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Influence of feed rate on damage development in hot ring rolling

机译:饲料速率对热环轧制损伤开发的影响

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As an incremental forming process of bulk metal, 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. Under some process conditions, defects such as porosity can sometimes be found in hot rolled rings, which are manufactured from high alloyed steel ingots having macro segregations. For the reduction of the waste of material and improvement of product quality, a better understanding of the relations between segregation levels in the ingot, process parameters in the hot ring rolling and the occurrence of porosity is needed. In this research, a coupled thermo-mechanical multi-stage finite element model is used to simulate the hot ring rolling process including preform forging. The deformations, stresses and strains from the preforming steps are included as initial conditions for the rolling stage. Subroutines are implemented to represent the control algorithm for the motion of the rolls. A damage indicator is implemented in the material model. Simulations with different feed rate curves are carried out in order to see the influence on the occurrence of porosity. Hot ring rolling experiments in an industrial rolling mill are conducted to validate the numerical study. The results of simulation and experiment show good agreement.
机译:作为散装金属的增量成型过程,环轧制提供了制造无缝环的成本有效的工艺途径。环滚动覆盖各种产品在航空航天,汽车和土木工程行业中的各种产品。在一些过程条件下,有时可以在热轧环中找到诸如孔隙率的缺陷,其由具有宏观分离的高合金钢锭制造。为了减少材料的浪费和产品质量的提高,更好地了解铸锭中隔离水平之间的关系,需要热环轧制中的过程参数和孔隙率的发生。在该研究中,使用耦合的热机械多级有限元模型来模拟包括预制件锻造的热环轧制工艺。从预成型步骤的变形,应力和菌株被包括为滚动台的初始条件。实施子程序以表示卷的运动的控制算法。损坏指示器在材料模型中实现。进行不同进料速率曲线的模拟,以便看到对孔隙率发生的影响。进行工业轧机中的热环滚动实验以验证数值研究。仿真和实验结果表现出良好的一致性。

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