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Effect of Carbon on the Paramagnetic-Antiferromagnetic Transition and γ→εMartensitic Transformation of Fe-24Mn Alloys 被引量:2
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作者 xing lu, zuoxiang qin, yansheng zhang, xingyu wang and fengxian li (department of materials science & engineering, dalian railway institute, dalian 116028, china) bingzhe ding and zhuangqi hu (state key laboratory for rsa, institute of metal research, chi 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第3期297-301,共5页
The effect of C content (0.014-0.39 wt pct) on the paramagnetic-antiferromagnetic transition and γ→ε martensitic transformation of Fe-24Mn alloys has been investigated by the resistivity, dilation, tensile properti... The effect of C content (0.014-0.39 wt pct) on the paramagnetic-antiferromagnetic transition and γ→ε martensitic transformation of Fe-24Mn alloys has been investigated by the resistivity, dilation, tensile properties measurement and microstructure examination. The results have shown that C decreases T_N; increases the thermal expansion coefficients both above and below the T_N; increases the resistivity above the T_N and antiferromagnetic scattering resistivity below T_N. It strongly depresses the γ→ε martensitic transformation and reduces the M_s of Fe-24Mn alloys. Moreover, it increases the lattice parameter of austenite, enhances the tensile ductility, but almost does not affect the tensile strength. With increasing C content from 0.014 to 0.19 wt pct, the yield strength of Fe-24Mn alloy decreases obviously arising from the decreasing of preexisting ε martensite. but it increases from 0.19 to 0.39 wt pct C due to the solution hardening of C. 展开更多
关键词 MN Effect of Carbon on the Paramagnetic-Antiferromagnetic Transition and Martensitic Transformation of Fe-24Mn Alloys Fe
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