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Effects of nitrogen on precipitation and tensile behaviors of 25Cr-20Ni austenitic stainless steels at elevated temperatures

机译:氮对25Cr-20Ni奥氏体不锈钢在高温下的析出和拉伸行为的影响

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摘要

To understand the effects of nitrogen on precipitation and tensile behaviors at elevated temperatures, 25Cr-20Ni austenitic stainless steels with different nitrogen contents (0.065 wt %, 0.13 wt % and 0.17 wt %) were tensioned from room temperature to 1000 degrees C. Results show that the elongation and area reduction change differently with temperature increasing from 800 degrees C to 1000 degrees C, which are caused by different fracture modes. The necking concentrates in a small zone in the tensile samples of 0.17 wt % N steel, while the necking deformation occurs in all gauge length in specimens of other two steels. The local necking in 0.17 wt % N steel is induced by the enhanced recrystallization softening effect during tensile deformation. As the dislocation recovery are retarded by more solute nitrogen atoms and nitrides in 0.17 wt % N steel, the dislocation density difference between deformed grains and recrystallized grains turns larger, which results in a higher recrystallization rate and enhanced softening effect in further deformation. Additionally, the content of M23C6 precipitates unexpectedly increases with the increasing nitrogen after tensile test at 800 degrees C. This is because the increasing nitrogen promotes the formation of NbCrN in higher nitrogen steels during solution heat treatment, instead of Nb(C, N) in lower nitrogen steels. The precipitation of NbCrN releases carbon into austenitic matrix, leading to the acceleration of M23C6 precipitation during tensile test at 800 degrees C.
机译:为了了解氮对高温下的析出和拉伸行为的影响,将不同氮含量(0.065 wt%,0.13 wt%和0.17 wt%)的25Cr-20Ni奥氏体不锈钢从室温拉伸到1000摄氏度。结果显示随温度从800摄氏度增加到1000摄氏度,伸长率和面积减小的变化是不同的,这是由不同的断裂方式引起的。颈缩集中在0.17 wt%N钢的拉伸试样中的一个小区域中,而其他两种钢的试样在所有标距长度上均出现颈缩变形。在拉伸变形过程中,增强的重结晶软化作用导致0.17 wt%N钢中出现局部缩颈。在0.17 wt%的N钢中,由于更多的固溶氮原子和氮化物阻碍了位错恢复,变形晶粒和再结晶晶粒之间的位错密度差变大,这导致更高的再结晶速率并增强了进一步变形时的软化效果。另外,在800摄氏度的拉伸试验后,M23C6的沉淀物含量随氮含量的增加而出乎意料地增加。这是因为增加的氮含量促进固溶热处理期间高氮钢中NbCrN的形成,而不是Nb(C,N)。低氮钢。 NbCrN的沉淀将碳释放到奥氏体基体中,导致在800摄氏度的拉伸试验过程中M23C6沉淀加速。

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  • 来源
    《Materials Science and Engineering》 |2019年第3期|93-100|共8页
  • 作者单位

    Chinese Acad Sci, Shenyang Natl Lab Mat Sci, Inst Met Res, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China|Univ Sci & Technol China, Sch Mat Sci & Engn, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China;

    Chinese Acad Sci, Shenyang Natl Lab Mat Sci, Inst Met Res, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China|Univ Sci & Technol China, Sch Mat Sci & Engn, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China;

    Chinese Acad Sci, Shenyang Natl Lab Mat Sci, Inst Met Res, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China|Univ Sci & Technol China, Sch Mat Sci & Engn, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China;

    Chinese Acad Sci, Shenyang Natl Lab Mat Sci, Inst Met Res, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China|Univ Sci & Technol China, Sch Mat Sci & Engn, 72 Wenhua Rd, Shenyang 110016, Liaoning, Peoples R China;

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  • 正文语种 eng
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  • 关键词

    Austenitic stainless steel; Nitrogen; High-temperature tensile property; Precipitate; Fracture mode;

    机译:奥氏体不锈钢;氮;高温拉伸性能;析出;断裂模式;

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