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Modulus-Suction-Moisture Relationship for Compacted Soils in Postcompaction State
Authors:A Sawangsuriya  T B Edil  P J Bosscher
Affiliation:1Civil Engineer, Dept. of Highways, Road and Pavement Design Division, Bureau of Materials, Analysis and Inspection, Bangkok, Thailand. E-mail: sawangsuriya@gmail.com
2Professor, Dept. of Civil and Environmental Engineering, Univ. of Wisconsin, Madison, WI 53706 (corresponding author). E-mail: edil@engr.wisc.edu
3Deceased; formerly, Professor, Dept. of Civil and Environmental Engineering, Univ. of Wisconsin, Madison, WI 53706.
Abstract:Despite clear evidence, changes in mechanical properties (i.e., stiffness or modulus) of compacted subgrades in response to subgrade moisture regime changes after construction have rarely been investigated in the geotechnical profession. In particular, when in-service assessment of pavement subgrade is made, the modulus-moisture variation should be addressed on the basis of unsaturated soil mechanics. This study presents the unsaturated small-strain modulus behavior of five predominately fine-grained compacted subgrade soils. The small-strain shear modulus (Go) of saturated compacted specimens subjected to a desorption soil-water characteristic curve (SWCC) was evaluated using bender elements. A test apparatus was designed to apply two stress state variables, the net confining pressure and matric suction, during the Go measurements. The relationship between Go and the SWCC under a constant mean net stress was developed. Additionally, the effect of compaction moisture content, compaction energy, and soil type on the Go-SWCC relationship was investigated. Finally, a relationship describing the small-strain modulus behavior of unsaturated compacted soils is proposed.
Keywords:Stiffness  Suction  Soil compaction  Moisture  Soil water  Shear waves  Shear modulus  Compacted soils  Unsaturated soils  
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