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Simulation of Deformation Behavior and Microstructure Evolution during Hot Forging of TC11 Titanium Alloy

机译:TC11钛合金热锻造变形行为和微观结构演化的仿真

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Finite element method is the most powerful tool for development and optimization of the metal forming processes. Analysis of titanium alloy critical parts should include the prediction of microstructure since their mechanical and technological properties essentially depend on the type and parameters of the microstructure. The technological process of parts production for aerospace applications is multi-operational and consists of deformation, heating and cooling stages. Therefore, it is necessary to simulate the microstructure evolution to obtain high quality parts. In presented paper FE simulation coupled with microstructure evolution during hot forging of TC11 titanium alloy has been performed by QForm FEM code. Constitutive relationships, friction conditions and microstructure evolution model have been established using the experiments. The kinetics of phase transformations has been described by the Johnson-Mehl-Avrami-Kolmogorov (JMAK) phenomenological model. The approach is illustrated by industrial case study that proved its practical applicability and economic advantages for technology development of titanium alloy critical parts.
机译:有限元方法是最强大的开发和优化金属形成过程的工具。钛合金关键部件的分析应包括微观结构的预测,因为它们的机械和技术特性基本上取决于微观结构的类型和参数。适用于航空航天应用的零件生产的技术过程是多功能的,包括变形,加热和冷却阶段。因此,有必要模拟微观结构进化以获得高质量的部件。在介绍的纸公FE模拟中,通过QForm FEM代码进行了TC11钛合金的热锻造过程中的微观结构演变。本实验建立了构成型关系,摩擦条件和微观结构演化模型。 Johnson-Mehl-Avrami-Kolmogorov(JMAK)现象模型描述了相变的动力学。该方法是通过工业案例研究说明的,证明了其实际适用性和钛合金关键零件技术发展的经济优势。

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