• Title/Summary/Keyword: response compaction

검색결과 42건 처리시간 0.033초

Direct and indirect methods for determination of mode I fracture toughness using PFC2D

  • Sarfarazi, Vahab;Haeri, Hadi;Shemirani, Alireza Bagher
    • Computers and Concrete
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    • 제20권1호
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    • pp.39-47
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    • 2017
  • In this paper, mode I fracture toughness of rock was determined by direct and indirect methods using Particle Flow Code simulation. Direct methods are compaction tension (CT) test and hollow centre cracked quadratic sample (HCCQS). Indirect methods are notched Brazilian disk (NBD) specimen, the semi-circular bend (SCB) specimen, hollow centre cracked disc (HCCD), the single edge-notched round bar in bending (SENRBB) specimen and edge notched disk (END). It was determined that which one of indirect fracture toughness values is close to direct one. For this purpose, initially calibration of PFC was undertaken with respect to data obtained from Brazilian laboratory tests to ensure the conformity of the simulated numerical models response. Furthermore, the simulated models in five introduced indirect tests were cross checked with the results from direct tests. By using numerical testing, the failure process was visually observed. Discrete element simulations demonstrated that the macro fractures in models are caused by microscopic tensile breakages on large numbers of bonded discs. Mode I fracture toughness of rock in direct test was less than other tests results. Fracture toughness resulted from semi-circular bend specimen test was close to direct test results. Therefore semi-circular bend specimen can be a proper test for determination of Mode I fracture toughness of rock in absence of direct test.

온간 성형 하에서 A1 합금 분말의 정밀정형에 대한 유한요소해석 (A Finite Element Analysis for Near-net-shape Forming of A16061 Powder under Warm Pressing)

  • 김종광;양훈철;김기태
    • 대한기계학회논문집A
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    • 제27권11호
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    • pp.1897-1906
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    • 2003
  • A finite element analysis for near-net-shape forming of A16061 powder was performed under warm rubber isostatic pressing and warm die pressing. The advantages of warm compaction by rubber isostatic pressing were discussed to obtain a part with better density distributions. The shape of rubber mold was designed by determining a cavity shape that provides a desired shape of the final powder compact. To simulate densification and deformed shape of a powder compact during pressing, the elastoplastic constitutive equation based on yield function of Shima-Oyane was implemented into a finite element program(ABAQUS). The hyperelastic constitutive equation based on the Ogden strain energy Potential was employed to analyze nonlinear elastic response of rubber. Finite element results were compared with experimental data for Al6061 powder compacts under warm die pressing and warm isostatic pressing.

Evaluation of extension in service life and layer thickness reduction of stabilized flexible pavement

  • Nagrale, Prashant P.;Patil, Atulya
    • Advances in Computational Design
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    • 제3권2호
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    • pp.201-212
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    • 2018
  • Decrease in availability of suitable subbase and base course materials for highway construction leads to a search for economic method of converting locally available troublesome soil to suitable one for highway construction. Present study insights on evaluation of benefits of stabilization of subgrade soils in term of extension in service life (TBR) and layer thickness reduction (LTR). Laboratory investigation consisting of Atterberg limit, Compaction, California Bearing Ratio, unconfined compressive strength and triaxial shear strength tests were carried out on two types of soil for varying percentages of stabilizers. Vertical compressive strains at the top of unstabilized and stabilized subgrade soils were found out by elastoplastic finite element analysis using commercial software ANSYS. The values of vertical compressive strains at the top of unstabilized and stabilized subgrade, were further used to estimate layer thickness reduction or extension in service life of the pavement due to stabilization. Finite element modeling of the flexible pavement layered structure provides modern technology and sophisticated characterization of materials that can be accommodated in the analysis and enhances the reliability for the prediction of pavement response for improved design methodology. If the pavement section is kept same for unstabilized and stabilized subgrade soils, pavement resting on lime, fly ash and fiber stabilized subgrade soil B will have service life 2.84, 1.84 and 1.67 times than that of unstabilized pavement respectively. The flexible pavement resting on stabilized subgrade is beneficial in reducing the construction material. Actual savings would depend on the option exercised by the designer for reducing the thickness of an individual layer.

