首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Investigation and prediction of springback in rotary-draw tube bending process using finite element method
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Investigation and prediction of springback in rotary-draw tube bending process using finite element method

机译:旋转拉管弯曲过程回弹的有限元研究与预测

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Rotary-draw tube bending operation is one of the most universal methods used for the tube forming processes. Similar to the other forming methods, some problems such as wall thinning, cross-section distortion, wrinkling, and springback can also be seen on the tubes formed by rotary-draw bending operations. Springback is a very common problem and its prediction plays a crucial role in increasing the efficiency of the tube bending operations and also to overcome the difficulties in the assembly processes. Tube diameter, wall thickness, bend radius, bend angle, and coefficient of friction can be considered as the most effective parameters that cause the variation of springback magnitude. In this study, not a simple one-at-a-time sensitivity analysis, but a thorough investigation of the springback phenomena involving interactions between the geometrical and mechanical parameters is done and surrogate models are developed via the data obtained from finite element analysis using a multi-purpose explicit and implicit finite element software LS-DYNA to analyze the non-linear response of structures. The constructed surrogate models can be utilized to perform fast prediction of springback for a given combination of parameters. Three different surrogate modeling techniques are exploited and it is found that the linear polynomial response surface approximations can provide acceptable accuracy. Finally, experiments are conducted to validate the accuracy of surrogate models. It is observed that the cross-validation error predictions are close to the errors observed in the experiments.
机译:旋转拉伸管弯曲操作是用于管成型过程的最通用方法之一。与其他成形方法相似,在通过旋转拉伸弯曲操作形成的管子上也可以看到一些问题,例如壁变薄,横截面变形,起皱和回弹。回弹是一个非常普遍的问题,其预测在提高弯管操作效率以及克服装配过程中的困难方面起着至关重要的作用。管直径,壁厚,弯曲半​​径,弯曲角度和摩擦系数可以被认为是引起回弹幅度变化的最有效参数。在这项研究中,不是一次简单的一次灵敏度分析,而是对涉及几何参数和机械参数之间相互作用的回弹现象进行了全面研究,并通过有限元分析获得的数据开发了替代模型,使用多功能显式和隐式有限元软件LS-DYNA用于分析结构的非线性响应。对于给定的参数组合,可以使用构造的替代模型执行回弹的快速预测。利用三种不同的代理建模技术,发现线性多项式响应面近似可以提供可接受的精度。最后,进行实验以验证替代模型的准确性。可以看出,交叉验证错误预测接近于实验中观察到的错误。

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