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An analytic model for tube bending springback considering different parameter variations of Ti-alloy tubes

机译:考虑钛合金管不同参数变化的管弯回弹分析模型

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摘要

Springback after unloading is an issue that directly reduces the accuracy of bent tubes, especially for Ti-alloy tubes which are of high strength and low Young’s modulus. The Young’s modulus, E; wall thickness, t; and neutral layer, De, of a tube vary during the bending process. These variations may influence the bending deformation of components, thus on springback. Considering these variations, an analytic elastic-plastic tube bending springback model was established in this study based on the static equilibrium condition. When these variations were considered individually or combined, the resulting springback angles were all larger and closer to the experimental results than the results when variations were not considered for a D6 mm × t0.6 mm Ti-3Al-2.5V Ti-alloy tube. The t variation contribution is the largest and decreases the prediction error by 41.2%–45.3%. De variation ranks second and decreases the error by 21.2%-25.3%. E variation is the least significant, decreasing the error by only 2.4%. Furthermore, the influence of the stable Young’s modulus Ea on the springback is larger than the initial Young’s modulus E0. Therefore, for the bending springback of tubes with a small difference between E0 and Ea and under a normal bending radius, E variation effects can be neglected. While for tubes with large differences between E0 and Ea, and high springback prediction requirements, the E variation should be replaced by Ea. The influences of the initial tube sizes, material properties and bent tube sizes of the Ti-3Al-2.5V tube on springback were obtained using the newly developed model.\ud\ud
机译:卸载后的回弹是直接降低弯管精度的问题,特别是对于强度高,杨氏模量低的钛合金管。杨氏模量E;壁厚,t;管的中性层De在弯曲过程中会发生变化。这些变化可能会影响组件的弯曲变形,从而影响回弹。考虑到这些变化,在静态平衡条件下,建立了解析弹塑性管弯曲回弹模型。当单独或组合考虑这些变化时,与不考虑D6 mm×t0.6 mm Ti-3Al-2.5V Ti合金管变化时的结果相比,所产生的回弹角都更大且更接近实验结果。 t变异贡献最大,将预测误差降低41.2%–45.3%。 De变异排名第二,误差降低了21.2%-25.3%。 E变化最小,误差仅降低2.4%。此外,稳定的杨氏模量Ea对回弹的影响大于初始杨氏模量E0。因此,对于在E0和Ea之间的差很小并且在正常弯曲半径下的管的弯曲回弹,可以忽略E变化的影响。对于E0和Ea之间的差异较大且回弹预测要求较高的管,应使用Ea代替E变化。使用新开发的模型获得了Ti-3Al-2.5V管的初始管尺寸,材料性能和弯曲管尺寸对回弹的影响。\ ud \ ud

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