汽车弯曲排气管件多工步成形数值模拟及试验验证

    Numerical Simulation and Test of Multi-step Forming for Bending Exhaust Tube Parts of Automobile

    • 摘要: 为解决某汽车弯曲排气管件成形困难的问题,开展441不锈钢管材的绕弯成形及液压成形工艺研究,从而提高排气管件的成形质量与成形效率。利用有限元模拟软件,深入探讨排气管件成形工艺中关键参数对成形质量的影响。首先,研究了不同相对弯曲半径对管件成形的影响。结果表明:采用1.5D弯曲半径进行绕弯成形能够有效改善壁厚分布并减少缺陷。在此基础上,进一步研究了预胀形工艺对管件成形质量的影响,发现预胀形工艺可以有效改善壁厚分布,并通过模拟确定了40 MPa的预胀形压力为最佳加载压力,此时管件最大减薄率仅为17.18%,最大增厚率为19.09%。最后,基于模拟结果,分别进行了绕弯成形和内高压成形实验,制备出符合要求的弯曲排气管件,验证了模拟结果的有效性。

       

      Abstract: In order to solve the forming difficulties of a bending exhaust tube of an automobile, the bending and hydroforming process of 441 stainless steel tube was studied to improve the forming quality and forming efficiency of the exhaust tube. The influence of key parameters on forming quality of exhaust tube parts was deeply discussed by using finite element simulation software. Firstly, the influence of different relative bending radius on tube forming was studied. The results show that the 1.5D bending radius can effectively improve the wall thickness distribution and reduce the defects. On this basis,the influence of the pre-expansion process on the forming quality of the tube fittings was further studied, and it is found that the pre-expansion process can effectively improve the wall thickness distribution, and the pre-expansion pressure of 40 MPa is determined by simulation as the best loading pressure. At this time, the maximum thinning rate of the tube fittings is only 17.18%, and the maximum thickness increase rate is 19.09%. Finally, based on the simulation results, the bending and internal high pressure forming experiments were carried out, respectively, and the bending exhaust tube parts meeting the requirements were successfully prepared, which verified the validity of the simulation results.

       

    /

    返回文章
    返回