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Numerical simulation and experimental study on mechanism and characteristics of tube free-bending forming process

机译:管自由弯曲成型工艺机理和特性的数值模拟与实验研究

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Free-bending is a new flexible bending forming technology, which has the great bending potential and can achieve complex bending geometries without changing the die and re-clamping the tube. In our research, the FEA model for tube free-bending was established and the bending ratio of down to R/D_0 ≈ 2.5 of brass tube was realized in the finite element simulation. With the simulation model, the motion trace scope of bending die and stress variation in free bending process were identified and it was found that the equivalent stress and the displacement of the strain neutral layer increased with the decrease of bending radius. Meanwhile, the absolute value of the maximum tangential strain in extrados (PE11=1.779) is much less than that in extrados (PE=-2.337) when the bending ratio is about 2.5. The finite element simulation results also confirmed that the axial boosting force during free-bending process led to a displacement of 0.3 mm of the strain neutral layer from the inner side of the bend into the direction of the outer bend and a maximum wall thickness reduction of 6% in the extrados when the bending radius is minimal. From the bending tests, the minimum bending ratio of R/D_0 ≈ 2.8 of brass tube were realized, and the bent tube also has very small wall thickness reduction and the resulting bending geometry shows only small cross section deformations and rupture since the bend die holds the required roundness. Both finite element analysis and bending test verify the above-mentioned characteristics of free-bending.
机译:自由弯曲是一种新的灵活弯曲成型技术,具有较大的弯曲潜力,可以实现复杂的弯曲几何形状而不改变模具并重新夹紧管。在我们的研究中,建立了用于管自由弯曲的FEA模型,在有限元模拟中实现了黄铜管的弯曲比至r /d_0≈2.5。利用仿真模型,鉴定了弯曲模具的运动跟踪范围和自由弯曲过程中的应力变化,发现应变中性层的等效应力和位移随着弯曲半径的降低而增加。同时,当弯曲率为约2.5时,extrados(PE11 = 1.779)中最大切向应变的绝对值远小于extrado(PE = -2.337)中。有限元模拟结果还证实,自由弯曲过程中的轴向增压力导致从弯曲的内侧进入外弯的方向的0.3mm的应变中性层的位移和最大壁厚减小当弯曲半径最小时,extrados中的6%。从弯曲试验中,实现了r /d_0≈2.8的最小弯曲比率,并且弯曲管也具有非常小的壁厚减小,并且所得到的弯曲几何形状仅显示小横截面变形和破裂,因为弯曲模具所需的圆度。有限元分析和弯曲试验验证了上述自由弯曲的特性。

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