首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Investigation of a new incremental counter forming in flexible roll forming to manufacture accurate profiles with variable cross-sections
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Investigation of a new incremental counter forming in flexible roll forming to manufacture accurate profiles with variable cross-sections

机译:研究柔性轧制中新的增量对位成形技术,以制造具有可变横截面的精确轮廓

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摘要

A roll-formed profile with variable cross-sections fabricated by flexible roll forming has a shape error, such as warping, because of geometrical deviations in transitional zones of the profile between the initial metal strip and the roll-formed profile. To reduce the shape error, a new process called incremental counter forming (ICF) is proposed. Our investigation of the ICF process shows that the longitudinal strain distribution at the flange of the roll-formed profile can be controlled by combinations of forming parameters of the ICF process. As the forming parameters increase the longitudinal strain distribution in the concave zone, the shape error decreases. However, when the longitudinal strain distribution in the straight zone reaches a critical limit, the additional longitudinal strain works as an excessive longitudinal strain to worsen the shape error. An analytical model, which describes the longitudinal strain at the flange during roll forming, is adopted to reveal that the increase of the longitudinal strain is induced by increasing derivatives of a bending angle, which is controlled by the forming parameters of the ICF process. Finally, the FE simulation has been carried out to compare with the experimental results, which show that the ICF process is effective for reducing the shape error of the profile with variable cross-sections in flexible roll forming.
机译:通过柔性辊压成型制造的具有可变横截面的辊压成型轮廓具有形状误差,例如翘曲,这是由于初始金属带材与辊压成型轮廓之间的轮廓过渡区域中的几何偏差。为了减少形状误差,提出了一种称为增量计数器成形(ICF)的新工艺。我们对ICF工艺的研究表明,可以通过ICF工艺的成形参数的组合来控制在辊压成型型材的凸缘处的纵向应变分布。随着成形参数增加凹区中的纵向应变分布,形状误差减小。但是,当直线区域中的纵向应变分布达到临界极限时,附加的纵向应变会作为过多的纵向应变而使形状误差恶化。采用分析模型描述了在轧制过程中凸缘处的纵向应变,该模型揭示出纵向应变的增加是由弯曲角导数的增加引起的,弯曲角的导数由ICF工艺的成形参数控制。最后,通过有限元模拟与实验结果进行比较,结果表明,ICF工艺可有效减小柔性轧制中具有可变横截面的型材的形状误差。

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