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Improving the high-temperature creep strength of 15Cr ferritic creep-resistant steels at temperatures of 923-1023 K

机译:在923-1023 K的温度下提高15Cr铁素体抗蠕变钢的高温蠕变强度

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摘要

The precipitation strengthening of creep-resistant 15Cr ferritic steels at temperatures of 923-1023 K was improved by nickel addition. The addition of nickel, an austenite-stabilizing element, enhanced the formation of martensitic grains in the ferritic grain boundaries and changed the precipitation behavior during creep at elevated temperatures. The precipitates produced in the creep-ruptured 15Cr steels were intermetallic compounds (Laves phase and /-phase), carbide (Cr_(23)C_6), and Z phase (Cr(V,Nb)N). An increase in the amounts of intermetallic compounds and the preferential precipitation of Cr_(23)C_6 carbide on the grain boundaries between the ferritic and martensitic grains were accelerated by the nickel addition. The 15Cr steel after 10,000 h at 973 and 1023 K demonstrated approximately double the creep rupture strength of 9Cr steel (ASME Grade T92) with a tempered martensitic microstructure. At temperatures of up to 1023 K, the 15Cr steel had over 10 times the creep rupture lifetime of T92 steel, primarily because of increased precipitation of intermetallic compounds and Cr_(23)C_6 carbide enhanced by nickel addition.
机译:镍的添加改善了抗蠕变15Cr铁素体钢在923-1023 K温度下的析出强化。镍(一种奥氏体稳定元素)的添加增强了铁素体晶界中马氏体晶粒的形成,并改变了蠕变在高温下的析出行为。在蠕变断裂的15Cr钢中产生的沉淀物是金属间化合物(Laves相和I相),碳化物(Cr_(23)C_6)和Z相(Cr(V,Nb)N)。通过添加镍,促进了金属间化合物的量增加和铁素体与马氏体晶粒之间的晶界上的Cr_(23)C_6碳化物优先析出。 15Cr钢在973和1023 K下经过10,000小时后,表现出具有回火马氏体显微组织的9Cr钢(ASME T92级)的蠕变断裂强度大约是其两倍。在高达1023 K的温度下,15Cr钢的蠕变断裂寿命是T92钢的10倍以上,这主要是因为金属间化合物的沉淀增加以及通过添加镍增强的Cr_(23)C_6碳化物。

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