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Mechanical Properties and Strength Prediction of Ti Micro alloyed Low Carbon Steel with Different Ti Content

机译:不同Ti含量的Ti Micro合金低碳钢的力学性能和强度预测

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The effects of Ti on microstructures,recrystallization and mechanical properties of microalloyed low carbon steels were studied.Hall-Petch relationship and Ashby-Orowan equation were applied to analyse the reason for the variation of strength.The results show that the recrystallization activation energy increases parabolically as the Ti content increases.Besides,the yield strength,tensile strength and the yield ratio increase in varying degrees with the increasing of Ti content,while the elongation decreases.The fine grain strengthening makes the greatest contribution to the strength,and the precipitation strengthening of TiC particles is the main reason why the strength of test steel increases significantly when the Ti content exceeds 0.042%.In addition,the strength prediction model was established for Ti microalloyed low carbon steel.The relative error of predicted yield strength and tensile strength of Q345B steel are within ± 8% and ± 7% respectively.
机译:研究了Ti对微合金化低碳钢的微观结构,重结晶和机械性能的影响。应用 - 胶合关系和ashby-orowan方程分析了强度变化的原因。结果表明,再结晶活化能量递减抛物平增加随着Ti含量的增加,屈服强度,拉伸强度和屈服比随着Ti含量的增加而增加,而伸长率降低。细粒强化对强度的贡献最大,降水强化TIC颗粒是当Ti含量超过0.042%时,试验钢的强度增加的主要原因。此外,为Ti微合金低碳钢建立了强度预测模型。预测屈服强度和拉伸强度的相对误差Q345B钢在±8%和±7%范围内。

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