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Hot Deformation Behavior of Q345 Steel and Its Application in Rapid Shear Connection

机译:Q345钢的热变形行为及其在快速剪切连接中的应用

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摘要

The high-temperature deformation behavior of Q345 steel is detected by a Gleeble-3800 thermal simulator. The Arrhenius constitutive equation for high-temperature flow stress and the dynamic recrystallization model are constructed. With the secondary development technology, customized modifications are made on existing Deform-3D software. The constructed constitutive model and dynamic recrystallization model are embedded into Deform-3D to realize the secondary development of Deform-3D. The grain size and volume percentage distribution of dynamic recrystallization are obtained by simulating the shear connection process at high temperature and high speed. The results show that the constitutive equation and the dynamic recrystallization model constructed in this paper can be used to predict the evolution of the microstructure. The difference between the prediction results and the experimental data is about 3%. The accuracy of Arrhenius constitutive equation, dynamic recrystallization model and the feasibility of software secondary development are verified.
机译:Q345钢的高温变形行为由Gleeble-3800热仿真器检测。构造了高温流应力的Arrhenius本构方程和动态再结晶模型。利用二次开发技术,可以对现有的Deform-3D软件进行定制的修改。将构建的本构模型和动态再结晶模型嵌入Deform-3D中,以实现Deform-3D的二次开发。通过模拟高温高速下的剪切连接过程,获得了动态再结晶的晶粒尺寸和体积百分比分布。结果表明,本文建立的本构方程和动态再结晶模型可用于预测组织的演变。预测结果与实验数据之间的差异约为3%。验证了Arrhenius本构方程的准确性,动态重结晶模型以及软件二次开发的可行性。

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