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Multi-Stage FE Simulation of Hot Ring Rolling

机译:热轧环轧多级有限元模拟

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摘要

As a unique and important member of the metal forming family, ring rolling provides a cost effective process route to manufacture seamless rings. Applications of ring rolling cover a wide range of products in aerospace, automotive and civil engineering industries [1]. Above the recrystallization temperature of the material, hot ring rolling begins with the upsetting of the billet cut from raw stock. Next a punch pierces the hot upset billet to form a hole through the billet. This billet, referred to as preform, is then rolled by the ring rolling mill. For an accurate simulation of hot ring rolling, it is crucial to include the deformations, stresses and strains from the upsetting and piercing process as initial conditions for the rolling stage. In this work, multi-stage FE simulations of hot ring rolling process were performed by mapping the local deformation state of the workpiece from one step to the next one. The simulations of upsetting and piercing stages were carried out by 2D axisymmetric models using adaptive remeshing and element erosion. The workpiece for the ring rolling stage was subsequently obtained after performing a 2D to 3D mapping. The commercial FE package LS-DYNA was used for the study and user defined subroutines were implemented to complete the control algorithm. The simulation results were analyzed and also compared with those from the single-stage FE model of hot ring rolling.
机译:作为金属成形族的独特而重要的成员,环轧提供了一种经济有效的生产无缝环的工艺路线。环锭轧制的应用涵盖了航空航天,汽车和土木工程行业的众多产品[1]。在材料的重结晶温度以上,热环轧始于从原材料切下的坯料的setting粗开始。接下来,打孔机刺穿热up粗坯,以在粗坯上形成孔。然后将这种坯料(称为预成型坯)通过环轧机进行轧制。为了精确模拟热环轧制,至关重要的是将the粗和穿孔过程产生的变形,应力和应变作为轧制阶段的初始条件。在这项工作中,通过映射工件从一个步骤到下一步骤的局部变形状态,进行了热环轧制过程的多阶段有限元模拟。 adaptive锻和冲孔阶段的模拟是通过2D轴对称模型使用自适应网格和元素腐蚀进行的。在进行2D到3D映射之后,随后获得了用于环形轧制阶段的工件。使用商业有限元软件包LS-DYNA进行研究,并实现了用户定义的子例程来完成控制算法。分析了仿真结果,并将其与热环轧制单阶段有限元模型的仿真结果进行了比较。

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