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Three-dimensional Finite-elements Modeling And Simulation Of Rotary-draw Bending Process For Thin-walled Rectangular Tube

机译:薄壁矩形管旋转拉伸弯曲过程的三维有限元建模与仿真

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According to the characteristics of the rotary-draw bending process of a thin-walled rectangular tube, a three-dimensional finite-elements model of this process is built under the ABAQUS/explicit environment based on the solution of several key techniques, such as contact boundary condition treating, material properties definition, meshing technology, etc. The actions of pressure die, wiper die, clamp die and mandrel are considered in the modeling process. Then the reliability of the model is validated by comparison with experiments in the literature. Furthermore, numerical simulation and analysis of the thin-walled rectangular tube bending process of 3A21 aluminum alloy have been carried out by using the model. The distribution laws of tangential stress in the process have been analyzed. The results show that the maximum tangential stress increases sharply in the initial stage and then keeps nearly constant with the progress of the bending process. The circumferential compressive stress zone is basically unchanged when the bending process becomes stable.
机译:根据薄壁矩形管旋转拉伸弯曲过程的特点,在ABAQUS /显性环境下,基于接触等关键技术的解决方案,建立了该过程的三维有限元模型。边界条件处理,材料特性定义,啮合技术等。在建模过程中考虑了压力模,刮水模,夹紧模和心轴的作用。然后通过与文献中的实验比较来验证模型的可靠性。此外,利用该模型对3A21铝合金薄壁矩形管弯曲过程进行了数值模拟和分析。分析了切向应力在该过程中的分布规律。结果表明,最大切向应力在初始阶段急剧增加,然后随着弯曲过程的进行而几乎保持恒定。当弯曲过程变得稳定时,周向压应力区基本上不变。

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