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Modelling of austenite formation during heating in boron steel hot stamping processes

机译:硼钢热冲压过程中加热过程中奥氏体形成的模拟

摘要

© 2016 Elsevier B.V.A physically-based material model has been developed to describe the austenite formation in a manganese-boron steel during heating in hot stamping processes. The equations were formulated based on three austenite formation mechanisms: nucleation, growth and impingement. It is able to characterize the phase transformation process under both non-isothermal and isothermal conditions, where the effects of heating rate and soaking temperature on the austenite formation have been rationalised. Heat treatment tests of the manganese-boron steel were performed on a Gleeble 3800 subjected to various heating conditions (heating rate: 1–25 K/s, soaking temperature: 1023–1273 K). The dimensional changes of specimens associated with the phase transformation, which was measured using a high resolution dilatometer, has been quantitatively related to the volume fraction of austenite formation. The experimental data were used to calibrate and validate the equations. Good agreement between the experimental and predicted results has been obtained. Further analysis has been made to illustrate the significance of the model in applications.
机译:©2016 Elsevier B.V.已开发出一种基于物理的材料模型,用于描述热冲压过程中加热过程中锰硼钢中奥氏体的形成。这些方程是基于三种奥氏体形成机理制定的:成核,生长和冲击。它能够表征非等温和等温条件下的相变过程,其中加热速率和均热温度对奥氏体形成的影响已得到合理化。锰硼钢的热处理测试是在Gleeble 3800上进行的,其经受了各种加热条件(加热速率:1-25 K / s,均热温度:1023-1273 K)。使用高分辨率膨胀仪测量的与相变有关的样品的尺寸变化已与奥氏体形成的体积分数定量相关。实验数据用于校准和验证方程。实验结果和预测结果之间取得了良好的一致性。进行了进一步分析,以说明该模型在应用中的重要性。

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