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Low Temperature Tempering of a Medium Carbon Steel in High Magnetic Field

机译:中碳钢在高磁场下的低温回火

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摘要

The effect of low temperature magnetic tempering on carbide precipitation in a medium carbon steel, 42CrMo, has been investigated. As-quenched steel specimens were tempered at 200℃ for 60 min without and with a 14-T magnetic field. Results show that under the magnetic field processing there forms the relatively high-temperature monoclinic χ-Fe_5C_2 carbide with a denser distribution and smaller sizes, as compared to the usual orthorhombic η-Fe_2C carbide obtained without the magnetic field. The impact of the external magnetic field refers to a change in the precipitation sequence of the transition carbides by effectively lowering the Gibbs free energy of the high magnetization phases. The denser distribution and smaller size of χ-Fe_5C_2 precipitates are attributed to the increased nucleation rate and the weaker diffusion capacity required for growth as the formation temperature is lower. This offers additional dispersion strengthening to compensate for the decrease in strength and hardness due to the loss of supersaturation of carbon atoms in the matrix and raises the toughness of the steel.
机译:研究了低温电磁回火对中碳钢42CrMo中碳化物析出的影响。淬火后的钢试样在没有和有14-T磁场的情况下在200℃下回火60分钟。结果表明,与没有磁场的常规正交各向异性η-Fe_2C碳化物相比,在磁场处理下形成了相对高温的单斜晶χ-Fe_5C_2碳化物,其分布更密且尺寸更小。外部磁场的影响是指通过有效降低高磁化相的吉布斯自由能来改变过渡碳化物的析出顺序。 χ-Fe_5C_2析出物的致密分布和较小尺寸归因于成核速率的增加和随着形成温度的降低而生长所需的较弱扩散能力。这提供了额外的分散强化,以补偿由于基体中碳原子的过饱和度损失而导致的强度和硬度降低,并提高了钢的韧性。

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