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The effect of time and temperature variations during isothermal annealing on the mechanical properties of high carbon bainitic steel

机译:等温退火过程中的时间和温度变化对高碳贝氏体钢力学性能的影响

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The industrial development require new materials characterized highest mechanical properties. The conditions of thermo-mechanical treatment proved to highest level of mechanical properties for steels. Another method of making strong materials is to reduce the scale of the microstructure using heat treatment [1]. The paper presents the results of investigation into the effect of time and temperature variations during isothermal annealing on the mechanical properties of high carbon (c.a. 0,8%C) bainitic steel. Chemical composition of that steel (addition Si, Mn, Mo and Cr) obtain high level of tensile strength and good plastic properties. The analyzing of published results of researches of high carbon bainitic steels shown, that transformation of bainite can take between 2 to 60 days within the temperature range 125÷325°C [2,3] Based on results of researches of investigated steel a isothermal annealing in temperature range 20÷300°C were done. The experiments were done for 24, 50 and 100 hours of annealing. After that the mechanical tests were done. A Zwick Z100 testing machine was used for tests. The force and elongation values were recorded. On their basis, the proof stress and tensile strength of the steel tested were determined as a function of annealing temperature. The microstructure were determinated too.
机译:工业发展需要具有最高机械性能的新材料。事实证明,热机械处理的条件是钢的最高机械性能。制造坚固材料的另一种方法是使用热处理来减小微观结构的规模[1]。本文介绍了等温退火过程中时间和温度变化对高碳(约0.8%C)贝氏体钢力学性能的影响的研究结果。该钢的化学成分(添加Si,Mn,Mo和Cr)可获得高水平的拉伸强度和良好的塑性。对高碳贝氏体钢研究成果的分析表明,在125÷325°C的温度范围内,贝氏体的转变可能需要2至60天[2,3]。温度范围为20÷300°C。实验进行了24、50和100小时的退火。之后,进行了机械测试。使用Zwick Z100测试机进行测试。记录力和伸长率值。在此基础上,确定了测试钢的屈服强度和拉伸强度与退火温度的关系。微观结构也被确定。

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