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氮和氧含量對HCM2S鋼組織和性能的影響

Influence of nitrogen and oxygen contents on the microstructure and performance of HCM2S steel

  • 摘要: 通過對4爐經過正火+回火熱處理的HCM2S鋼管進行拉伸試驗,結合微觀組織觀察和能譜分析,研究了氮和氧含量對HCM2S鋼組織和性能的影響.結果表明:當HCM2S鋼中氮的質量分數大于71×10-6時會和硼元素反應生成BN夾雜物,從而使鋼中"有效硼"量減少,降低鋼的淬透性,最終影響組織和性能.氮含量不高于71×10-6時,氧的質量分數在14×10-6~49×10-6內變化不會對HCM2S鋼組織和性能造成影響.通過在鋼中加入少量Ti元素,即使氮含量較高,Ti也可以和氮發生反應生成氮化鈦,從而獲得全貝氏體組織和優異的力學性能.

     

    Abstract: The influence of nitrogen and oxygen contents on the microstructure and performance of HCM2S steel was studied by the room temperature tensile test of 4-furnace HCM2S steel tubes after being normalized and tempered, microstructure observation, and energy dispersive spectrum analysis. The results show that when the mass fraction of nitrogen is larger than 71 × 10-6, the depletion of useful boron and the reduction of harden ability will take place, which would affect the microstructure and performance of the steel. The fluctuation of the mass fraction of oxygen in the range of 16 × 10-6 to 49 × 10-6 has no influence on the microstructure and performance of HCM2S steel, when the nitrogen content is no more than 71 × 10-6. Addition of a little titanium will cause the reaction with nitrogen, save the content of useful boron, and obtain the bainite structure and excellent mechanical properties even with higher nitrogen content.

     

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