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The Unsaturated Stress Strain Behavior of CDG (Completely Decomposed Granite) Soils
함태규,안태봉 한국지반공학회 2010 한국지반공학회논문집 Vol.26 No.6
Decomposed granite soil is the most common type of soils. The measurement of the stress-strain-strength behavior of anisotropic decomposed granite soils is very important for the deformation and stability analysis of slopes, retaining walls, excavations. A series of unsaturated-drained triaxial compression tests were performed to know unsaturated strength properties. The sample had three different angles of the axial (major principal) direction to the sedimentation plane (compaction plane): 0, 45 and 90 degrees. The compression strain of specimens subjected to an isotropic compression was strongly influenced by the sedimentation angle. In addition, the time dependence was independent of the sedimentation angle in relation to the deformation behavior during the secondary compression process. The effect of the sedimentation angle on the triaxial compression strength and deformation was clearly shown with low confining stress. The effect of the sedimentation angle on the compressive strength and deformation was more evident in saturated specimens. A new method of predicting the shear strength of unsaturated decomposed granite soils, considering compaction angles, was proposed.
함태규 한국지반공학회 2007 한국지반공학회논문집 Vol.23 No.11
자갈혼합재료의 역학특성에 미치는 자갈혼합율의 영향을 분석하기 위하여 화강풍화토를 이용한 대형 일차원압축시험을 실시하였다. 본 연구에서는 일본 야마구치현(山口県) 시모노세키시(下関市)에서 채취한 화강풍화토를 이용해 입도를 조절한 후 일정한 다짐에너지로 다짐한 공시체를 시험에 사용하였다. 시험결과, 동일한 함수비에서 동일한 다짐에너지로 다짐을 실시하여도 자갈혼합율에 따라 서로 다른 건조밀도를 보였고, 이로부터 최대건조밀도를 나타내는 자갈혼합율이 존재하는 것과 이 자갈혼합율에서 최소의 압축지수를 보이는 것을 확인하였다. 또한 본 연구에서는 이상혼합체이론(two-phase mixture theory)을 이용해 자갈혼합율의 영향을 정량적으로 평가할 수 있는 방법을 제안하였고, 제안한 방법을 통해 산정한 초기건조밀도와 재료정수는 실내시험으로부터 얻은 실측값을 정확히 추정하는 것으로 평가되었다.
선행압축이론을 이용한 화강풍화토의 다짐 후의 간극비로부터 지반강도정수 추정 방법
함태규 한국지반공학회 2009 한국지반공학회논문집 Vol.25 No.6
In order to clarify the relation between the physical properties and the strength parameters of compaction materials and to develop a method for evaluating the strength parameters required for design from the physical indices including void ratio and dry density, compaction test, one-dimensional compression test, and exhausted-drained triaxial compression test were carried out with decomposed granite soils. The test results showed that the specimens became over-consolidated by compaction and the increase of the strength parameters of the specimens by the increase of the compaction energy could be verified quantitatively. A method for the evaluation of strength parameters from the void ratio of soil after compaction using preconsolidation theory which evaluates over-consolidation of materials was developed and its engineering applicability was tested for verification.
함태규,안태봉,효도 마사유키 한국지반공학회 2005 한국지반공학회논문집 Vol.21 No.7
In order to investigate the strength and deformation anisotropy of compacted decomposed granite soils, a series of unsaturated-drained triaxial compression tests were performed. The sample used in the study was decomposed granite soil from Shimonoseki in Yamaguchi prefecture. The sample had three different angles of the axial (major principal) direction to the sedimentation plane (compaction plane), 0, 45 and 90 degrees. The compression strain of specimens subjected to isotropic compression was strongly influenced by the sedimentation angle. In addition, the time dependence was independent of the sedimentation angle in relation to the deformation behavior during the secondary compression process. The effect of the sedimentation angle on the triaxial compression strength and deformation was clear with low confining stress. Moreover, it was recognized that although the sedimentation angle and preparation methods were different, the dilatancy rate was relative to the increment of strength due to dilatancy. Therefore, it may be concluded that the compacted specimen has anisotropic mechanical properties similar to those of sand with initial fabric anisotropy.