점성토의 회복탄성계수($M_r$)에 대한 포화도의 영향

Effect of Saturation on Resilient Modulus of Cohesive soils as subgrade

  • 김동규 (한국건설기술연구원 지반연구실) ;
  • Kim, Dong-Gyou (Geotechnical Engineering Division, Korea Institute of Construction Technology) ;
  • Croft, Frank M. (Dept. of Civil Engineering, The Ohio State University)
  • 발행 : 2005.03.25

초록

The objective of this study was to identify the effect of the degree of saturation on the resilient modulus of cohesive soils as subgrade. Six representative cohesive soils representing A-4, A-6, and A-7-6 soil types collected from road construction sites across Ohio, were tested in the laboratory to determine their basic engineering properties. Resilient modulus tests were conducted on unsaturated cohesive soils at optimum moisture content, and samples compacted to optimum conditions but allowed to fully saturate. The subgrade compacted at optimum moisture content may be fully saturated due to seasonal change. Laboratory tests on fully saturated cohesive soils showed that the resilient modulus of saturated soils decreased to less than half that of soil specimens tested at optimum moisture content. The reduction of resilient modulus would possibly be caused by the buildup of pore water pressure. In resilient modulus testing performed in this study on saturated samples, pore water pressure increases were observed. Pore water pressure and residual pore water pressure gradually increased with an increase in deviator stress.

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