Rheological Properties of Sandy Soils

Article Preview

Abstract:

Modern models of soils to describe elastic-viscoplastic properties do not always lead to the desired results , especially when it is necessary to take into account the time factor. In particular, one cannot always describe the rheological model and creep and relaxation , as well as get extreme at kinematic mode loading. This is due to the fact that the deformation in the soil medium is accompanied by complex physical and physico-chemical phenomena , changes in the orientation of each mineral particles in space and time , their mutual offset seal ( hardening ) and decompression ( softening ) . Quantitative assessment of buildings and facilities associated with the calculation of the stress - strain state ( SSS ) foundation soils subject to numerous factors , including the physical feature of the power and influence ( statics, kinematics, dynamics ) and mechanical properties of soils under such effects ( creep , ductility ) .In the present paper the results of scientific studies of the rheological properties of sandy soils. The purpose of these studies - determination of viscosity sandy soils kinematic and dynamic triaxial test mode. A technique for determining the viscosity of soils results in triaxial kinematic mode (with speed control vertical movements). The paper considers the problem of estimating the impact of the dynamic loads on the viscosity of sandy soils.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 1073-1076)

Pages:

1673-1679

Citation:

Online since:

December 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Ishihara K. Behavior of soils during earthquakes Lane. Translated from English. / Ed. AB Fadeev, MB Lisyuk / NPO Georekonstrukcija-Fundamentproekt., St. Petersburg. 2006. P. 384. (In Russian).

Google Scholar

[2] Maxfield B. Essential MATHCAD for Engineering, Science, and Math / Moscow. Academic Press. 2009. P. 528. (In English).

Google Scholar

[3] Potapov A.D., Platov N.A., Lebedeva M.D. Sandy soils / Moscow. Izdatel'stvo Associacii stroitel'nyh vuzov. 2009. P. 256. (In Russian).

Google Scholar

[4] Ter-Martirosjan Z.G. Soil mechanics / Moscow. Izdatel'stvo Associacii stroitel'nyh vuzov. 2009. P. 552. (In Russian).

Google Scholar

[5] Ter-Martirosjan Z.G. Rheological parameters of soils and ground structures calculations / Moscow. Strojizdat. 199. P. 200. (In Russian).

Google Scholar

[6] Ter-Martirosjan Z.G., Ter-Martirosjan A.Z. Creep deformation of soils under cyclic and vibration impacts / Proceedings of the XVIII Polish - Russian - Slovak seminar Theoretical Foundations of construction, Moscow - Arkhangelsk 01-05. 07. 2009. - Warszawa. 2009. pp.473-480.

Google Scholar

[7] Ter-Martirosjan Z.G., Ter-Martirosjan A.Z., Mirnyj A. Ju., Sobolev E.S., Anzhelo G.O. The influence of the frequency and duration of vibration in the triaxial vibrostabilometre the development of further deformation of sandy soils / Collected papers of scientific and technical conference "Modern geotechnology in construction and scientific and technical support. Civil Engineering, St. Petersburg. 2014. pp.450-455.

Google Scholar

[8] Voznesenskij E.A. Dynamic instability of soils / Moscow. Jeditorial URSS. 1999. P. 264. (In Russian).

Google Scholar