首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Thermomechanical analysis of a piercing mandrel for the production of seamless steel tubes
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Thermomechanical analysis of a piercing mandrel for the production of seamless steel tubes

机译:无缝钢管生产用穿刺芯棒的热力学分析

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摘要

The heat transfer of a piercing mandrel for the production of seamless steel tubes is analysed, and the consequent thermal stresses are examined. The process of tube manufacture is described, and the problem to be addressed is identified. The analysis is based on a mathematical model with the essential boundary conditions, heat transfer coefficients in this case. For the solution of this mathematical model, the finite element method (FEM) is employed given the geometry of the tip of the mandrel and its initial and boundary conditions. The commercial software of the FEM employed makes it possible to find the temperature fields of the mandrel tip, as well as the temperature histories of some points of interest, which agree with thermographic readings. Evaluation of the material, based on the temperature field, shows that creep effects are important in wearing out of the mandrel tip and affect the number of tubes manufactured. Additionally, the methodology developed herein makes it possible to estimate the lifespan of the mandrel tip during the tube piercing stage, and to propose improvements for cooling of the mandrel tip.
机译:分析了用于生产无缝钢管的穿刺芯棒的传热,并检查了由此产生的热应力。描述了管的制造过程,并确定了要解决的问题。该分析基于具有必要边界条件(在这种情况下为传热系数)的数学模型。对于此数学模型的求解,考虑到心轴尖端的几何形状及其初始条件和边界条件,采用了有限元方法(FEM)。所使用的FEM的商业软件可以找到心轴尖端的温度场,以及与热像仪读数一致的某些关注点的温度历史记录。根据温度场对材料进行的评估表明,蠕变效应对于心轴尖端的磨损非常重要,并且会影响所制造管的数量。另外,本文开发的方法使得可以估计在穿刺阶段期间心轴尖端的寿命,并提出用于冷却心轴尖端的改进。

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