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ویژگی های تغییر حجمی و رفتار برشی خاک های رسی مخلوط | ||
نشریه مهندسی عمران و محیط زیست دانشگاه تبریز | ||
مقاله 7، دوره 42.4، شماره 69، اسفند 1391، صفحه 67-74 اصل مقاله (476.87 K) | ||
نوع مقاله: یادداشت پژوهشی | ||
شناسه دیجیتال (DOI): --- | ||
نویسندگان | ||
حسین سلطانی جیقه* 1؛ کاوه جعفریان2؛ ساناز جاجانی2 | ||
1دانشگاه شهید مدنی آذربایجان - دانشکده فنی | ||
2دانشکده فنی - دانشگاه شهید مدنی آذربایجان | ||
کلیدواژهها | ||
خاک های رسی مخلوط؛ انقباض؛ مقاومت برشی؛ آزمایش های آزمایشگاهی | ||
مراجع | ||
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]6[ سلطانیجیقه، ح.، سروش، ع.، "رفتار خاکهای رسی مخلوط تحت بارگذاری یکنواخت"، نشریه علمی-پژوهشی امیرکبیر، 1386، ج-67، 21-29. [7] Soroush, A., Soltani Jigheh, H. ″Pre- and Post-cyclic Behavior of Mixed Clayey Soils″, Canadian Geotechnical Journal, 2009, 46, 115-1128. [8] Kleppe, J. H., Olson, R. E., ″Desiccation Cracking of Soil Barriers″, Hydraulic Barriers in Soil and Rock, 1985, 874, 263-75. [9] Boivin, P., Garnier, P., Tessier, D., ″Relationship Between Clay Content, Clay Type and Shrinkage Properties of Soil Samples″, Soil Science Society of America Journal, 2004, 68, 1145-153. [10] Indrawan, I. G. B., Rahardjo, H., Leong, E. C., ″Effects of Coarse-Grained Materials on Properties of Residual Soil″, Engineering Geology, 2006, 82, 154-164. [11] Krisdani, H., Rahardjo, H., Leong, E. C., ″Effects of Different Drying Rates on Shrinkage Characteristics of a Residual Soil and Soil Mixtures″, Engineering Geology, 2008, 102, 31-37. [12] Trollope, D. H., Zafar, S. M., ″A Study of the Shear Strength of Saturated Sand, and Sand-Clay Mixtures, in Triaxial Compression″, The 2nd Australia-New Zealand Conference, S.M.F.E, 1953. [13] Holtz, W. G., Willard, M., ″Triaxial Shear Characteristics of Clayey Gravel Soils″, Journal of Soil Mechanics and Foundation Engineering, ASCE, 1956, 82, 143-149. [14] Ola, S. A., ″Stabilization of Maiduguri Black Cotton Soils of Nigeria with Sand″, Bulletin of Engineering Geology and the Environment, 1981, 24 (1), 145-150 [15] Nakase, A., Nakanodo, H. Kusakabe, O., ″Influence of Soil Type on Pore Pressure Response to Cyclic Loading″, The 5th Japan Earthquake Engineering Symposium, 1956, pp 593-600. [16] Nakase, A. Kamei, T. ″Undrained Shear Strength Anisotropy of Normally Consolidated Cohesive Soils″, Soils and foundations, 1983, 23, 91-101. [17] Vallejo, L. E., Mawby, R., ″Void Ratio Influence on the Shear Strength of Granular Material Clay Mixtures″, Engineering Geology, 2000, 58, 125-136. [18] Vallejo, L. E., Zhou, Y., ″The Mechanical Properties of Simulated Soil-Rock Mixtures″, The 13th International Conference on Soil Mechanic and Foundation Engineering, New Dehli, India, A.A. Balkema, Rotterdam, The Netherlands, 1994, Vol. I, pp 365-368. [19] Jafari, M. K. Shafiee, A., ″Mechanical Behavior of Compacted Composite Clays″, Canadian Geotechnical Journal, 2004, 41, 1152-1167. [20] ASTM Standard D 2487, ″Standard Practice for Classification of Soils for Engineering Purposes (Unified Soil Classification System)″, American Society of Testing and Materials, West Conshohocken, Pa., 2004. [21] ASTM Standard D 698, ″Standard Test Method for Laboratory Compaction Characteristics of Soil using Standard Effort″, American Society of Testing and Materials, West Conshohocken, Pa, 2004. [22] Briaud, J. L., Zhange, X., Moon, S., ″Shrink Test-Water Content Method for Shrink and Swell Predictions″, Journal of Geotechnical and Geoenvironmental Engineering, 2003, 129 (7), 590-600. | ||
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