The choice of the ratio K between the uniaxial compression strength (?f) and the size-corrected point load strength (IS,50) for the estimate of ?f from point load tests can have significant consequences on design issues. Several Authors indicated that K ratio departs significantly from the typical suggested values, especially in weak rocks. Experimental evidences from this study confirm that significant variations of K occur even for the same material. Therefore the recourse to literature data of the K ratio for rock materials similar to those tested is possible only if the dependence of K on physical/textural characters of the rock is accounted for. With reference to a scoriaceous lava with widespread and irregularly distributed macropores, the K coefficient was found to be dependent on porosity n, similarly to other porous rocks, through an inverse (e.g. a negative power-law) function. The relationship was successively extended to the same type of rocks from worldwide, obtaining very low confidence regions for the function exponent. The present results indicate that lithology and texture strongly affect both shear and tensile modes of failure.

Point load testing for classification of porous effusive rocks

P Tommasi;
2013

Abstract

The choice of the ratio K between the uniaxial compression strength (?f) and the size-corrected point load strength (IS,50) for the estimate of ?f from point load tests can have significant consequences on design issues. Several Authors indicated that K ratio departs significantly from the typical suggested values, especially in weak rocks. Experimental evidences from this study confirm that significant variations of K occur even for the same material. Therefore the recourse to literature data of the K ratio for rock materials similar to those tested is possible only if the dependence of K on physical/textural characters of the rock is accounted for. With reference to a scoriaceous lava with widespread and irregularly distributed macropores, the K coefficient was found to be dependent on porosity n, similarly to other porous rocks, through an inverse (e.g. a negative power-law) function. The relationship was successively extended to the same type of rocks from worldwide, obtaining very low confidence regions for the function exponent. The present results indicate that lithology and texture strongly affect both shear and tensile modes of failure.
2013
Istituto di Geologia Ambientale e Geoingegneria - IGAG
Inglese
Proceedings of the 15th European Conference on Soil Mechanics and Geotechnical Engineering
15th European Conference on Soil Mechanics and Geotechnical Engineering
303
308
6
978-1-61499-198-4
IOS Press
Amsterdam
PAESI BASSI
No
12-15 settembre 2011
Atene
Point Load test. Uniaxial compression Test
porous rock
effusive rock
2
none
Tommasi, P; Rotonda, T
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/265869
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