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Deformation behaviors of thin-walled tube in rotary draw bending under push assistant loading conditions

机译:推力辅助条件下薄壁管在旋转拉伸弯曲中的变形行为

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In rotary draw bending (RDB) of thin-walled tube with small bending radii, by using pressure die or booster, the axial pushing force is applied to the tube to control the flow states of tube materials. While the roles of the push assistant loading (PAL) conditions are perplexing due to multiple defects inherent to tube bending. Based on an analytical description of the PAL functions, the deformation behaviors of thin-walled tube in RDB under three different PAL conditions are addressed with respect to wall thinning, cross-section deformation and wrinkling numerically combined with experiment considering PAL functions. The results show that: (1) besides the push assistant level fp and fb, the actual stretch amount Δl of tube, the relative slip distances L_1 between tube and pressure die and L_2 between tube and clamp die can be used to evaluate the PAL roles. (2) The suitable boosting method is that the tube is boosted directly at the trailing end of tube; The synchronous mode is the optimal one to reduce the wall thinning degree I_t and the cross-section deformation degree I_d among sole pressure die, independent and synchronous modes between pressure die and booster; the role of pressure die is limited under sole pressure die mode due to dynamic friction conditions, and the suitable range of f (fp & fb) for each matching mode is obtained. (3) the PAL function plays more significant effect on the extrados (reducing of I_t and I_d) than that on the intrados (enlarging of wrinkling tendency I_w); The PAL conditions under synchronous mode play more significant effect on bending behaviors than sole pressure die mode; With smaller R_d/D, the PAL can avoid L_2 and wrinkling near clamp die more effectively as well as reducing the I_t and I_d more effectively.
机译:在具有小弯曲半径的薄壁管的旋转拉伸弯曲(RDB)中,通过使用压模或增压器,将轴向推力施加到管上,以控制管材料的流动状态。由于管弯曲固有的多个缺陷,推动辅助加载(PAL)条件的作用令人困惑。在分析PAL函数的基础上,结合考虑PAL函数的实验,从数值上考虑了壁变薄,横截面变形和起皱的问题,研究了三种不同PAL条件下RDB中薄壁管的变形行为。结果表明:(1)除了推挤辅助水平fp和fb之外,管的实际拉伸量Δl,管与压力模之间的相对滑移距离L_1和管与夹紧模之间的L_2相对滑动距离都可以用来评估PAL的作用。 (2)合适的助推方法是在管的尾端直接对管进行助推;同步模式是降低单个压模之间壁厚变薄程度I_t和横截面变形程度I_d,压模与增压器之间的独立和同步模式的最佳方式。由于动态摩擦条件,在唯一的压模模式下,压模的作用受到限制,并且获得了每种匹配模式的f(fp&fb)的合适范围。 (3)PAL函数对结界(减小I_t和I_d)的作用比对结界(起皱倾向I_w增大)的影响更大。同步模式下的PAL条件对弯曲行为的影响比唯一压力模头模式更重要;使用较小的R_d / D,PAL可以更有效地避免L_2和夹紧模附近的起皱,并且可以更有效地减小I_t和I_d。

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