Improvement in engineering properties of subgrade soil due to stabilization and its effect on pavement response

  • Nagrale, Prashant P.;Patil, Atulya P.
    • Geomechanics and Engineering
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    • 제12권2호
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    • pp.257-267
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    • 2017
  • This paper presents laboratory investigation of stabilization of subgrade soil. One type of soil and three types of stabilizers i.e., hydrated lime, class F fly ash and polypropylene fibres are selected in the study. Atterberg limit, compaction, california bearing ratio (CBR), unconfined compressive strength and triaxial shear strength tests are conducted on unstabilized and stabilized soil for varying percentage of stabilizers to analyze the effect of stabilizers on the properties of soil. Vertical compressive strains at the top of unstabilized and stabilized subgrade soil were found out by elasto-plastic finite element analysis using commercial software ANSYS. Strategy for design of optimum pavement section was based on extension in service life (TBR) and reduction in layer thickness (LTR). Extension in service life of stabilized subgrade soil is 6.49, 4.37 and 3.26 times more due to lime, fly ash and fibre stabilization respectively. For a given service life of the pavement, there is considerable reduction in layer thicknesses due to stabilization. It helps in reduction in construction cost of pavement and saving in natural resources as well.

Behavior of dry medium and loose sand-foundation system acted upon by impact loads

  • Ali, Adnan F.;Fattah, Mohammed Y.;Ahmed, Balqees A.
    • Structural Engineering and Mechanics
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    • 제64권6권
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    • pp.703-721
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    • 2017
  • The experimental study of the behavior of dry medium and loose sandy soil under the action of a single impulsive load is carried out. Different falling masses from different heights were conducted using the falling weight deflectometer (FWD) to provide the single pulse energy. The responses of soils were evaluated at different locations (vertically below the impact plate and horizontally away from it). These responses include; displacements, velocities, and accelerations that are developed due to the impact acting at top and different depth ratios within the soil using the falling weight deflectometer (FWD) and accelerometers (ARH-500A Waterproof, and Low capacity Acceleration Transducer) that are embedded in the soil and then recorded using the multi-recorder TMR-200. The behavior of medium and loose sandy soil was evaluated with different parameters, these are; footing embedment, depth ratios (D/B), diameter of the impact plate (B), and the applied energy. It was found that increasing footing embedment depth results in: amplitude of the force-time history increases by about 10-30%. due to increase in the degree of confinement with the increasing in the embedment, the displacement response of the soil will decrease by about 25-35% for loose sand, 35-40% for medium sand due to increase in the overburden pressure when the embedment depth increased. For surface foundation, the foundation is free to oscillate in vertical, horizontal and rocking modes. But, when embedding a footing, the surrounding soil restricts oscillation due to confinement which leads to increasing the natural frequency, moreover, soil density increases with depth because of compaction, that is, tendency to behave as a solid medium.

액상화해석을 위한 두 개의 활성면을 가진 구성모델 (A Two Mobilized-Plane Model for Soil Liquefaction Analysis)

  • 박성식
    • 한국지반공학회논문집
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    • 제22권10호
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    • pp.173-181
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    • 2006
  • 본 논문에서는 정적 및 액상화와 같은 동적하중을 받는 흙의 거동해석을 위한 두 개의 활성면을 가진 구성모델을 제안하였다. 이 모델은 두 개의 활성면에 기초하고 있으며, 첫번째면은 회전하는 최대전단면을 나타내며 두 번째면은 고정된 수평면을 나타낸다. 이와 같은 두 개의 활성면을 이용하여 본 모델은 초기의 다른 응력상태하에 있는 시료의 직접단순전단시에 발생하는 주응력회전현상을 모델링할 수 있다. 제안된 모델은 초기의 응력비에 관계없이 평균유효응력이 동일할 경우에 유사한 거동을 보이는 흙의 실내실험결과를 묘사할 수 있다 그리고, 배수시 반복 직접단순전단으로 발생하는 흙의 거동 즉 제하시에 나타나는 체적감소 및 대변형에서 발생하는 체적팽창을 묘사할 수 있다. 비배수시의 흙의 정적 및 동적 거동은 배수거동에서 흙 골격사이에 존재하는 물의 구속력을 고려함으로써 해석하였다. 본 모델의 구성관계식은 응력-물의 상관관계를 동시에 묘사할 수 있는 FLAC을 이용하여 구현하였다. 배수 직접단순전단 시험을 이용한 Fraser River Sand의 실험결과를 이용하여 모델을 먼저 검증하였으며, 동일한 입력변수를 이용한 Fraser River Sand 비배수 거동의 예측치와 실험치를 비교하여 검증하였다.

