ASTM Standards: D 4253 - 00 Standard test methods for maximum index density and unit weight of soils using a vibratory table
Google Scholar
PN-88/B-04481: Grunty budowlane. Badania próbek gruntu
Google Scholar
Pisarczyk S.: Grunty nasypowe. Właściwości geotechniczne i metody ich badania. Oficyna Wydawnicza Politechniki Warszawskiej, Warszawa, 2004
Google Scholar
Pisarczyk S.: Czynniki wpływające na wibracyjne zagęszczenie gruntów niespoistych. Inżynieria i Budownictwo, 8, 1996, 475-479
Google Scholar
Whitman R.V., Ortigosa P.: Densification of sand by vertical vibration. 4th Word Conference on Earthquake Engineering, Santiago, Chile, 1969, 29-37
Google Scholar
Dobry R., Whitman R.V.: Compaction of sand on a vertically vibrating table. ASTM STP523-EB.7744-1, Baltimore, USA, 1973, 156-170
Google Scholar
Brand E.W.: Some observations on the control of density by vibration. ASTM STP523-EB.7744-1, Baltimore, USA, 1973, 121-132
Google Scholar
Tokue T.: Characteristics and mechanism of vibratory densification of sand and role of acceleration. Soils and Foundations, 16, 3, 1976, 1-18
Google Scholar
Rothenburg L., Bathurst R.J.: Micromechanical features of granular assemblies with planar elliptical particles. Géotechnique, 42, 1, 1992, 79-95
Google Scholar
Santamarina J.C., Shin H.: Friction in Granular Media, in: Meso-scale Shear Physics in Earthquake and Landslide Mechanics. CRC Press, London, 2009, 157-188
Google Scholar
Szajna W.St., Kraiński A.: The influence of roundness of sand particles on macroscopic critical strength of soil medium. International Conference on Continuous Media with Microstructure, Publishing House of Poznań University of Technology, 2015, 73-74
Google Scholar