4.7 Article

Analytical and numerical studies on impact force profile of RC beam under drop weight impact

期刊

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijimpeng.2020.103743

关键词

Analytical study; Numerical study; Impact force profile; Drop weight; Reinforced concrete beams

资金

  1. Australian Research Council (ARC) via Australian Laureate Fellowship [FL180100196]
  2. Curtin International Postgraduate Research Scholarship (CIPRS)
  3. Curtin Strategic International Research Scholarship (CSIRS)

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The study focuses on impact force profiles of reinforced concrete beams under drop weight impact, investigating the effects of global stiffness and developing a 2DOF analytical model. The developed model is validated by test results and a simplified impact force profile is proposed using empirical equations fitted by analytical study results, showing good agreement with the test data.
Impact force and structural response of reinforced concrete (RC) beams under drop weight impact have been intensively studied and reported in the literature. The prediction of the peak impact force has been well investigated while the study of the overall impact force profile governing the structural response is limited. The impact force parameters acting on a structure including the peak impact force, plateau force, and impact duration all affect the structural responses. This study investigates the impact force profiles from drop weight impact on RC beams. The effects of global stiffness (by changing the beam span and boundary condition) on the impact force profile are numerically studied by using LS-DYNA. A two-degree-of-freedom (2DOF) analytical model is developed for RC beams under drop weight impact by using fiber beam section analysis method to predict the impact force. The developed 2DOF analytical model is validated by drop weight impact test results. With the validated analytical model, a simplified model of impact force profile is then proposed by determining six characteristic points, which are expressed by empirical equations fitted by the analytical parametric study results. The simplified impact force profile predicted by the empirical equations shows a good agreement with the test data.

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