• 제목/요약/키워드: Hardening Soil

검색결과 198건 처리시간 0.033초

연약지반 표층혼합처리를 위한 조기강도 발현형 고화재의 개발 (Development of early strength type hardening Agent for Surface Soil Stabilization Method)

  • 기태경;김기훈;이병기;권오봉;김경민;박상준
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2013년도 추계 학술논문 발표대회
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    • pp.80-81
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    • 2013
  • There is the increasing number of constructing soil or structure on the soft ground during public works. Usually cement or slag cement has been the traditional material for surface soil stabilization method. Recently, early strength development properties of hardening agent is required for driving abilities of execution equipment and shortening of the construction time. Therefore, the purpose of this study is to develop the early compressive strength hardening agent for surface soil stabilization. The study was confirmed performance and availability of hardening agent using early strength type cement and industrial by-product minerals through early strength development properties in accordance with water cement ratio, content of hardening agent for soft soil.

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연약지반 표층안정처리를 위한 고화재의 최적조합 산정에 관한 실험적 연구 (An Experimental Study on Optimal Mixture Ratio of Hardening Agent for Surface Soil Stabilization)

  • 천병식;김진춘;최현석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 가을 학술발표회 논문집
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    • pp.17-24
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    • 2000
  • Hardening agent has been the traditional material for surface soil stabilization of soft ground. This study aims at determining optimal mixture ratio of hardening agent in accordance with the required design specifications. Hardening agent is properly mixtured with Fly ash, Gypsum, Slag and Cement for the ettringite hydrates which is effective for early stabilization of unconsolidated soil. The treated soil is the clay which are widely found here and there in Korea. In this study, preliminary tests were performed to get optimal mixture ratio of stabilizer ingredient, and marine clay in Jin-Hae was used to get physical and chemical properties. Laboratory tests of 50 stabilized soil were peformed to get optimal mixture ratio for 16 stabilizer material of 6 type, and stabilizer mixing was determined.

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해성점성토의 표층안정처리 공법에 관한 연구 (A Study on the Surface Soil Stabilization Method on Marine Clay)

  • 천병식;한기열
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2000년도 추계학술대회 논문집
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    • pp.129-134
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    • 2000
  • Hardening agent has been the traditional material for surface soil stabilization a sat ground This study aims at determining optimal mixture ratio of hardening agent in accordance with the required design specificutions. Hardening agent is properly mixed with Fly ash, Gyosum, Slag and Cement for the etmmngite hydrates which is dective for early stabilization of unconsoliokrred soil. \ulcornerhe treated soil is the clay tint is widely found here and there in Koresz In this study, preliminary tests were performed to get optirml mixture ratio of stabilizer ingredient, and mrvine clay in Jin-Hae was used to get physid and Md properties. Labomtory tests of 50 stabilized soil were performed to get optimal mixture mtio for 16-stabilizer merial a 6 types, a d stabilizer mixing was determined

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고화재에 의한 해성점성토의 표층안정처리에 관한 연구 (A Study on the Surface Soil Stabilization on Marine Clay by the Hardening Agent)

  • 천병식;양진석
    • 한국해양공학회지
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    • 제15권1호
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    • pp.92-97
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    • 2001
  • Hardening agents have been the traditional material for surface soil stabilization of soft ground. This study aims at determining the optimal mixture ratio of the hardening agent in accordance with the required design specifications. Hardening agents which consists of fly ash, gypsum, slag and cement for the ettringite hydrates is effective for early stabilization of unconsolidated soil. The raw ground material is the clay that is widely found in Korea. In this study, preliminary tests were performed to get an optimal mixture ratio of the stabilizer ingredient and marine clay from Jinhae was used to get physical and chemical properties. Laboratory tests of 50 stabilized soils were performed to get an optimal mixture ratio for 16-stabilizer materials of 6 types, and a mixture ratio of the stabilizer ingredient and marine clay was determined.

