Experiments and numerical prediction on a new type of mild steel damper with separable phase yielding

Wei Qing Liu, Zhuo Jun Miao, Shu Guang Wang, Dong Sheng Du

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

To compensate for the shortcomings of existing mild steel dampers, the shape of energy dissipating steel sheets and their combination type were improved and a new type of mild steel damper with shear-bending combined-stage yielding was presented. The performances of the damper, consisting of shear energy dissipation components and bending energy dissipation components, were analyzed by experiments and finite element simulation. The experimental results show that the damper possesses the stable hysteretic capacity and fatigue resistance capacity, so has strong energy consumption capability and great damping effect. It achieves a two-stage energy-yielding mechanism. The results of numerical simulation are in good agreement with those of experiments. This kind of damper has such advantages as obvious phased energy character, superior performance and simple structure. It can be designed by the method of module and assemble. The damper would have wide application prospect in future.

Original languageEnglish
Pages (from-to)87-92
Number of pages6
JournalZhendong yu Chongji/Journal of Vibration and Shock
Volume35
Issue number3
DOIs
StatePublished - 15 Feb 2016

Keywords

  • Hysteretic behavior
  • Low cyclic loading test
  • Mild steel damper
  • Numerical simulation

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