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首页> 外文期刊>ISIJ international >Size and Type of Inclusions in Fe–Cr–Co Heat–resistant Steel and Elevated-temperature Strength under the Effect of Electromagnetic Stirring
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Size and Type of Inclusions in Fe–Cr–Co Heat–resistant Steel and Elevated-temperature Strength under the Effect of Electromagnetic Stirring

机译:电磁搅拌作用下Fe–Cr–Co耐热钢中夹杂物的尺寸和类型及高温强度

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We fabricated the Fe-18Cr-2Ni-1Mo-0.2C-0.2Mn-0.1Si heat-resistant steels containing 3 to 12% Co by casting in the presence of a rotary electromagnetic stirring (EMS). The effect of EMS on the Fe–Cr–Co steels was evaluated by the size and type of inclusions and the examination of mechanical properties. The morphology and composition of inclusions were observed, and the formation mechanism of the inclusions was analyzed through thermodynamic calculation using Thermo-Calc. The results showed that there were mainly two types of inclusions generated in the solidification process, including the Al_(2)O_(3) corundum and the MnO. Cr_(2)O_(3) spinel. The application of EMS during solidification has shown a significant effect on the exclusion of large inclusions. Both the number density and the size of inclusions decreased under the effect of EMS. The mechanical properties at elevated temperatures were investigated considering the effect of cobalt addition and EMS. The strength of the steel increased with increasing cobalt content. At 800°C, an increase in cobalt from 3 to 12% resulted in a substantial strength increase concomitant with an increase in elongation rate. EMS reduced the ultimate tensile strength but enhanced the ductility of the steels. These effects were discussed relating to an early suppression of the δ –ferrite formation and the exclusion of large inclusions.
机译:我们通过在旋转电磁搅拌(EMS)的情况下铸造,制造了含钴3至12%的Fe-18Cr-2Ni-1Mo-0.2C-0.2Mn-0.1Si耐热钢。 EMS对Fe–Cr–Co钢的影响通过夹杂物的尺寸和类型以及机械性能的检查来评估。观察夹杂物的形态和组成,并通过Thermo-Calc进行热力学计算,分析了夹杂物的形成机理。结果表明,凝固过程中主要产生两种夹杂物,即Al_(2)O_(3)刚玉和MnO。 Cr_(2)O_(3)尖晶石。在固化过程中使用EMS已显示出对排除大夹杂物的显著作用。在EMS的影响下,夹杂物的数量密度和尺寸均降低。考虑到钴添加和EMS的影响,研究了高温下的机械性能。钢的强度随着钴含量的增加而增加。在800℃下,钴从3%增加到12%导致强度显着增加,同时伸长率增加。 EMS降低了极限拉伸强度,但增强了钢的延展性。讨论了这些效应与早期抑制δ-铁素体形成和排除大夹杂物有关。

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