Submitted:
08 September 2025
Posted:
08 September 2025
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Abstract
Keywords:
1. Introduction
2. Materials and Methods
2.1. Stone composition: microscopy and spectroscopy
2.2. Bulk density
2.3. Experimental Tests
2.3.1. UWPV tests
2.3.2. Mechanical tests
- Uniaxial compression
- Three-point bending
- Splitting test
- F is the peak load
- A is the area of the cross section of the sample
- l is the length among loading points
- L is the length of the contact line
- b is the sample width
- h is the sample thickness
3. Results
3.1. Stone Anisotropy
3.2. Dependence with sample size
3.3. Determination of the mechanical properties of the stone
3.4. Correlation Between Compressive Strength and UWPV
3.5. Correlation between Compressive Strength and Tensile and Flexural Strength
4. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- UNESCO World Heritage Centre. Historic Centre of Cordoba. https://whc.unesco.org/en/list/313. Accessed: 2025-09-04.
- National Geographic. La Mezquita de Córdoba, el esplendor de Al-Andalus. https://historia.nationalgeographic.com.es/a/mezquita-cordoba-esplendor-al-andalus_16265. Accessed: 2025-09-04.
- González Gutiérrez, C. Spolia and Umayyad Mosques: Examples and Meanings in Córdoba and Madinat al-Zahra’. Journal of Islamic Archaeology 2022, 9, 83–104. [CrossRef]
- Barrios Neira, J.; Nieto Cumplido, M.; Palma, J.; Montealegre de Contreras, L. Contribución al estudio litológico de los materiales empleados en monumentos de Córdoba de distintas épocas. Arqueología de la arquitectura 2003, pp. 47–54.
- Tejedor, B.; Lucchi, E.; Bienvenido-Huertas, D.; Nardi, I. Non-destructive techniques (NDT) for the diagnosis of heritage buildings: Traditional procedures and futures perspectives. Energy and Buildings 2022, 263, 112029. [CrossRef]
- Matias, M.; Almeida, F.; Moura, R.; Barraca, N. High resolution NDT in the characterization of the inner structure and materials of heritage buildings walls and columns. Construction and Building Materials 2021, 267, 121726. [CrossRef]
- Patil, S.; Kasthurba, A.; Patil, M. Evaluation of heritage stone deterioration through non-destructive techniques (ultrasonic pulse velocity, rebound hammer test, SEM, and X-ray diffraction). In Diagnosis of Heritage Buildings by Non-Destructive Techniques; Elsevier, 2024; pp. 529–550. [CrossRef]
- Martini, R.; Carvalho, J.; Mesquita, E.; Arêde, A.; Varum, H. Sonic test singularities of granite stone masonries. Construction and Building Materials 2023, 397, 132391. [CrossRef]
- Foorginejad, A.; Taheri, M.; Mollayi, N. A Non-destructive Ultrasonic Testing Approach for Measurement and Modelling of Tensile Strength in Rubbers. International Journal of Engineering, Transactions C: Aspects 2020, 33, 2549–2555.
- Pozhanka, M.; Zagrai, A.; Baez Avila, F.; Drach, B. Application of Ultrasonic Testing for Assessing the Elastic Properties of PLA Manufactured by Fused Deposition Modeling. Applied Sciences 2024, 14. [CrossRef]
- Martini, R.; Carvalho, J.; Arêde, A.; Varum, H. Correlation Between Sonic and Mechanical Test Results on Stone Masonry Walls. In Proceedings of the Structural Analysis of Historical Constructions; Aguilar, R.; Torrealva, D.; Moreira, S.; Pando, M.A.; Ramos, L.F., Eds., Cham, 2019; pp. 456–464. [CrossRef]
- ukomski, T.; Stepinski, T. Steel hardness evaluation based on ultrasound velocity measurements. Insight: Non-Destructive Testing and Condition Monitoring 2010, 52, 592–596. [CrossRef]
- Mikulic, D.; Sekulic, D.; Štirmer, N.; Bjegovic, D. Application of ultrasonic methods for early age concrete characterisation. In Proceedings of the 8th International Conference of the Slovenian Society for Non-Destructive Testing: Application of Contemporary Non-Destructive Testing in Engineering, 2005, pp. 99–108.
