Abstract

Abstract This paper presents thirteen square columns to study the behavior of nano-concrete-filled steel tubular columns with end plates after lateral impact. The failure modes of the square columns subjected to lateral impact damage or not subjected to lateral impact damage were compared. The lateral impact loading height, steel tubular thickness, and column height were set as the test parameters in these tests. The effects of test parameters on the ultimate capacity, initial stiffness, and ductility of columns are discussed in this paper. The bearing capacity of square columns is decreased because of the lateral impact loading which can also be concluded from the test results. And with the steel tube thickness increasing, the bearing capacity and initial stiffness of columns are increased and ductility has no obvious change. However, with the column height increasing, the bearing capacity and stiffness of columns are decreased and ductility is increased. Furthermore, the strain development of the columns under axial compressive loading is also discussed in the paper. The results indicated that the corner of the square column is more easily damaged under compressive loading. According to the test results, the calculated formula is proposed to predict the ultimate capacity of nano-concrete-filled steel tubular columns with end plates after lateral impact. The calculated results have a good agreement with the test results.

Highlights

  • This paper presents thirteen square columns to study the behavior of nano-concrete-filled steel tubular columns with end plates after lateral impact

  • The effects of lateral impact loading, steel tubular thickness, and square column height on mechanical behavior of nano-concrete-filled steel tubular columns with end plates are studied in this paper

  • The following conclusions can be obtained from the analysis: 1. Ultimate capacity of nano-concrete-filled steel tubular columns with end plates is greatly decreased because of the lateral impact loading

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Summary

Introduction

Abstract: This paper presents thirteen square columns to study the behavior of nano-concrete-filled steel tubular columns with end plates after lateral impact. According to the test results, the calculated formula is proposed to predict the ultimate capacity of nano-concrete-filled steel tubular columns with end plates after lateral impact. The specimens with three test parameters of different impact height, steel tubular thickness, and column height are designed to study the behavior of nano-concrete-filled steel tubular columns with end plates. The ultimate capacity of nano-concrete-filled steel tubular columns with end plates after lateral impact could be estimated by the calculated formula presented in this paper. It is necessary to carry out the impact test to study the behavior of nano-concrete-filled steel tubular columns with end plates after lateral impact. The result of this study can provide some reference for the follow-up research

Experimental program
Preparation of the specimens
Test materials
Lateral impact test
Test results
Failure modes
Load–displacement curves
Load–strain curves
Ultimate capacity
Initial stiffness
Ductility
Calculate formula
Findings
Conclusion
Full Text
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