首页> 外文会议>EPRI s International Conference on Advances in Materials Technology for Fossil Power Plants;International 123HiMAT Conference on High-Temperature Materials >MICROSTRUCTURE CONTROL USING THE FORMATION OF LAVES PHASE THROUGH INTERPHASE PRECIPITATION IN FERRITIC HEAT RESISTANT STEELS
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MICROSTRUCTURE CONTROL USING THE FORMATION OF LAVES PHASE THROUGH INTERPHASE PRECIPITATION IN FERRITIC HEAT RESISTANT STEELS

机译:通过间间沉淀在铁素体耐热钢中的疏浚阶段形成的微观结构控制

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The formation of periodically arrayed rows of very fine Fe_2Hf Laves phase particles was recently found in 9 wt.% chromium ferritic matrix through interphase precipitation along a reaction path of δ-ferrite → γ-austenite + Fe_2Hf with a subsequent phase transformation of the γ phase into the a-ferrite phase. One of the problems on the formation of the fine Laves phase dispersion is a poor heat treatability; the interphase precipitation (δ-Fe→γ-Fe+Fe2Hf) is competitive with the precipitation of Laves phase from the δ phase in the eutectoid-type reaction pathway (δ→δ+Fe_2Hf). In the present work, the effect of supersaturation on the precipitation of Laves phase from δ phase (δ→δ+Fe_2Hf) and the δ→γ transformation in the reaction pathway was investigated by changing the Hf and Cr contents. The results obtained suggest that it is effective to have a high supersaturation for the precipitation of Laves phase and an adequately high supersaturation for the δ→γ transformation at the same time in order to widen the window of the interphase precipitation.
机译:最近在9重量%的γ-奥氏体+ Fe_2HF的反应路径中发现周期性Fe_2HF Laves相位颗粒的周期性的Fe_2HF Laves相颗粒的形成。进入一个铁氧体阶段。形成细疏水液相色散形成的问题之一是热处理性差;间环沉淀(δ-Fe→γ-Fe + Fe 2HF)与从共析型反应途径的δ相沉淀的Laves相的沉淀(δ→δ+ Fe_2HF)。在本作工作中,通过改变HF和Cr含量,研究了来自Δ相(δ→δ+ Fe_2HF)和反应途径中Δδ→γ变换的抗灌注液沉淀的影响。得到的结果表明,对于瓦尔斯阶段的沉淀和δ→γ变换的沉淀具有高过饱和性,同时为了扩大差异沉淀的窗口,是有效的。

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