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INFLUENCE OF Ge ON THE ANTIFERROMAGNETIC TRANSITION AND γ → ε MARTENSITIC TRANSFORMATION OF Fe-24Mn ALLOYS

B. Zhang

金属学报(英文版)

The aims of the work were to study the effect of Ge (0-6wt. %) on the paramagnetic-antiferromagnetic transition and martensitic transformation of Fe-Mn alloy using the susceptibility, microstructure examination, X-ray diffraction (XRD) and lattice parameter measurement. Ge lowers the Neel temperature, TN, and enhances the mag-netic susceptibility X, changing the Pauli paramagnetism above TN to paramagnetism state obeying the Curie Weiss law, which is essentially similar to that of γ-Fe-Mn alloys containing Al or Si; Ge depresses γ → ε martensitic transformation, which attribute to Ge increasing the stacking fault energy; Moreover, Ge increases the lat-tice parameter of 7 phase, and low content Ge increases the lattice parameter of γphase more than that of high Ge content. Comparing Ge(4s2 4p2 ) with Si(3s2 3p2 ) and Al(3s2 3p1), which have the same outer-shell of electron structures, we found that their effects on the martensitic transformation of Fe-Mn alloy are completely different. The result suggests the outer-shell of electron is not the main factor of governing the Ms temperature of Fe-Mn alloy although it is essential in the alloy's antiferromagnetic transition. The relation among the Ms temperature, stacking fault energy and lattice parameter of austenite, has been discussed in brief.

关键词: antiferromagnetic transition , null , null

Fe-Mn-Si合金在Néel温度以下的γ→ε相变

马如璋 , 赵钟涛 , 刘涛

金属功能材料 doi:10.3969/j.issn.1005-8192.2000.06.004

用电阻法、磁化率和X-光衍射等方法研究了Fe-30Mn-6Si形状记忆合金在Néel温度以下的γ→ε相变,与以前工作不同,本文实验结果显示,在某些Fe-Mn和Fe-Mn-Si合金中磁转变并不阻止ε马氏体相在Néel温度以下的生成。

关键词: Néel温度 , 反铁磁转变 , 马氏体相变 , Fe-Mn-Si , 形状记忆合金

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