Fe-30%Ni-%2.6Mo-X%Co Alaşımlarının Martensitik Faz Dönüşümünün ve Manyetik Özelliklerinin Araştırılması

Erdem Yaşar, Osman G. Armağan, T. Kirindi, Merve Sultan AKAY AĞIR
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Abstract

In this study, the microstructure of thermal effective martensitic phase transformation observed in the Fe-30wt.%Ni-2.6wt.%Mo-Xwt.%Co (X = 0.8, 1.8) alloy was investigated morphologically and crystallographically by using Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM). In SEM studies, it was observed that the morphology of the martensite phase changed from lath and lenticular structure to massive structure with the addition of Co to the alloy. In addition to this, nano martensite formation was also observed as another effect of Co addition (figure 2c, d). Properties of lenticular martensite, electron diffraction pattern of austenite and martensite structures were given by TEM studies. According to the Differential Scanning Calorimetry (DSC) analysis, it was determined that the martensitic transformation temperature (Ms) significantly increased with the increase of the Co amount in the alloys. Also, by using Mössbauer spectroscopy, it was shown that the amount of martensite increased with the increase of Co amount and the magnetic order of the alloy changed accordingly.
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Fe-30%Ni-%2.6Mo-X%Co Martinique相变的分析及报警器的数学性质
在本研究中,在Fe-30wt.%Ni-2.6wt.%Mo-Xwt中观察到热有效马氏体相变的显微组织。采用扫描电镜(SEM)和透射电镜(TEM)对%Co (X = 0.8, 1.8)合金进行了形貌和晶体学研究。通过扫描电镜观察到,随着Co的加入,合金的马氏体相由板条和透镜状组织转变为块状组织。此外,Co的另一个作用是纳米马氏体的形成(图2c, d)。通过TEM研究给出了透镜状马氏体的性质、奥氏体和马氏体结构的电子衍射图。差示扫描量热法(DSC)分析表明,随着Co含量的增加,合金的马氏体相变温度(Ms)显著升高。Mössbauer光谱分析表明,随着Co含量的增加,马氏体的数量增加,合金的磁序也随之改变。
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