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Effect of water pressure and soaking time on the selective oxidation of DP980 advanced high strength steel

机译:水压和保温时间对DP980高级高强度钢选择性氧化的影响

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Due to the limited heating power in non-oxidation furnace of continuous strip processing facilities of heating stage, selective oxidation with higher oxygen pressure is practically inevitable, which will greatly influence the quality of coating during immersion into the zinc bath. In this paper, the oxidation behaviors of DP980 advanced high strength steel are studied during annealing in a pure H-2 atmosphere with controlled water pressure ranging from 0.033 to 0.094 bar (P-H2O/P-H2 ) and soaking time from 30 s to 2 h. The oxidation proceeds as a combination of external formation of Mn oxides and internal formation of Mn2SiO4, MnSiO3 and SiO2 from the subsurface of the steel into the matrix. As the water pressure increases from 0.033 to 0.094 bar, it can be seen that the amount of oxide particles and coverage on the surface of the steel seems to decrease initially and increase afterwards. The sequence of oxides determined by oxygen partial pressure was calculated and illustrated using thermodynamics with alloys activity. Oxide growth mechanism during annealing and the effect of water pressure on the amount of oxide particles were also discussed. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于加热阶段的连续带材加工设备的非氧化炉中有限的加热功率,实际上不可避免地需要较高氧气压力的选择性氧化,这将极大地影响浸入锌浴中的涂层质量。本文研究了DP980高级高强度钢在纯H-2气氛中退火过程中的氧化行为,该纯H-2气氛的水压范围为0.033至0.094 bar(P-H2O / P-H2),均热时间为30 s至30 s。 2小时氧化是从锰的表面到基体的结合,是外部形成的Mn氧化物和内部形成的Mn2SiO4,MnSiO3和SiO2。当水压从0.033 bar增加到0.094 bar时,可以看出,氧化物颗粒的数量和在钢表面的覆盖率似乎开始减少,之后增加。计算了由氧分压确定的氧化物顺序,并使用具有合金活性的热力学进行了说明。还讨论了退火过程中氧化物的生长机理以及水压对氧化物颗粒量的影响。 (C)2018 Elsevier B.V.保留所有权利。

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