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April 24, 2026Vibroengineering PROCEDIA0 citationsOpen Access

Dynamic assessment of through-cracked laminated glass elements under repeated impacts

NCNicola CellaCBChiara Bedon

Key Points

  • To investigate the dynamic behavior and post-breakage performance of through-cracked laminated glass under impact.
  • Conducted repeated hard-body impacts on small-scale laminated glass elements in a three-point-bending setup.
  • Evaluated residual bending stiffness using modal analyses and roving hammer tests before and after impacts.
  • Utilized finite element numerical modelling to support experimental findings.
  • Identified distinct degradation patterns in laminated glass configurations due to impact.
  • Demonstrated relationships between damage severity and changes in fundamental vibration frequency.
  • Quantified how different interlayers affect the bending stiffness post-impact.

Abstract

Assessing the post-breakage performance of fractured laminated glass (LG) is challenging due to the complexity of damage progression. This study investigates the dynamic behavior of small-scale, through-cracked LG elements composed of two layers of annealed glass, bonded with different interlayers. Using a three-point-bending setup, the specimens were subjected to ten repeated hard-body impacts. To quantify the residual bending stiffness as a function of damage severity, experimental modal analyses were conducted via roving hammer tests, prior to and following each impact. The fundamental vibration frequency was utilized as preliminary diagnostic parameter. Experimental frequency estimates, supported by simplified finite element (FE) numerical modelling, reveal markedly distinct degradation patterns for the tested configurations.

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Cite This Study

Cella et al. (2026) studied this question.

synapsesocial.com/papers/69eb0ac4553a5433e34b4b6ehttps://doi.org/10.21595/vp.2026.26345
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