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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Numerical simulation study on multi-pass non-axisymmetric spinning of cylindrical parts with oblique flange
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Numerical simulation study on multi-pass non-axisymmetric spinning of cylindrical parts with oblique flange

机译:倾斜法兰圆柱形部件多通非轴对称纺丝的数值模拟研究

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摘要

A non-axisymmetric cylinder with an oblique flange has broad application prospects. Spinning is the main production process for this kind of workpiece. Finite element modeling is a necessary method to study some key problems that are difficult to be solved merely through experiments, such as the strain and stress fields in the development of this spinning technology. In this study, the spinning process of a non-axisymmetric oblique flange cylindrical part was established and simulated using ABAQUS/explicit software. The credibility of the simulation result was validated through an experiment. The influence of the axial roller feed along the cylinder wall on the distribution of wall thickness and stress and strain during the forming process was analyzed. The change in stress field and strain field with time was analyzed, and the quantitative relationship between forming conditions and forming results was described. Furthermore, the forming principle of the flange was analyzed. It would be beneficial for flange forming to reduce the increasing distance of the cylinder wall in the 180 degrees direction (parameter c) and the vertical distance from the closest point to the spindle as the roller returns back in the 180 degrees direction (parameter d), to a certain extent. Hence, a workpiece with an ideal appearance was obtained. By comparing the wall thickness distribution, the design and optimization of the roller path were once again verified to be reasonable.
机译:具有倾斜法兰的非轴对称气缸具有广泛的应用前景。纺纱是这种工件的主要生产过程。有限元建模是研究难以通过实验的一些关键问题的必要方法,例如这种纺纱技术的发展中的应变和应力场。在该研究中,使用ABAQUS /显式软件建立和模拟非轴对称倾斜法兰圆柱部分的纺丝过程。通过实验验证了模拟结果的可信度。分析了轴向辊沿气缸壁对成形过程中壁厚和应力和应变分布的影响。分析了应力场和应变场的变化,描述了形成条件与形成结果之间的定量关系。此外,分析了法兰的形成原理。凸缘形成将使圆柱壁的增加距离降低在180度方向(参数c)中,并且当滚轮返回到180度方向(参数d)时,从最接近点到主轴的垂直距离, 在某种程度上。因此,获得具有理想外观的工件。通过比较壁厚分布,再次验证滚子路径的设计和优化是合理的。

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