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Effect of Surface Oxidation on Decarburization of a Fe-3%Si Steel during Annealing

机译:表面氧化对Fe-3%Si钢退火过程中脱碳的影响

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The main purpose of decarburization annealing is to reduce the mass fraction of carbon in Fe-3%Si steels to avoid magnetic aging in silicon steels. Decarburization annealing experiments are carried out at different annealing temperatures, P_(H2O)/P_(H2) and times. The morphological evolution of oxidized layer on steel surface, the changes of carbon and oxygen concentrations in a Fe-3% Si steel, and the influence of the oxidation of alloying elements on the decarburization are analyzed. Results show that decarburization rate of the tested silicon steel is the highest when annealing temperature is 1103 K and P_(H2O)/P_(H2) is 0.374. When P_(H2O)/P_(H2) and annealing temperature are lower than that of optimum annealing condition, increasing annealing temperature or P_(H2O)/P_(H2) result in the increase of the convective mass transfer coefficient between steel and atmosphere, promoting the mass transfer and intensifying decarburization reaction. On the other hand, the amount of oxide particles also increases with further increasing P_(H2O)/P_(H2) and annealing temperature, resulting in the hindrance of the diffusion of carbon atoms in the oxidized layer and slowdown of decarburization.
机译:脱碳退火的主要目的是减少Fe-3%Si钢中碳的质量分数,从而避免硅钢中的磁时效。在不同的退火温度,P_(H2O)/ P_(H2)和时间下进行脱碳退火实验。分析了钢表面氧化层的形貌演变,Fe-3%Si钢中碳和氧浓度的变化以及合金元素的氧化对脱碳的影响。结果表明,当退火温度为1103 K,P_(H2O)/ P_(H2)为0.374时,硅钢的脱碳率最高。当P_(H2O)/ P_(H2)和退火温度低于最佳退火条件时,增加退火温度或P_(H2O)/ P_(H2)会导致钢与大气之间的对流传质系数增加,促进传质,强化脱碳反应。另一方面,随着P_(H 2 O)/ P_(H 2)和退火温度的进一步升高,氧化物颗粒的量也增加,从而导致碳原子在氧化层中扩散的阻碍和脱碳的减慢。

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