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Effect of Heat Treatment on Creep Properties and Microstructures of HAZ for 9 percent Cr Ferritic Steel

机译:热处理对9%Cr铁素体钢蠕变性能和微观结构的影响

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摘要

Type IV creep cracking in the heat affected zone (HAZ) of welded joint has been one of the serious problems in 9 to 12 percent Cr ferritic steels during long time service. We have already shown that the specimens heated to peak temperature close to Ac3 do not have clear lath martensitic microstructure and that the coarsening of precipitates, M_(23)C_6, in these specimens is observed after post weld heat treatment (PWHT). In this study, a coarse grained steel is produced by the higher temperature normalizing heat treatment. The average grain size of coarse grained steel was 250 mu m and that of the Ac_3 simulated HAZ specimens was 8 mu m, compared to 30 mu m and 6 mu m respectively for a normal grain size steel. The creep life, microstructural changes and distribution of precipitates of simulated HAZ specimens for coarse grained steel are investigated and compared with those for the normal grain size steel. The creep rupture time of the simulated HAZ specimens for coarse grained steel is found to be longer than that for the normal grain size steel, because the regions of large precipitates in the coarse grained steel, which are considered to have low creep resistance, are relatively smaller than those for normal grain size steel.
机译:焊接接头的热影响区(HAZ)中的IV型蠕变开裂是在长期服务期间9至12%CR铁素体钢中的严重问题之一。我们已经表明,加热到接近AC3的峰值温度的试样不具有透明的Lath马氏体微观结构,并且在焊接热处理后(PWHT)后观察到这些样品中的沉淀物M_(23)C_6的粗化。在该研究中,通过较高的温度标准化热处理产生粗粒钢。粗粒钢的平均晶粒尺寸为250μm,并且AC_3模拟HAZ样品的晶片为8μm,分别为正常晶粒尺寸钢的30μm和6μm。研究了粗粒钢模拟HAZ样品的蠕变寿命,微观结构变化和分布,并与正常晶粒尺寸钢相比。发现粗粒钢的模拟HAZ样品的蠕变破裂时间比正常晶粒尺寸钢更长,因为粗粒钢中的大沉淀区域被认为具有低蠕变性的抗蠕变性,相对小于正常晶粒尺寸钢的钢。

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