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Control of the precipitation of TiN inclusions in gear steels

机译:控制齿轮钢中TiN夹杂物的析出

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摘要

In the 20CrMnTi steel production process, the nitrogen content increased by 19 × 10~(-6) and 29 × 10~(-6), respectively, during ladle furnace (LF) refining and during the casting process from ladle to tundish. The protective casting is the key to decrease the N content. The results of thermodynamic calculations and a growth kinetics investigation show that TiN formation occurs only when the solidification fraction is greater than 0.533 under the controlled conditions used in this study for the manufacture of 20CrMnTi steel; the radius of TiN particles decreases as the Ti and N contents decrease and as the cooling rate increases. Furthermore, the theory of austenite grains controlled by second-phase particles was analyzed. The elemental analysis results showed that the Ti content was controlled at 0.04wt%-0.06wt% and the N content decreased to 0.005wt%, which satisfy the requirements for grain refinement but can also effectively prevent the precipitation of TiN inclusions in 20CrMnTi steel.
机译:在20CrMnTi钢生产过程中,在钢包炉精炼以及从钢包到中间包的铸造过程中,氮含量分别增加了19×10〜(-6)和29×10〜(-6)。保护性铸件是降低氮含量的关键。热力学计算和生长动力学研究的结果表明,只有在本研究中用于制造20CrMnTi钢的控制条件下,当凝固分数大于0.533时,才会发生TiN形成。 TiN颗粒的半径随Ti和N含量的减少以及冷却速率的增加而减小。此外,分析了由第二相粒子控制的奥氏体晶粒的理论。元素分析结果表明,将Ti含量控制在0.04wt%-0.06wt%,将N含量降低至0.005wt%,既满足了晶粒细化的要求,又能有效防止TiN夹杂物在20CrMnTi钢中析出。

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