Cebasek, Vladimir

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orcid::0000-0002-8667-2339
  • Cebasek, Vladimir (1)
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Determination of Mechanical Properties of Altered Dacite by Laboratory Methods

Rupar, Veljko; Cebasek, Vladimir; Milisavljević, Vladimir; Stevanović, Dejan; Živanović, Nikola

(2021)

TY  - JOUR
AU  - Rupar, Veljko
AU  - Cebasek, Vladimir
AU  - Milisavljević, Vladimir
AU  - Stevanović, Dejan
AU  - Živanović, Nikola
PY  - 2021
UR  - https://omorika.sfb.bg.ac.rs/handle/123456789/1185
AB  - This paper presents a methodology for determining the uniaxial and triaxial compressive strength of heterogeneous material composed of dacite (D) and altered dacite (AD). A zone of gradual transition from altered dacite to dacite was observed in the rock mass. The mechanical properties of the rock material in that zone were determined by laboratory tests of composite samples that consisted of rock material discs. However, the functional dependence on the strength parameter alteration of the rock material (UCS, intact UCS of the rock material, and m(i)) with an increase in the participation of "weaker" rock material was determined based on the test results of uniaxial and triaxial compressive strength. The participation of altered dacite directly affects the mode and mechanism of failure during testing. Uniaxial compressive strength (sigma(UCS)(ci)) and intact uniaxial compressive strength (sigma(TX)(ci)) decrease exponentially with increased AD volumetric participation. The critical ratio at which the uniaxial compressive strength of the composite sample equals the strength of the uniform AD sample was at a percentage of 30% AD. Comparison of the obtained exponential equation with practical suggestions shows a good correspondence. The suggested methodology for determining heterogeneous rock mass strength parameters allows us to determine the influence of rock material heterogeneity on the values sigma(UCS)(ci), sigma(TX)(ci), and constant m(i). Obtained sigma(TX)(ci) and constant m(i) dependences define more reliable rock material strength parameter values, which can be used, along with rock mass classification systems, as a basis for assessing rock mass parameters. Therefore, it is possible to predict the strength parameters of the heterogeneous rock mass at the transition of hard (D) and weak rock (AD) based on all calculated strength parameters for different participation of AD.
T2  - Minerals
T1  - Determination of Mechanical Properties of Altered Dacite by Laboratory Methods
IS  - 8
VL  - 11
DO  - 10.3390/min11080813
UR  - conv_1572
ER  - 
@article{
author = "Rupar, Veljko and Cebasek, Vladimir and Milisavljević, Vladimir and Stevanović, Dejan and Živanović, Nikola",
year = "2021",
abstract = "This paper presents a methodology for determining the uniaxial and triaxial compressive strength of heterogeneous material composed of dacite (D) and altered dacite (AD). A zone of gradual transition from altered dacite to dacite was observed in the rock mass. The mechanical properties of the rock material in that zone were determined by laboratory tests of composite samples that consisted of rock material discs. However, the functional dependence on the strength parameter alteration of the rock material (UCS, intact UCS of the rock material, and m(i)) with an increase in the participation of "weaker" rock material was determined based on the test results of uniaxial and triaxial compressive strength. The participation of altered dacite directly affects the mode and mechanism of failure during testing. Uniaxial compressive strength (sigma(UCS)(ci)) and intact uniaxial compressive strength (sigma(TX)(ci)) decrease exponentially with increased AD volumetric participation. The critical ratio at which the uniaxial compressive strength of the composite sample equals the strength of the uniform AD sample was at a percentage of 30% AD. Comparison of the obtained exponential equation with practical suggestions shows a good correspondence. The suggested methodology for determining heterogeneous rock mass strength parameters allows us to determine the influence of rock material heterogeneity on the values sigma(UCS)(ci), sigma(TX)(ci), and constant m(i). Obtained sigma(TX)(ci) and constant m(i) dependences define more reliable rock material strength parameter values, which can be used, along with rock mass classification systems, as a basis for assessing rock mass parameters. Therefore, it is possible to predict the strength parameters of the heterogeneous rock mass at the transition of hard (D) and weak rock (AD) based on all calculated strength parameters for different participation of AD.",
journal = "Minerals",
title = "Determination of Mechanical Properties of Altered Dacite by Laboratory Methods",
number = "8",
volume = "11",
doi = "10.3390/min11080813",
url = "conv_1572"
}
Rupar, V., Cebasek, V., Milisavljević, V., Stevanović, D.,& Živanović, N.. (2021). Determination of Mechanical Properties of Altered Dacite by Laboratory Methods. in Minerals, 11(8).
https://doi.org/10.3390/min11080813
conv_1572
Rupar V, Cebasek V, Milisavljević V, Stevanović D, Živanović N. Determination of Mechanical Properties of Altered Dacite by Laboratory Methods. in Minerals. 2021;11(8).
doi:10.3390/min11080813
conv_1572 .
Rupar, Veljko, Cebasek, Vladimir, Milisavljević, Vladimir, Stevanović, Dejan, Živanović, Nikola, "Determination of Mechanical Properties of Altered Dacite by Laboratory Methods" in Minerals, 11, no. 8 (2021),
https://doi.org/10.3390/min11080813 .,
conv_1572 .
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