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Effect of Boosting Velocity on Forming Quality of High-Strength TA18 Titanium Alloy Tubes in Numerical Control Bending

机译:提升速度对数值控制弯曲高强度TA18钛合金管形成质量的影响

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In order to reveal the effect laws of boosting velocity on forming quality of tube bending. A three dimensional (3D) elastic plastic finite element (FE) model of whole process of high-strength TA18Tubes in numerical control (NC) bending was established based on the FE code of ABAQUS, and its reliability was validated by using the experimental results in literature. Then, the effect laws of boosting velocity on deformation behaviors of high-strength TA18Tubes in NC bending were explored with respect to multiple defects such as wall thinning, wall thickening, cross section deformation and springback. The results show that wall thinning ratio decreases with the increasing of boosting velocity; wall thickening ratio increases with the increasing of boosting velocity; cross section deformation ratio decreases with the increasing of boosting velocity; springback decreases slightly with the increasing of boosting velocity.
机译:为了揭示升压速度的效应规律,促进管弯曲质量。基于ABAQUS的FE代码建立了三维(3D)弹性塑料有限元(FE)高强度Ta18Tubes的整个过程的整体过程模型,通过使用实验结果验证了其可靠性文学。然后,关于诸如壁稀土,壁增厚,横截面变形和回弹等多种缺陷,探讨了促进高强度Ta18Tubes变形行为的促进速度的效果规律。结果表明,随着升压速度的增加,壁稀释比率降低;壁增厚比随着升压速度的增加而增加;横截面变形比随着升压速度的增加而降低;随着升压速度的增加,回弹略有下降。

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