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Effects of Solution Temperature on Microstructure and Properties of Fe-Mn-Al-C Ferrite-Based Steel

机译:溶液温度对Fe-Mn-Ⅰ型铁氧体基钢组织和性能的影响

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The effects of solution temperature of 700-950°C on microstructure and properties of Fe-8Mn-6Al-0.2C ferrite-based steel were investigated. Optical microscopy (OM), scanning electron microscopy (SEM), energy dispersive spectrometer (EDS) and X-ray diffraction (XRD) were used to study the morphology and composition of microstructure. The tensile test at room temperature was used to detect mechanical properties. The results showed that the as-hot-rolled steel exhibited a complex microstructure, consisting of banded ferrite, martensite and small amount of retained austenite. With the increase of solution temperature, δ-ferrite solidified from the liquid phase and existed during subsequent heat treatment at all the temperatures, while the other phases varied from M_5C_2, α-ferrite, austenite and martensite. At 900°C, dual phase microstructure with ferrite and island of austenite was obtained. With increasing solution temperature, the ultimate tensile strength (UTS) decreased at first and then increased after reaching the minimum at 850°C, while the total elongation (TE) increased firstly and declined after the peak value of 44.5% at 850°C. Therefore, the as-hot-rolled experimental steel heat treated at 900°C had an excellent combination of tensile strength and elongation, with UTS of 846.4 MPa, TE of 32%, and UTS × TE of 27.1 GPa%. The remarkable mechanical properties, both strength and elongation, were attributed to the relative fraction and stability of austenite. And the partition of elements, especially for Mn, had great effect on the austenite stability.
机译:研究了700-950℃溶液温度对Fe-8MN-6A-0.2C铁氧体基钢的微观结构和性能的影响。光学显微镜(OM),扫描电子显微镜(SEM),能量分散谱仪(EDS)和X射线衍射(XRD)用于研究微观结构的形态和组成。室温下的拉伸试验用于检测机械性能。结果表明,异热轧钢显示出复杂的微观结构,由带状铁氧体,马氏体和少量保留的奥氏体组成。随着溶液温度的增加,δ-铁素体从液相凝固,并在所有温度下在随后的热处理期间存在,而其他相位从M_5C_2,α-铁素体,奥氏体和马氏体变化。在900℃下,获得了具有铁素体和奥氏体岛的双相微观结构。随着溶液温度的增加,最终抗拉强度(UTS)首先降低,然后在达到850℃的最小值后增加,而总伸长率(TE)首先增加并在850℃下达到44.5%后下降。因此,在900℃下处理的类似轧制实验钢热量具有优异的拉伸强度和伸长率的组合,UTS为846.4MPa,TE为32%,UTS×TE为27.1GPa%。显着的机械性能,强度和伸长率,归因于奥氏体的相对分数和稳定性。并且元素的分区,特别适用于Mn,对奥氏体稳定性有很大影响。

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