'Size effect' related bending formability of thin-walled aluminum alloy tube

Heng Li, He Yang, Zhiyong Zhang, Zekang Wang

Research output: Contribution to journalArticlepeer-review

38 Scopus citations

Abstract

Aluminum alloy (Al-alloy) thin-walled (D/t > 20, diameter D, wall thickness t) bent tubes have attracted increasing applications in many industries with mass quantities and diverse specifications due to satisfying high strength to weigh ratio requirements of product manufacturing. However, due to nonlinear nature of bending with coupling effects of multiple factors, the similarity theory seems not applicable and there occurs a challenge for efficient and reliable evaluation of the bending formability of thin-walled tube with various bending specifications. Considering the unequal deformation and three major instabilities, the bending formability of thin-walled Al-alloy tube in changing tube sizes such as D and t are clarified via both the analytical and FE modeling/simulations. The experiments of rotary draw bending are conducted to validate the theoretical models and further confirm 'size effect' related bending formability. The major results show that (1) The anti-wrinkling capability of tube decreases with the larger D and smaller t, and the effect significance of t is larger than that of D even under rigid supports; (2) The wall thinning increases with the larger D and smaller t, and this tendency becomes much more obvious under rigid supports; (3) The cross-section deformation increases with the larger D and smaller t according to the analytical model obtained intrinsic relationship, while this tendency becomes opposite due to the nonlinear role of mandrel die; (4) The size factor D/t can be used as a nondimensional index to evaluate both the bending formability regarding the wall thinning and cross-section deformation.

Original languageEnglish
Pages (from-to)230-241
Number of pages12
JournalChinese Journal of Aeronautics
Volume26
Issue number1
DOIs
StatePublished - Feb 2013

Keywords

  • Al-alloy
  • Bending formability
  • Flattening
  • Size effect
  • Tube bending
  • Wall thinning
  • Wrinkling

Fingerprint

Dive into the research topics of ''Size effect' related bending formability of thin-walled aluminum alloy tube'. Together they form a unique fingerprint.

Cite this