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Numerical Prediction of Microstructure and Mechanical Properties During the Hot Stamping Process

机译:热冲压过程中微观结构和机械性能的数值预测

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Numerical simulation and prediction of microstructures and mechanical properties of products is very important in product development of hot stamping parts. With this method we can easily design changes of hot stamping products' properties prior to the manufacturing stage and this offers noticeable time and cost savings. In the present work, the hot stamping process of a U-channel with 22MnB5 boron steels is simulated by using a coupled thermo-mechanical FEM program. Then with the temperature evolution results obtained from the simulation, a model is applied to predict the microstructure evolution during the hot stamping process and mechanical properties of this U-channel. The model consists of a phase transformation model and a mechanical properties prediction model. The phase transformation model which is proposed by Li et al is used to predict the austenite decomposition into ferrite, pearlite, and bainite during the cooling process. The diffusionless austenite-martensite transformation is modeled using the Koistinen and Marburger relation. The mechanical properties prediction model is applied to predict the products' hardness distribution. The numerical simulation is evaluated by comparing simulation results with the U-channel hot stamping experiment. The numerically obtained temperature history is basically in agreement with corresponding experimental observation. The evaluation indicates the feasibility of this set of methods to be used to guide the optimization of hot stamping process parameters and the design of hot stamping tools.
机译:产品结构的数值模拟和预测产品的热冲压件的产品开发中非常重要。通过这种方法,我们可以在制造阶段之前轻松地设计热冲压产品的性质,这提供了明显的时间和节省成本。在本作工作中,通过使用耦合的热机械有限元件模拟具有22mNB5硼钢的U沟道的热冲压过程。然后利用从模拟获得的温度展开结果,应用模型以预测该U沟道的热冲压过程和机械性能期间的微观结构演变。该模型包括相变模型和机械性能预测模型。由Li等人提出的相变模型用于在冷却过程中将奥氏体分解预测到铁氧体,珠光体和贝氏体中。使用Koistinen和Marburger关系建模扩散的奥氏体 - 马氏体转换。机械性能预测模型应用于预测产品的硬度分布。通过将仿真结果与U沟道热冲压实验进行比较来评估数值模拟。数值获得的温度历史基本上与相应的实验观察一致。评估表明这套方法的可行性用于指导热冲压工艺参数的优化和烫印工具的设计。

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