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Creep Property of Boron Added 9Cr Heat Resistant Steels after Welding

机译:硼添加9Cr耐热钢的焊接后蠕变性能

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Although welding results in premature failure by type IV fracture under high temperature creep conditions, the alloy design of light elements such as boron addition and nitrogen reduction enhances the creep lifetime of 9Cr heat resistant steel. In particular, the simulated heat affected zone (SHAZ) sample of new 9Cr steel (called TA steel) shows about 10 times longer creep lifetime than that of the standard Gr. 91 steel. The welded TA steel is thus expected to exhibit good creep properties because its SHAZ sample has coarser grains and suppresses type IV fracture. The preservation of base metal’s microstructure after welding results from the precipitate morphology, such as high grain boundary coverage by precipitates and low amount of MX being nucleation sites of ferrite grains during the a-g phase transformation. In addition, the increase of stability of M_(23)C_(6) affects high pinning pressure toward grain boundary migration upon rapid heating during welding. First-principles calculations confirm the increased stability when boron is absorbed by M_(23)C_(6). Moreover, the calculations reveals that boron decreases the coherency between matrix and M_(23)C_(6), suppressing grain coarsening during creep tests in TA steel. It is concluded that the increased microstructural stability during welding and long high temperature exposure generates the elongated creep lifetime in welded TA steel including about 0.01 wt% boron and less than 0.01 wt% nitrogen.
机译:尽管在高温蠕变条件下焊接会因IV型断裂而导致过早失效,但轻元素的合金设计(如硼添加和氮还原)可以提高9Cr耐热钢的蠕变寿命。特别是,新型9Cr钢(称为TA钢)的模拟热影响区(SHAZ)样品的蠕变寿命比标准Gr的蠕变寿命长约10倍。 91钢。因此,期望焊接的TA钢表现出良好的蠕变性能,因为它的SHAZ样品具有较粗的晶粒并抑制了IV型断裂。焊接后贱金属的显微组织的保持是由析出物形态引起的,例如,析出物的晶界覆盖率高,a-g相变过程中少量的MX是铁素体晶粒的成核位点。另外,M_(23)C_(6)的稳定性的增加影响在焊接期间快速加热时朝向晶界迁移的高钉扎压力。第一性原理计算确认了硼被M_(23)C_(6)吸收时稳定性增加。此外,计算表明,硼降低了TA与M_(23)C_(6)之间的相干性,从而抑制了蠕变试验中晶粒的粗化。结论是,在焊接期间增加的微结构稳定性和长时间的高温暴露在包含约0.01 wt%的硼和少于0.01 wt%的氮的焊接TA钢中产生了延长的蠕变寿命。

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