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A hybrid MC-HS model for 3D analysis of tunnelling under piled structures

  • Zidan, Ahmed F.;Ramadan, Osman M.
    • Geomechanics and Engineering
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    • 제14권5호
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    • pp.479-489
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    • 2018
  • In this paper, a comparative study of the effects of soil modelling on the interaction between tunnelling in soft soil and adjacent piled structure is presented. Several three-dimensional finite element analyses are performed to study the deformation of pile caps and piles as well as tunnel internal forces during the construction of an underground tunnel. The soil is modelled by two material models: the simple, yet approximate Mohr Coulomb (MC) yield criterion; and the complex, but reasonable hardening soil (HS) model with hyperbolic relation between stress and strain. For the former model, two different values of the soil stiffness modulus ($E_{50}$ or $E_{ur}$) as well as two profiles of stiffness variation with depth (constant and linearly increasing) were used in attempts to improve its prediction. As these four attempts did not succeed, a hybrid representation in which the hardening soil is used for soil located at the highly-strained zones while the Mohr Coulomb model is utilized elsewhere was investigated. This hybrid representation, which is a compromise between rigorous and simple solutions yielded results that compare well with those of the hardening soil model. The compared results include pile cap movements, pile deformation, and tunnel internal forces. Problem symmetry is utilized and, therefore, one symmetric half of the soil medium, the tunnel boring machine, the face pressure, the final tunnel lining, the pile caps, and the piles are modelled in several construction phases.

Numerical modeling of soil nail walls considering Mohr Coulomb, hardening soil and hardening soil with small-strain stiffness effect models

  • Ardakani, Alireza;Bayat, Mahdi;Javanmard, Mehran
    • Geomechanics and Engineering
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    • 제6권4호
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    • pp.391-401
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    • 2014
  • In an attempt to make a numerical modeling of the nailed walls with a view to assess the stability has been used. A convenient modeling which can provide answers to nearly situ conditions is of particular significance and can significantly reduce operating costs and avoid the risks arising from inefficient design. In the present study, a nailing system with a excavation depth of 8 meters has been modeled and observed by using the three constitutive behavioral methods; Mohr Coulomb (MC), hardening soil (HS) and hardening soil model with Small-Strain stiffness ensued from small strains (HSS). There is a little difference between factor of safety and the forces predicted by the three models. As extremely small lateral deformations exert effect on stability and the overall deformation of a system, the application of advanced soil model is essential. Likewise, behavioral models such as HS and HSS realize lower amounts of the heave of excavation bed and lateral deformation than MC model.

Generalization and implementation of hardening soil constitutive model in ABAQUS code

  • Bo Songa;Jun-Yan Liu;Yan Liu;Ping Hu
    • Geomechanics and Engineering
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    • 제36권4호
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    • pp.355-366
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    • 2024
  • The original elastoplastic Hardening Soil model is formulated actually partly under hexagonal pyramidal Mohr-Coulomb failure criterion, and can be only used in specific stress paths. It must be completely generalized under Mohr-Coulomb criterion before its usage in engineering practice. A set of generalized constitutive equations under this criterion, including shear and volumetric yield surfaces and hardening laws, is proposed for Hardening Soil model in principal stress space. On the other hand, a Mohr-Coulumb type yield surface in principal stress space comprises six corners and an apex that make singularity for the normal integration approach of constitutive equations. With respect to the isotropic nature of the material, a technique for processing these singularities by means of Koiter's rule, along with a transforming approach between both stress spaces for both stress tensor and consistent stiffness matrix based on spectral decomposition method, is introduced to provide such an approach for developing generalized Hardening Soil model in finite element analysis code ABAQUS. The implemented model is verified in comparison with the results after the original simulations of oedometer and triaxial tests by means of this model, for volumetric and shear hardenings respectively. Results from the simulation of oedometer test show similar shape of primary loading curve to the original one, while maximum vertical strain is a little overestimated for about 0.5% probably due to the selection of relationships for cap parameters. In simulation of triaxial test, the stress-strain and dilation curves are both in very good agreement with the original curves as well as test data.

