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A theoretical model of the inversion tube over a conical die

机译:圆锥形模具上反转管的理论模型

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As an important impact energy absorber and a way to produce double-wall tubes, the inversion of the metal tube over a conical die is investigated in this study. Adopting the deformation profile inspired by FEM simulations, a theoretical model is proposed assuming the energy is dissipated by bending and compression in the meridional direction, and expansion in the circumferential direction. FEM simulations with a large range of geometrical parameters are used to validate the theoretical model, and results show that both the compressional force and the final circular radius of tube predicted by the theoretical model are quite accurate. Then, the energy dis-sipations along the axis of the tube by various mechanisms are analyzed in detail, and it is identified that the tube deformation in the thickness direction is the major reason of the current model's deviation. Besides, the influence of the die radius, the friction between die and tube, as well as the dynamic effect are discussed.
机译:作为重要的冲击能量吸收器和生产双层管的方法,本研究研究了金属管在圆锥形模具上的倒置。在有限元模拟的启发下,采用变形轮廓,提出了一个理论模型,该模型假设能量通过子午方向的弯曲和压缩以及周向的膨胀而耗散。大量几何参数的有限元模拟被用来验证理论模型,结果表明理论模型预测的管的压缩力和最终圆半径都非常准确。然后,详细分析了通过各种机制沿管轴的能量耗散,并且确定了管沿厚度方向的变形是当前模型偏离的主要原因。此外,还讨论了模具半径,模具与管之间的摩擦以及动力学效应的影响。

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