn phase rich in Mn; for those of low Mn content, the coexistence of paramagnetic austenite, typical of the FeMn alloy poor in Mn, a ferromagnetic BCC or ferrite phases can be observed, while for the lowest Mn content, only ferromagnetic (FM) phase tends to prevail. The FM phase is associated to the BCC FeMnAl as was corroborated by X-ray diffraction. The samples with the highest Mn content, the influence of Cu addition is to reduce the mean hyperfine field and to stabilize the antiferromagnetic behavior.
机译:组成为Fe x Mn0.915的Fe-Mn-Al-C-Cu合金的磁性和组织性能的实验分析x Al0.075 C0.01 (系列A)和Fe x Mn0.912?提出并讨论了x Al0.075 C0.01 Cu0.003 (系列B),0.500≤x≤0.800,步长为0.050。通过积分转换电子Msssbauer光谱法和室温下的X射线衍射进行分析。结果表明,对于这两种合金,对于最高的Mn含量,样品都表现出反铁磁行为,这是FCC或富含锰的奥氏体FeMn相的典型特征。对于低锰含量的那些,可以观察到顺磁性奥氏体的共存,通常是锰含量低的FeMn合金,铁磁性BCC或铁素体相,而对于最低锰含量,只有铁磁性(FM)相倾向于存在。 FM相与BCC FeMnAl相关,如X射线衍射所证实的那样。 Mn含量最高的样品,添加Cu的作用是减小平均超精细场并稳定反铁磁行为。

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