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A Comparative Study on the Activation Energy for Hot Deformation of 5CrNiMoV and S34MnV Steel

机译:5crnimov和S34mnV钢热变形激活能量的比较研究

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Background: The value of the activation energy is dependent on deformation conditions and sensitive to the difference in the alloying element. The research on the evolution of the activation energy with strain and alloying elements plays an important role in analyzing the mechanism of hot deformation. Objective: The purpose was to clarify the activation energy evolution with strain, to analyze the strengthening or softening mechanism of each element, and acquire an empirical equation for medium carbon steels to quantitatively describe the effect of each element on activation energy. Methods: Hot compression tests of the two medium carbon steel were conducted. The value of activation energy at different strain was obtained by fitting the experiment results. Through the analysis of medium carbon steels with different compositions in published papers, the empirical relationship between thermal activation energy and chemical composition can be fitted. Results: It was found that the activation energy showed significant dependence on the strain and chemical composition. The activation energy's evolution with strain was revealed. An empirical expression for medium carbon steels was proposed to characterize the influence of the chemical composition on the activation energy. It was found that the microalloying elements Nb, Ti, V and Mo, as the main solution strengthener and precipitation strengthener, have a positive effect on the activation energy. Conclusion: The evolution of the activation energy with strain was revealed, and the corresponding hot deformation mechanism was analyzed through the activation energy. An empirical expression was acquired to characterize the influence of the chemical composition on the activation energy for medium carbon steels, which would be used for the research on new materials.
机译:背景:激活能量的值取决于变形条件并对合金元素的差异敏感。对菌株和合金元素的激活能量的演化研究在分析热变形机制方面起着重要作用。目的:目的是阐明菌株的激活能量进化,分析每个元素的强化或软化机理,并获取中碳钢的经验方程,以定量描述各元素对激活能量的影响。方法:进行两种中碳钢的热压缩试验。通过拟合实验结果获得不同菌株的激活能量的值。通过在公布纸中具有不同组成的中碳钢的媒体碳钢,可以安装热激活能量和化学成分之间的经验关系。结果:发现激活能量显示出对菌株和化学成分的显着依赖性。揭示了活化能量的菌株的进化。提出了中碳钢的经验表达,以表征化学成分对活性能量的影响。发现微合金元素Nb,Ti,V和Mo,作为主要溶液加强剂和沉淀增强器,对活化能量具有积极影响。结论:揭示了菌株的活化能量的演化,通过活化能分析了相应的热变形机制。获得了经验表达,以表征化学成分对中碳钢活化能量的影响,用于研究新材料的研究。

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