SKIN FRICTION BETWEEN UNDISTURBED OVER CONSOLIDATED SILTY CLAY SOILS AND CONCRETE

محتوى المقالة الرئيسي

Azad Abbas Ahmed
Zuhair Kadhim JahanGer

الملخص

Up to date, in many foundation design problems (especially for piles foundation), the shear strength (skin friction) between soil and construction materials of the foundation was usually estimated or correlated without any direct methods for measurement.
The modern trend is to establish skin friction coefficients through laboratory experiments in which the factors influencing the results may be controlled quantitatively.
In this study strain controlled Direct Shear Tests were performed using shear to simulate the shear behavior area between concrete (foundation materials) and undisturbed over consolidated silty clay, to determine the shear strength of soil – foundation interface, considering the following variables : (1) Concrete, smooth surface condition, (2) Undisturbed over consolidated silty clay, (3) Variation of the normal load between the friction surface. The tests conveniently revealed both shear strength parameters as for soil test (cohesion and angle of internal friction), and interface angle of friction was in the range of 14° to 17°, while the adhesion was in the range of 13 to 16 kPa.
The ultimate shear strength was mobilized through 4 to 7 mm displacement in the direction of shear slip; this was a great advantage of Direct Shear Test performance.

تفاصيل المقالة

كيفية الاقتباس
"SKIN FRICTION BETWEEN UNDISTURBED OVER CONSOLIDATED SILTY CLAY SOILS AND CONCRETE" (2008) مجلة الهندسة, 14(04), ص 3068–3076. doi:10.31026/j.eng.2008.04.15.
القسم
Articles

كيفية الاقتباس

"SKIN FRICTION BETWEEN UNDISTURBED OVER CONSOLIDATED SILTY CLAY SOILS AND CONCRETE" (2008) مجلة الهندسة, 14(04), ص 3068–3076. doi:10.31026/j.eng.2008.04.15.

تواريخ المنشور

المراجع

Acar, Y. B., Durgunoglu, H. T. and Tumay, M. T. (1982) "Interface Properties of Sand." Journal of Geotechnical Engineering, ASCE, Vol. 108, No. 4, 648-654.

Ampera, B. and Aydogmus, T. (2005) "Skin Friction between Peat and Silt Soils with Construction Materials." Ejge Paper, http://www.ejge.com/2005.

American Society for Testing and Materials,ASTM. (1988). Annual Book of Standards, sec. 4, Vol. 04.08, West Conshohocken, Pa.

Bowles, J, E. (1988)."Foundation Analysis and Design." 4th edition, McGraw-Hill, Inc.

Budhu, M. (2000)."Soil Mechanics and Foundations." John Wiley and Sons, Inc, New York.

Das, B. M. (2002)."Principles of Geotechnical Engineering." 5th edition, Brooks/Cole, pp315-322.

Lambe, T.W. and Whitman, R.V. (2000) "Soil Mechanics." John Wiley and Sons, pp. 119-120.

المؤلفات المشابهة

يمكنك أيضاً إبدأ بحثاً متقدماً عن المشابهات لهذا المؤلَّف.