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Investigation of the precipitation kinetics and microstructure evolution of martensitic AISI 4140 steel during tempering with high heating rates

机译:高加热速率回火过程中马氏体AISI 4140钢的沉淀动力学和微观结构演化研究

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During modern surface heat treatments of steels such as laser or induction hardening and tempering, heating rates up to 5000 degrees C/s or even more can occur in the material. These high heating rates affect the development of the microstructure which in turn affects the material properties. This study presents the results of the investigation of the tempering process of martensitically hardened AISI 4140 at different heating rates up to 1200 K/s. The kinetics of the occurring precipitations were modeled using a modified JMAK equation. The influence on the final microstructure after tempering with different heating rates is investigated using SEM images. The hardness of the different samples was measured in order to show the influence of the heating rate on the mechanical properties. Finally, a comparison to conventional tempering is given.
机译:在诸如激光或感应硬化和回火的钢的现代表面热处理期间,在材料中可以发生高达5000度C / S或甚至更多的加热速率。 这些高加热速率影响了微观结构的发展,这反过来影响了材料特性。 本研究提出了在不同加热率高达1200 k / s的不同加热速率下对马氏体硬化AISI 4140的回火过程进行调查的结果。 使用改进的jmak方程进行建模发生沉淀的动力学。 利用SEM图像研究了用不同加热速率回火后对最终微观结构的影响。 测量不同样品的硬度以显示加热速率对机械性能的影响。 最后,给出与传统回火的比较。

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