...
首页> 外文期刊>International Journal of Mechanical Sciences >Coupled approach for flatness prediction in cold rolling of thin strip
【24h】

Coupled approach for flatness prediction in cold rolling of thin strip

机译:薄带冷轧平直度预测的耦合方法

获取原文
获取原文并翻译 | 示例
           

摘要

The paper presents a predictive model of the flatness defects, which appear during rolling of thin plates, the origin of which is the roll stack thermo-elastic deformation. The combination of the elastic deflection, the thermal crown and the roll grinding crown results in a non-parallel bite, and if the deformed roll transverse profile is not an affinity of the incoming strip profile, differential elongation results and induces high stresses in the outgoing strip. The latter, combined with the imposed strip tension force, result in a net post-bite stress field which may be sufficiently compressive locally to promote buckling. A variety of non-developable shapes may result, generally occurring as waviness (centre waves, wavy edges, quarter-buckles, etc.). This problem is most of the time addressed in a decoupled way, i.e. as a post-processing of the residual stresses computed by a strip rolling model; the present paper on the contrary describes a fully coupled approach of in-bite plastic deformation and post-bite buckling. For this purpose, a simple buckling criterion has been introduced in a FEM model of strip and roll deformation, Lam3/Tec3; its implementation is documented in details. The capabilities and limits of the present approach are described and discussed. Characterised by its coupled approach, it is primarily devoted to cases where on-line (under tension) manifested defects occur. It is shown that the impact of the post-bite, post-buckled stress field on the in-bite stress and strain fields is quite small in the cases investigated; however, subtle changes appear in the velocity field at bite exit, and this is sufficient to transform completely the post-bite stress field, which is found in much better agreement with measurements if such a coupled treatment is used.
机译:本文提出了一种平整度缺陷的预测模型,其在薄板轧制过程中会出现,其起源是轧辊堆的热弹性变形。弹性变形,热凸度和辊磨凸度的组合会导致咬合不平行,如果变形的轧辊横向轮廓与进入的带材轮廓没有亲和力,则会产生差异伸长率,并在输出方向产生高应力跳闸。后者与所施加的条带张紧力相结合,产生咬后净应力场,该应力后场可能在局部具有足够的压缩力,以促进屈曲。可能会产生各种不可显影的形状,通常会出现波纹(中心波,波浪形边缘,四分之一扣等)。在大多数情况下,这个问题是通过解耦的方式解决的,即对带钢轧制模型计算出的残余应力进行后处理;相反,本文描述了咬合塑性变形和咬合后屈曲的完全耦合方法。为此,在带钢和钢带变形的有限元模型Lam3 / Tec3中引入了一种简单的屈曲准则。详细记录了其实现。描述和讨论了本方法的能力和限制。它以耦合方式为特征,主要用于在线(在张力下)表现出缺陷的情况。结果表明,在所研究的情况下,咬合后屈曲应力场对咬合应力场和应变场的影响很小。但是,在咬合出口处的速度场中会出现细微的变化,这足以完全改变咬合后的应力场,如果使用这种耦合处理,则与测量结果更加一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号