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Niobium Carbo-Nitride Precipitation Behavior in a High Nitrogen 15Cr-15Ni Heat Resistant Austenitic Stainless Steel

机译:高氮15Cr-15Ni耐热奥氏体不锈钢中铌碳氮化物的析出行为

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摘要

A high nitrogen 15Cr-15Ni niobium-stabilized austenitic alloy has been produced and subjected to a special heat treatment consisting of 5 hours of solution treatment at 1270 °C followed by hot rolling, quenching and subsequent aging at temperatures of 700 °C to 800 °C. It was found that fine dispersion of nano-sized thermally stable primary Nb(C,N) precipitates had already formed in the as-cast condition. The particles were presented at all examined stages of the TMT process (as-homogenized, as-solution treated and as-aged conditions). Secondary precipitates Nb(C,N) were densely formed during subsequent aging; these precipitates had sizes of 4 nm to 5 nm. Both the primary and secondary Nb(C,N) particles showed excellent thermal stability within the temperature range of 700 °C to 800 °C. The creep properties of the studied alloy at 750 °C were superior when compared to those of commercial type 347 stainless steel.
机译:已生产出高氮含量的15Cr-15Ni铌稳定的奥氏体合金,并对其进行了特殊的热处理,包括在1270°C下进行5小时的固溶处理,然后进行热轧,淬火,然后在700°C至800°C的温度下进行时效C。发现在铸造状态下已经形成了纳米级热稳定的初级Nb(C,N)沉淀物的精细分散。在TMT过程的所有检查阶段(均质,固溶处理和老化的条件下)均会出现颗粒。在随后的时效过程中,致密地形成了二次沉淀物Nb(C,N)。这些沉淀物的尺寸为4nm至5nm。初级和次级Nb(C,N)颗粒在700°C至800°C的温度范围内均显示出出色的热稳定性。与商用347型不锈钢相比,所研究合金在750°C时的蠕变性能优异。

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