期刊文献+

Effect of process parameters on steel tube roundness in straightening process

原文传递
导出
摘要 The inclined six-roll tube straightener is an important equipment for the finishing line.It can not only straighten the steel pipe,but also finish the ovality of the cross section.In the actual straightening process,the cross section of the tube is prone to deform,that is,the round ness is not good.The flatteni ng displacement is an import a nt parameter to control cross-section forming of tube.According to the established mechanical model,the analytical calculation equations of the flattening force and the flattening displacement were derived using the energy method.Based on the finite element simulation data,the ratios of the finite element results of the什attening force to the analytical ones were fitted.The correlation coefficient after fitting is greater than 99%,and the fitting effect is excelleni.The flattening experiment was carried out on tubes of different materials and different specifications,and the setting method of the optimal flattening displacement during straightening process was obtained.In the actual straightening process,using this flattening displacement,the ovality of straightened steel tube is less than 0.3%.Therefore,the proposed method can provide a reference for the flattening displacement in the actual straightening process.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2020年第11期1270-1283,共14页 钢铁研究学报(英文版)
基金 National Key Research and Development Program of China(Grant No.2018YFB1308700) Applied Basic Research Programs of Shanxi Province(Grant Nos.201901D111244 and 201901D211311) Major Science and Technology Projects of Shanxi Province(Grant No.20181102016).
  • 相关文献

参考文献1

二级参考文献16

  • 1A. Mutrux, B. Berisha, P. Horan, J. Mater. Process. Technol. 211 (2011) 1448-1456.
  • 2Z. Q. Zhang, Y.H. Yan, H.L. Yang, Chin. J. Mech. Eng. 49 (2013) No. 11, 160-168.
  • 3L.G. Brazier, Proc. R. Soc. Lond. A-Math. Phy. 116 (1927) No. 773, 104-114.
  • 4E. Reissner, Int. J. Appl. Mech. 26 (1959) 386-392.
  • 5O. Fabian, Int. J. Solids. Struct. 13 (1977) 1257-1270.
  • 6S. V. Levyakov, J. Appl. Mech. -T. ASME 81 (2014) No. 4, 1-9.
  • 7T. ASME 81 (2014) No. 4, C. S. Ades, J. Aeronaut. Sci. 24 (1957) 605-610.
  • 8N. K. Prinja, N. R. Chitkara, Nucl. Eng. Des. 83 (1984) 113- 121.
  • 9A. Mentella, M. Srano, P.I. Mech. Eng. B.J. Eng. 226 (2012) 267 278.
  • 10H. Arabzadeh, M. Zeinoddini, Int. J. Mech. Sci. 75 (2013) 189-199.

共引文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部