- Amjad, U.; Saadeh, M.; Raqeeb, A.M.; Bader, N.; Alnuaimi, H.; Irshida, M.R. CHARACTERIZATION AND EVALUATION OF MORTAR COMPOSITES USING LINEAR AND NONLINEAR ULTRASONIC TECHNIQUES. In Proceedings of the Proceedings of 2024 51st Annual Review of Progress in Quantitative Nondestructive Evaluation, QNDE 2024, 2024. [CrossRef]
- Sánchez, J.A.; Spalvier, A.; Pérez, N. Ultrasonic Characterization of Pervious Concrete. In Proceedings of the 2023 15th IEEE International Conference on Industry Applications, INDUSCON 2023 - Proceedings, 2023, pp. 1284–1288. [CrossRef]
- Benavente, D.; Fort, R.; Gomez-Heras, M. Improving uniaxial compressive strength estimation of carbonate sedimentary rocks by combining minimally invasive and non-destructive techniques. International Journal of Rock Mechanics and Mining Sciences 2021, 147. [CrossRef]
- Bourgeois, I.; Gregorio, L.; Rodrigues, H.; Fonseca, J.; Tavares, A.; Costa, A. Application of Sonic Tests and Modal Identification in the Characterization of Masonry Walls. Applied Sciences 2023, 13. [CrossRef]
- Ortega, J.; Stepinac, M.; Lulić, L.; Núñez García, M.; Saloustros, S.; Aranha, C.; Greco, F. Correlation between sonic pulse velocity and flat-jack tests for the estimation of the elastic properties of unreinforced brick masonry: Case studies from Croatia. Case Studies in Construction Materials 2023, 19. [CrossRef]
- Ortega, J.; Meersman, M.F.; Aparicio, S.; Liébana, J.C.; Anaya, J.J.; González, M. Influence of stress level and damage on sonic tomography imaging and on the estimation of deformability properties of historic stone masonry. Construction and Building Materials 2024, 417. [CrossRef]
- Barrios Neira, J.; Montealegre, L.; Ortega, A.; Meroño, J.E.; Aguilera, M.L. Biocalcarenites as construction materials in Santa Marina de Aguas Santas Church at Cordoba, Spain. Materiales de Construcción 2009, 59, 125–134. [CrossRef]
- Mármoles y Piedras Gutierrez. Mármoles y Piedras Gutierrez. http://mypg.es/index2.html. Accessed: 2025-09-04.
- AENOR. UNE-EN 1936:2007 - Natural stone test methods - Determination of real density and apparent density, and of total and open porosity. Standard UNE-EN 1936:2007, Asociación Española de Normalización (AENOR), 2007.
- Huesca-Tortosa, M.; Navarro-Jiménez, M.; Rodríguez-García, J. Evaluation of Eco-Friendly Consolidating Treatments in Pugliese Tuff (Gravina Calcarenite). Buildings 2024, 14, 1–24. [CrossRef]
- AENOR. UNE-EN 12390-1:2022 - Ensayos de hormigón endurecido. Resistencia a tracción indirecta de probetas. Standard UNE-EN 12390-1:2022, Asociación Española de Normalización (AENOR), 2022.
- European Committee for Standardization (CEN). EN 772-1:2011+A1:2015 - Methods of test for masonry units – Part 1: Determination of compressive strength. Standard EN 772-1:2011+A1:2015, CEN, Brussels, 2015.














| Ashlar | Sample | Density (kg/) | |
|---|---|---|---|
| Immersion | Geometric | ||
| 1 | 1.1 | 1822 | 1798 |
| 1.2 | 1808 | 1776 | |
| 2 | 2.1 | 1815 | 1789 |
| 2.2 | 1808 | 1783 | |
| 3 | 3.1 | 1841 | 1809 |
| 3.2 | 1829 | 1793 | |
| Ashlar | Mean Density (kg/) |
|---|---|
| 1 | 1814 |
| 2 | 1833 |
| 3 | 1858 |
| 4 | 1905 |
| 5 | 1875 |
| 6 | 1786 |
| Type of test | Number of tests |
|---|---|
| Uniaxial compression | 62 |
| Three-point bending | 20 |
| Splitting | 40 |
| Type of test | Number of tests | Testing direction |
|---|---|---|
| Uniaxial compression | 20 | A |
| 20 | B | |
| Ultrasonic | 40 | A |
| 40 | B |
| Type of test | Ashlar tested | Number of tests | Sample dimensions (mm) |
|---|---|---|---|
| Ultrasonic | 1 to 3 | 40 | 50x50x50 |
| 40 | 70x70x70 | ||
| 4 to 6 | 20 | 50x50x100 | |
| 24 | 100x100x200 | ||
| Compression | 1 to 3 | 20 | 50x50x50 |
| 20 | 70x70x70 | ||
| 4 to 6 | 10 | 50x50x100 | |
| 12 | 100x100x200 | ||
| Three-point bending | 1 to 3 | 20 | 50x50x300 |
| Splitting | 1 to 3 | 40 | 50x50x100 |
| 1 | 2 | 3 | 4 | 5 | 6 | Mean | CoV (%) | |
|---|---|---|---|---|---|---|---|---|
| UWPV (m/s) | 2639.11 | 2522.23 | 2487.59 | 2818.06 | 2723.89 | 2286.80 | 2638.18 | 6.69 |
| (MPa) | 6.11 | 5.46 | 5.80 | 9.35 | 7.80 | 4.59 | 6.52 | 24.44 |
| (MPa) | 2.02 | 1.94 | 1.96 | 1.97 | 1.79 | |||
| (MPa) | 0.70 | 0.69 | 0.70 | 0.70 | 0.50 |
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