Issue 60

M. Vyhlídal et alii, Frattura ed Integrità Strutturale, 60 (2022) 13-29; DOI: 10.3221/IGF-ESIS.60.02

[11] Slivka, V., Vavro, M. (1996). The significance of textural and structural properties of North-Moravian basaltoids for the manufacture of mineral fibres. Ceramics-Silikáty. 40(4), pp. 149 − 159. [12] Malíková, L., Vavro, L., Vavro, M., Keršner, Z. (2019). Evaluation of fracture response of Silesian granite specimens via Effective Crack Model approach and finite element analysis. Procedia Structural Integrity. 23, pp. 487 − 492. DOI: 10.1016/j.prostr.2020.01.133. [13] EN 1936 (2006), Natural stone test methods - Determination of real density and apparent density, and of total and open porosity, European Committee for Standardization, 10 p., (in Czech). [14] EN 13755 (2001), Natural stone test methods - Determination of water absorption at atmospheric pressure, European Committee for Standardization, 9 p., (in Czech). [15] International Society for Rock Mechanics Commission on Testing Methods (1978), Suggested methods for determining sound velocity, International Journal of Rock Mechanics and Mining Sciences  Geomechanics Abstracts, 15(2), 53– 58. [16] International Society for Rock Mechanics Commission on Testing Methods (1979), Suggested methods for determining the uniaxial compressive strength and deformability of rock materials, International Journal of Rock Mechanics and Mining Sciences  Geomechanics Abstracts, 16(2), 137–140. [17] International Society for Rock Mechanics Commission on Testing Methods (1988), Suggested methods for determining the fracture toughness of rock, International Journal of Rock Mechanics and Mining Sciences  Geomechanics Abstracts, 25(2), 71–96. [18] Vavro, L., Sou č ek, K. (2013). Study of the effect of moisture content and bending rate on the fracture toughness of rocks. Acta Geodynamica et Geomaterialia. 10(2), pp. 247 − 253. DOI:10.13168/AGG.2013.0025. [19] Vavro, L., Malíková, L., Frantík, P., Kubeš, P., Keršner, Z., Vavro, M. (2019). An advanced assessment of mechanical fracture parameters of sandstones depending on the internal rock texture features. Acta Geodynamica et Geomaterialia. 16(2), pp. 157 − 168. DOI: 10.13168/AGG.2019.0013. [20] Vyhlídal, M., Rozsypalová, I., Majda, T., Dan ě k, P., Šimonová, H., Kucharczyková, B., Keršner, Z. (2019). Fracture response of fine-grained cement-based composite specimens with special inclusions. Solid State Phenomena. 292, pp. 63–68. DOI: 10.4028/www.scientific.net/SSP.292.63. [21] Goldstein, J., Newbury, D. E., Michael, J. R., Ritchie, N. W. M., Scott, J. H. J., Joy, D. C. (2018). Scanning electron microscopy and X-ray microanalysis. Fourth edition. New York: Springer. DOI: 10.1007/978-1-4939-6676-9. [22] N ě me č ek, J., Králík, V., Vond ř ejc, J. (2013). Micromechanical analysis of heterogeneous structural materials, Cement and Concrete Composite. 36 (1), pp. 85 − 92. DOI: 10.1016/j.cemconcomp.2012.06.015. [23] Oliver, W., Pharr, G. (1992). An improved technique for determining hardness and elastic-modulus using load and displacement sensing indentation experiments. Journal of Materials Research. 7(6), pp. 1564 − 1583. DOI: 10.1557/JMR.1992.1564. [24] Vyhlídal, M.; Klusák, J. (2020). A Crack Approaching the Edge of the Aggregate. Transactions of the VŠB – Technical University of Ostrava, Civil Engineering Series, 20 (2), pp. 47 − 52. DOI: 10.35181/tces-2020-0017. [25] RILEM TC-50 FMC (1985). Determination of the fracture energy of mortar and concrete by means of three-point bend tests on notched beams. Materials and Structures. 18(106), pp. 287–290. DOI: 10.1007/BF02472918. [26] Bourdette, B., Ringot, E., Ollivier, J. P. (1995). Modelling of the transition zone porosity. Cement and Concrete Research. 25(4), pp. 741 − 751. [27] Scrivener, K. L., Crumbie, A. K., Pratt, P. L. (1987). A study of the interfacial region between cement paste and aggregate in concrete. MRS Proceedings. 114. DOI:10.1557/PROC-114-87. [28] Asuero, A. G., Sayago, A., González, A. G. (2007). The Correlation Coefficient: An Overview. Critical Reviews in Analytical Chemistry. 36(1), pp. 41–59. DOI:10.1080/10408340500526766 [29] Kozak, M. (2009). What is strong correlation? Teaching Statistics. 31(3), pp. 85 − 86. DOI: 10.1111/j.1467-9639.2009.00387.x. [30] Akoglu, H. (2018) User's guide to correlation coefficients, Turkish Journal of Emergency Medicine., 18(3), pp. 91-93. DOI: 10.1016/j.tjem.2018.08.001. [31] Ratner, B. (2009). The correlation coefficient: Its values range between 1/ − 1, or do they? Journal of Targeting, Measurement and Analysis for Marketing. 17(2), pp.139 − 142. DOI:10.1057/jt.2009.5. [32] Zhang, Z. X. (2002). An empirical relation between mode I fracture toughness and the tensile strength of rock. International Journal of Rock Mechanics and Mining Sciences. 39(3), pp. 401 − 406. DOI: 10.1016/S1365-1609(02)00032-1.

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