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Enhanced finite element analysis of material deformation and strain distribution in spinning of 42CrMo steel tubes at elevated temperature

机译:高温下42CrMo钢管旋转时材料变形和应变分布的增强有限元分析

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摘要

Tube spinning is a commonly used process for manufacturing axisymmetric parts in automotive and aerospace industries and a method for fabricating pressure vessels. Generally the studies of tube spinning process have been limited to thin wall tubes and the FE (Finite Element) simulations have usually incorporated shell elements (incapable of proper investigation of strain diversity in thickness). Therefore, the material deformation in thickness has not been properly investigated. In this paper, spinning for manufacturing a dome form on tube end is analyzed using an enhanced explicit 3-D finite element model, supported by an experiment. Adaptive meshing, mass scaling and parallel processing techniques are incorporated to obtain sound simulations, using a high temperature, strain rate sensitive material model. The strain distribution in different thickness layers and axial positions of the curved tube are studied and deformation modes are interpreted. The distribution of the axial strain along the tube axis in different thickness layers indicates the bending mode deformation at the distant positions from the free end and elongation at the free end, where shear also increases significantly. In all, a comprehensive description of the plastic deformation in tube spinning, considering the strain variation in thickness, is presented in this paper. Roller force in axial direction changes sign because of change in relative contact position of the roller and tube. The radial force is also shown to be slightly decreasing towards the end.
机译:管纺是在汽车和航空航天工业中制造轴对称零件的常用方法,也是一种制造压力容器的方法。通常,对管旋压工艺的研究仅限于薄壁管,而FE(有限元)模拟通常包含壳单元(无法正确研究厚度应变的多样性)。因此,尚未对材料的厚度变形进行适当的研究。在本文中,使用增强的显式3D有限元模型分析并分析了在管端制造圆顶形的旋转过程,并进行了实验支持。结合了自适应网格划分,质量缩放和并行处理技术,可以使用高温,应变率敏感的材料模型获得声音模拟。研究了弯管在不同厚度层和轴向位置的应变分布,并解释了变形模式。沿管轴线在不同厚度层中的轴向应变的分布指示在远离自由端的远处位置处的弯曲模式变形和在自由端处的伸长处的剪切模式变形,其中剪切也显着增加。总而言之,本文提出了考虑到厚度应变变化的管材纺丝过程中塑性变形的综合描述。由于辊子和管子的相对接触位置的变化,沿轴向的辊子力改变了符号。径向力也显示向末端稍微减小。

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