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Study on the Formation and Control of TiN Inclusion in Mushy Zone for High Ti Microalloyed Steel

机译:高TI微合金钢糊状区锡夹层形成与控制研究

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The coarse TiN inclusions can act as potential fracture initiation sites and deteriorate the impact toughness of steels. The experimental observation results indicated that CaS and TiN inclusions precipitated in solidification mushy zone. Meanwhile, it was found that CaS inclusions could act effectively a heterogeneous nucleation substrate for the precipitation of TiN inclusions, and the size of TiN inclusions with CaS core was obviously larger than those TiN inclusions without CaS core. Additionally, the thermodynamic calculation result showed that TiN inclusions began to precipitate at the end of solidification from the dendrites front; moreover, the preexisted CaS inclusions promoted the formation of TiN inclusions. Decreasing sulfur and nitrogen content could significantly reduce precipitation temperature and growth time of CaS and TiN inclusions in mushy zone. Furthermore, TiN inclusions could be prevented from precipitation at the surface of CaS inclusions when the S content of molten steel was below 0.0008 wt%.
机译:粗锡夹杂物可以充当潜在的骨折起始位点并使钢的冲击韧性劣化。实验观察结果表明CAS和锡夹杂物在凝固糊状区中沉淀。同时,发现CAS夹杂物可以有效地起作用的异质成核基质,用于沉淀锡夹杂物,并且具有CAS芯的锡夹的尺寸明显大于那些没有Cas芯的锡夹层。另外,热力学计算结果表明,锡夹层开始在树枝状前方凝固结束时沉淀;此外,预先存在的Cas夹杂物促进了锡夹杂物的形成。硫和氮含量降低可显着降低CAS和锡夹在糊状区中的沉淀温度和生长时间。此外,当钢水的S含量低于0.0008wt%时,可以防止Cas夹杂物表面的沉淀。

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