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首页> 外文期刊>Materials Science and Engineering >Effect of precipitates on long-term creep deformation properties of P92 and PI 22 type advanced ferritic steels for USC power plants
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Effect of precipitates on long-term creep deformation properties of P92 and PI 22 type advanced ferritic steels for USC power plants

机译:析出物对USC电厂P92和PI 22型高级铁素体钢的长期蠕变变形特性的影响

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摘要

Long-term creep rupture strengths and the microstructural stability of ASME P92 and P122 pipes have been studied using creep testing at the temperatures from 550 to 700℃ and detailed scanning transmission electron microscopy. Creep rupture strength of P92 is found to be more stable than that of P122 at temperatures over 600℃, which is mainly due to the difference in their Cr content. P122 type model steel with reduced Cr content, 9%Cr, has been prepared to explore the effect of Cr on the stability of MX and formation of Z-phase during creep deformation. MX in 9%Cr steel is found to be stable even after prolonged exposure at 650℃, while Cr and Fe concentration to MX without marked coarsening has been observed in 10.5%Cr steel after aging for 10,000 h at 650℃. This seems to lead to the transition of MX carbonitride into the Z-phase after aging for 23,000 h, which requires ordering in a M_2N lattice to achieve a tetragonal Z-phase to be stable. Creep deformation behavior in the transient creep region of the steels is almost same up to about 7000 h, while in the acceleration creep region the creep rate of 10.5%Cr steel becomes much faster than that of 9%Cr steel, resulting in shorter rupture life. It is obvious that the creep rupture strength degradation starts prior to the formation of Z-phase in 10.5%Cr steel. It is thus concluded that Z-phase is not a necessary factor for degradation of creep rupture strength but the instability of the fine precipitates such as Cr_2(C, N) caused by the compositions change like Cr supply to MX carbonitride is more essential.
机译:通过在550到700℃的温度下进行蠕变测试和详细的扫描透射电子显微镜,研究了ASME P92和P122管的长期蠕变断裂强度和微观结构稳定性。发现在超过600℃的温度下,P92的蠕变断裂强度比P122更稳定,这主要是由于Cr含量不同所致。制备了Cr含量降低9%的P122型模型钢,以研究Cr对蠕变变形过程中MX稳定性和Z相形成的影响。即使在650℃下长时间暴露,在9%Cr钢中的MX仍是稳定的;而在650℃时效10,000 h后,在10.5%Cr钢中观察到Cr和Fe的浓度对MX没有明显的粗化。老化23,000小时后,似乎导致MX碳氮化物过渡到Z相,这要求在M_2N晶格中有序排列以实现稳定的四方Z相。在大约7000 h的时间里,钢的瞬态蠕变区域的蠕变变形行为几乎相同,而在加速蠕变区域,10.5%Cr钢的蠕变速率变得比9%Cr钢的蠕变速率快得多,从而导致断裂寿命缩短。 。显然,在10.5%Cr钢中Z形相形成之前,蠕变断裂强度开始降低。因此得出结论,Z相不是蠕变断裂强度降低的必要因素,但是由组成变化引起的细小析出物如Cr_2(C,N)的不稳定性更为重要,例如向MX碳氮化物供应Cr更为重要。

著录项

  • 来源
    《Materials Science and Engineering》 |2009年第2009期|162-168|共7页
  • 作者单位

    Corporate Research and Development Laboratories, Sumitomo Metal Industries, Ltd., 1-8 Fuso-cho, Amagasaki, Hyogo 660-0891, Japan;

    Corporate Research and Development Laboratories, Sumitomo Metal Industries, Ltd., 1-8 Fuso-cho, Amagasaki, Hyogo 660-0891, Japan;

    Corporate Research and Development Laboratories, Sumitomo Metal Industries, Ltd., 1-8 Fuso-cho, Amagasaki, Hyogo 660-0891, Japan;

    Tubular Products Technology Department, Sumitomo Metal Industries, Ltd., 7-8-17 Harumi, Chuo-ku, Tokyo 104-6711, Japan;

    Graduate School of Environmental Studies, Tohoku University, 6-6-02 Aobayama, Sendai 980-8579, Japan;

    Graduate School of Environmental Studies, Tohoku University, 6-6-02 Aobayama, Sendai 980-8579, Japan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    creep rupture strength; high cr ferritic steel; Z-phase ultra supercritical (USC) boiler;

    机译:蠕变断裂强度;高铬铁素体钢Z相超超临界(USC)锅炉;

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