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Shape Defects in The Flexible Roll Forming of Automotive Parts

机译:柔性轧辊形成的形状缺陷

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Flexible roll forming allows variable cross sections of profiles to be made by using adaptive roll stands. The most common shape defects that occur during flexible roll forming are edge wave and longitudinal bow. These two defects are necessary to consider together for relatively thin-walled blanks because they usually occur simultaneously during flexible roll forming. To understand the occurrence of these defects, finite element (FE) simulations based on the rigid shell concept were carried out using three blanks with different shapes: trapezoid, concave, and convex. The FE analysis on the flexible roll forming process was performed first, and then the gap of rigid shell has been decreased for reducing the longitudinal bow in roll formed blank. The reduction of longitudinal bow in the web part usually causes edge wave in the flange part. The occurrence of shape defects is investigated based on the relationships among edge curvature, longitudinal stress at the edge, and longitudinal bow height. When longitudinal bow is reduced, the longitudinal stress at the edge of roll formed blank is changed from tensile to compressive in convex blank but in concave blank, tensile residual stress increases. Edge waves occur in the flanges of trapezoid and convex blanks as a result of decreased longitudinal bow. Lab-scale flexible roll forming experiments show multi-stand forming with a leveling roll is desirable to reduce both edge wave and longitudinal bow.
机译:柔性轧辊形成允许通过使用自适应辊架进行可变横截面。在柔性辊形成期间发生的最常见的形状缺陷是边缘波和纵向弓。对于相对薄壁的坯料,需要这两种缺陷是必须一起考虑的,因为它们通常在柔性滚动形成期间同时发生。为了了解这些缺陷的发生,使用具有不同形状的三个空白来执行基于刚性外壳概念的有限元(FE)模拟:梯形,凹入和凸起。首先进行柔性辊成形过程的Fe分析,然后降低了刚性壳的间隙,以减少卷的卷坯料中的纵向弓。腹板部件中的纵向弓的缩小通常在法兰部分中导致边缘波。基于边缘曲率,边缘处的纵向应力和纵向弓高度的关系来研究形状缺陷的发生。当纵向弓减小时,辊边缘处的纵向应力从拉伸变为凸坯的拉伸,但在凹陷坯料中,拉伸残余应力增加。由于纵向弓减小,边缘波发生在梯形和凸坯的凸缘中。 Lab级柔性辊成形实验显示使用平整辊的多支架形成是希望减少边缘波和纵向弓。

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