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Updated: Oct 20, 2025

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Published on: October 19, 2022
Fibre-Cement Panel Ventilated Façade Smart Control System.
Anna Adamczak-Bugno1, Grzegorz Świt1, Aleksandra Krampikowska1
1Faculty of Civil Engineering and Architecture, Kielce University of Technology, 25-314 Kielce, Poland.
This study introduces a smart control system for fibre-cement ventilated façades using acoustic emission (AE) analysis. The system monitors material integrity by classifying AE signals, offering a non-destructive method to assess mechanical variations.
Area of Science:
- Materials Science
- Structural Engineering
- Non-Destructive Testing
Background:
- Fibre-cement panels are widely used in ventilated façades.
- Assessing the mechanical integrity of these panels, especially under load, is crucial for structural safety and performance.
- Existing methods may be destructive or lack real-time monitoring capabilities.
Purpose of the Study:
- To design a smart control system for fibre-cement panel ventilated façades.
- To utilize the acoustic emission (AE) method for monitoring material behavior.
- To develop a non-destructive methodology for assessing variations in mechanical parameters.
Main Methods:
- Samples of full-size fibre-cement panels were subjected to three-point bending tests.
- Acoustic emission (AE) signals were acquired during the tests.
- AE signals were statistically classified into four classes using the k-means algorithm, correlating them with material processes under load.
Main Results:
- Distinct characteristics and temporal distributions were identified for different AE signal classes.
- The k-means algorithm effectively classified AE signals related to material processes.
- The study demonstrated the applicability of the AE method for assessing mechanical variations in fibre-cement composites.
Conclusions:
- The acoustic emission method is applicable for assessing variations in the mechanical parameters of fibre-cement panels.
- A novel methodology for non-destructive assessment of fibre-cement panel mechanical properties was developed.
- The proposed smart control system offers a viable approach for real-time monitoring and integrity assessment of façade systems.
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