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Microstructure evolution in HAZ and suppression of Type IV fracture in advanced ferritic power plant steels

机译:高级铁素体发电厂钢中热影响区的组织演变和IV型断裂的抑制

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The effect of boron and nitrogen on the microstructure evolution in heat affected zone (HAZ) of 9Cr steel during simulated heating and on the Type IV fracture in welded joints has been investigated at 650℃. Gr.92 exhibits a significant decrease in time to rupture after thermal cycle to a peak temperature near A_(C3), while the creep life of Gr.92N, subjected to only normalizing but no tempering, and 9Cr-boron steel is substantially the same as that of the base metals. In Gr.92 after A_(C3) thermal cycle, very few precipitates are formed along PAGBs in the fine-grained microstructure. In the P92N and 9Cr-boron steel after A_(C3) heat cycle, on the other hand, not only PAGBs but also lath and block boundaries are covered by M_(23)C_6 carbides in the coarse-grained microstructure. It is concluded that the degradation in creep life in Gr.92 after the A_(C3) thermal cycle is not caused by grain refinement but that the reduction of boundary and sub-boundary hardening is the most important. Soluble boron is essential for the change in α/γ transformation behavior during heating and also for the suppression of Type IV fracture in welded joints. Newly alloy-designed 9Cr steel with 160 ppm boron and 85 ppm nitrogen exhibits much higher creep rupture strength of base metal than P92 and also no Type IV fracture in welded joints at 650℃.
机译:在650℃下研究了硼和氮对模拟加热过程中9Cr钢热影响区(HAZ)的组织演变以及对焊接接头IV型断裂的影响。 Gr.92在热循环后达到A_(C3)的峰值温度后的破裂时间显着减少,而Gr.92N的蠕变寿命仅经过正火处理而没有回火,而9Cr硼钢基本相同和贱金属一样在A_(C3)热循环后的Gr.92中,沿细颗粒微观结构中的PAGB形成的沉淀很少。另一方面,在A_(C3)热循环后的P92N和9Cr-硼钢中,不仅PAGBs,而且板条和块边界都被粗晶粒组织中的M_(23)C_6碳化物覆盖。得出的结论是,A_(C3)热循环后Gr.92中蠕变寿命的降低不是由晶粒细化引起的,而减少边界和亚边界硬化是最重要的。可溶性硼对于加热过程中α/γ转变行为的变化以及抑制焊接接头的IV型断裂至关重要。合金设计的9Cr钢,含160 ppm的硼和85 ppm的氮,其母材的蠕变断裂强度比P92高得多,并且在650℃时焊接接头没有IV型断裂。

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