• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (3): 307-310.

• 论文 • 上一篇    下一篇

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管材弯曲中应变中性层位移的分析

鄂大辛;郭学东;宁汝新   

  1. 北京理工大学材料科学与工程学院;吉林大学力学系
  • 发布日期:2009-03-15

Analysis of Strain Neutral Layer Displacement in Tube-bending Process

E Daxin;GUO Xuedong;NING Ruxin   

  1. School of Material Science and Engineering, Beijing Institute of Technology Department of Mechanics, Jilin University
  • Published:2009-03-15

摘要: 在管材弯曲变形系统研究中,为了进一步揭示管材弯曲的变形机理并促进管材精确弯曲和数字化弯曲技术的快速发展,利用板弯曲理论在平面应变条件下推导出弯管应变中性层半径和外侧管壁厚变薄量的近似计算公式,并且在考虑弯曲外侧管壁厚变薄的情况下分析弯管应变中性层沿半径方向的变化。根据应变中性层半径与弯曲半径之比小于1的关系,证明弯曲过程中应变中性层向弯曲中心移动。指出应变中性层的内移量与相对弯曲半径成反比。根据部分弯曲试验和有限元模拟结果的比较,证明管壁厚变薄计算相对准确,但由于忽略了垂直于弯曲平面方向的变形影响,且未计入材料性能参数而导致计算值偏大,有待进一步修正。

关键词: 壁厚减薄, 管材弯曲, 相对弯曲半径, 应变中性层

Abstract: In the series study of the tube-bending deformation, in order to reveal the deformation mechanism of tube bending and promote the rapid development of accurate tube bending and digital bending technology, the approximate calculation formulae of the strain neutral layer radius and the thickness attenuation of outer-lateral tube-wall are deduced on the basis of the plate-bending theory and under the plane strain conditions, and the changes of the strain neutral layer along radius are analysed with the consideration of the thinning of thickness of outer-lateral tube-wall. Given that the ratio of the strain neutral layer radius and bending radius is smaller than 1, it is proved that the strain neutral layer moves towards the bending center during the process of tube-bending. In addition, it is pointed that the amount of movement towards center of the strain neutral layer is inversely proportional to the relative bending radius. According to the comparison between the tube-bending test and finite element simulation results, the calculation of tube-wall thinning is proved to be relatively accurate, but since it does not include the effects of deformation perpendicular to the direction of the bending plane in material property parameters, the calculated value is on the high side and needs further modification.

Key words: Relative bending radius, Strain neutral layer, Tube-bending, Tube-wall thickness

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