입상토의 응력경로 의존거동 (Stress-Path Dependent Behavior of Granular Soil)

  • 정진섭;권원식
    • 한국농공학회지
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    • 제40권1호
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    • pp.106-117
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    • 1998
  • The nature of stress-path dependency, the principle that governs deformations in granular soil, and the use of Lade's double work-hardening model for predicting soil response for a variety of stress-paths have been investigated, and are examined The test results and the analyses presented show that under some conditions granular soils exhibit stress-path dependent behavior. For stress-paths involving unloading or reloading, the stress-path with the higher average stress level produces the larger strains, whereas all stress-paths having the same intial states of stress, and involving only primary loading conditions, produce strains of similar magnitudes. Experimental evidence indicates that the stress- path dependent response obtained from the double work-hardening model is also observed for real soils. It is concluded that the influence of stress history on the friction angle is negligible and the strains increment direction is uniquely determined from the state of stress but is not perpendicular to the yield surface. The strains calculated from Lade's double work-hardening model are in reasonable agreement with those measured.

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포천 화강토의 건조단위중량에 따른 Lade의 단일항복면 구성모델의 토질매개변수 특성 (Characteristics of Soil Parameter for Lade's Single Work-Hardening Constitutive Model with Dry Density of Pocheon Granite Soil)

  • 조원범;김찬기
    • 한국지반신소재학회논문집
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    • 제10권4호
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    • pp.29-36
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    • 2011
  • 본 연구는 포천 화강토의 건조단위중량을 $16.67kN/m^3$, $17.26kN/m^3$, $17.65kN/m^3$으로 각각 변화시켜 등방압축-팽창시험과 구속압력을 달리한 일련의 배수삼축시험을 하였다. 그리고 이 시험자료를 이용하여 회귀분석을 근거로 건조단위중량의 변화에 따른 Lade의 단일항복면 구성모델의 토질매개변수의 변화 특성을 알아보았다. 그 결과 탄성성분, 파괴규준, 경화함수, 소성포텐셜에 관련된 토질매개변수는 상대밀도의 증가에 따라 선형적인 증 감현상을 보이고 있다. 그리고 항복함수에 관련된 토질매개변수 h와 ${\alpha}$는 상대밀도에 따른 변화가 미세하고 파괴규준에 관련한 토질매개변수와 관련성이 매우 높아 ${\eta}_1$에 관한 식으로 대체할 수 있으며, 이 식을 이용한 수치해석 결과 양호하게 예측하고 있는 것을 확인 할 수 있었다.

산업부산물을 이용한 지반고화제 혼합토의 강도특성 (Strength Characteristics of Solidified Soil with Hardening Agents made of Industrial By-Products)

  • 김영상;유근모;문경주
    • 한국지반환경공학회 논문집
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    • 제13권6호
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    • pp.19-26
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    • 2012
  • 본 연구에서는 산업부산물 중 고로슬래그를 기본 재료로 바이패스 더스트(Bypass dust), 플라이애쉬와 인산석고를 자극제로 활용하고 원료들 간의 화학적 상호작용을 이용하여 개발된 지반 고화제의 개량효과를 판단하기 위하여 화강풍화토 및 준설된 해성점토에 다양한 혼합비로 혼합하여 기본 물성실험과 일축압축실험을 실시하였다. 화강풍화토와 혼합하여 실험한 결과, 인산석고를 자극제로 활용한 B-2고화제가 바이패스 더스트를 자극제로 활용한 B-1고화제에 비해 우수한 강도를 발현하였다. 화강풍화토에 5~7%의 무게비로 혼합된 B-1 및 B-2고화제는 일반 포트랜트 시멘트(OPC)에 비해 44%~60%의 강도를 발현시키나 원료가 산업부산물이므로 특별히 높은 강도를 요구하지 않는 지반구조물에 사용된다면 시멘트뿐 아니라 현재 국내에서 판매되는 고화제에 비해 경제적인 것으로 판단된다. 또한 해성준설토에 5~14%로 혼합하여 실험한 결과, 양생일 및 혼합비 증가에 따라 혼합토의 강도는 증가하며 B-1 고화제의 경우 양생일에 대해 선형적으로 증가하여 14% 혼합비에서 28일 양생일의 일축압축강도가 OPC혼합토에 비해 40%의 강도를 보이나 B-2는 양생일에 대해 비선형적으로 증가하여 OPC 혼합토 대비 133%로 매우 큰 강도를 발현하였다. 한편 B-1혼합토와 B-2혼합토의 변형계수는 $E_{50}=(20{\sim}47)_{qu,28}$ 범위인 것으로 나타나 OPC 혼합 준설토의 하한계 값에 가까운 것으로 나타났다.