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May 1, 2026Applied Sciences0 citationsOpen Access

AE Characteristic-Based Seismic Damage Performance Levels of RC External Beam–Column Joints with Beam Flexural Failure Mode

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ZQZhicai QianCLChen LiTYTianchen Yin

Key Points

  • This research aims to analyze the seismic damage performance of reinforced concrete beam-column joints experiencing beam flexural failure.
  • Two reinforced concrete specimens were tested under constant axial compression and low-cyclic lateral loading.
  • Acoustic emission characteristics such as AE hit, energy, and frequency were measured during the tests.
  • Fiber finite element method simulations were conducted on 432 joints to analyze damage performance levels.
  • Five damage performance levels—no damage, minor damage, medium damage, serious damage, and collapse—were established based on AE monitoring.
  • An empirical expression for the material parameter of the Park–Ang damage model was derived from simulation results.
  • A quantitative AE-based framework was provided for assessing seismic damage in beam-column joints.

Abstract

The purpose of this paper is to investigate the seismic damage performance levels of reinforced concrete (RC) external beam–column joints exhibiting beam flexural failure mode based on acoustic emission (AE) characteristics. To achieve this purpose, two specimens of RC external beam–column joints with beam flexural failure mode were tested under constant axial compression at the column and low-cyclic lateral loading at the end of the beam. During the tests, six AE-based indicators—namely AE hit (HAE), AE energy (EAE), AE count (CAE), amplitude (AAE), rise time (RT), and peak frequency (fp)—were measured using the PCI-2 Acoustic Emission System equipped with R6α piezoelectric sensors. In addition, five damage performance levels, i.e., no damage, minor damage, medium damage, serious damage, and collapse, were proposed based on the analysis of AE monitoring results. After calibration, the fiber finite element method was used to conduct a numerical simulation of 432 joints subjected to lateral loading. An empirical expression for the material parameter of the Park–Ang damage model was presented based on simulated results. Suggested five damage performance levels were used together with a response databank from the numerical analysis to obtain the limit damage values. This work provides a quantitative AE-based framework for seismic damage assessment of RC external beam–column joints with beam flexural failure mode, which can inform performance-based seismic design and post-earthquake safety evaluation.

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Cite This Study

Qian et al. (2026) studied this question.

synapsesocial.com/papers/69f443e8967e944ac5566fd0https://doi.org/10.3390/app16094256
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