Response of circular footing on dry dense sand to impact load with different embedment depths

  • Ali, Adnan F.;Fattah, Mohammed Y.;Ahmed, Balqees A.
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.323-336
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    • 2018
  • Machine foundations with impact loads are common powerful sources of industrial vibrations. These foundations are generally transferring vertical dynamic loads to the soil and generate ground vibrations which may harmfully affect the surrounding structures or buildings. Dynamic effects range from severe trouble of working conditions for some sensitive instruments or devices to visible structural damage. This work includes an experimental study on the behavior of dry dense sand under the action of a single impulsive load. The objective of this research is to predict the dry sand response under impact loads. Emphasis will be made on attenuation of waves induced by impact loads through the soil. The research also includes studying the effect of footing embedment, and footing area on the soil behavior and its dynamic response. Different falling masses from different heights were conducted using the falling weight deflectometer (FWD) to provide the single pulse energy. The responses of different soils were evaluated at different locations (vertically below the impact plate and horizontally away from it). These responses include; displacements, velocities, and accelerations that are developed due to the impact acting at top and different depths within the soil using the falling weight deflectometer (FWD) and accelerometers (ARH-500A Waterproof, and Low capacity Acceleration Transducer) that are embedded in the soil in addition to soil pressure gauges. It was concluded that increasing the footing embedment depth results in increase in the amplitude of the force-time history by about 10-30% due to increase in the degree of confinement. This is accompanied by a decrease in the displacement response of the soil by about 40-50% due to increase in the overburden pressure when the embedment depth increased which leads to increasing the stiffness of sandy soil. There is also increase in the natural frequency of the soil-foundation system by about 20-45%. For surface foundation, the foundation is free to oscillate in vertical, horizontal and rocking modes. But, when embedding a footing, the surrounding soil restricts oscillation due to confinement which leads to increasing the natural frequency. Moreover, the soil density increases with depth because of compaction, which makes the soil behave as a solid medium. Increasing the footing embedment depth results in an increase in the damping ratio by about 50-150% due to the increase of soil density as D/B increases, hence the soil tends to behave as a solid medium which activates both viscous and strain damping.

섬유 보강토벽체의 인장력 평가 및 변형 예측 (Evaluation of Tensions and Prediction of Deformations for the Fabric Reinforeced -Earth Walls)

  • 김홍택;이은수;송병웅
    • 한국지반공학회지:지반
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    • 제12권4호
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    • pp.157-178
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    • 1996
  • 기존의 보강토벽체에 주로 이용되어온 steel strict등 고강도 인장보강재는 주변 뒤채움흙에 비해 상대적으로 변형이 작기 때문에, 설계검토시 과강재 자체에서 유발되는 변형의 크기에 대해서는 크게 유의할 필요가 없었다. 그러나 비교적 저강도인 섬유보강재의 경우, 한계상태에서 예상되는 섬유보강재 자체의 변형량은 주변 뒤채움흙의 소성변형 유발에 필요시 되는 변형량을 종종 초과하게 되며, 이와같은 크기의 과도한 변형량은 보강토벽체 구조체 자체의 안정성 확보 측면에서 허용할 수 없는 경우가 대부분이다. 결국 보증토벽체 구조체의 전면부 발생변위에 대한 일반적인 허용조건을 충족하기 위해서는, 극한강도 보다 훨씬 작은 크기의 강도가 섬유보강재의 경우 발휘하는 것으로 보아야 할 것이며, 따라서 최종적인 구조체 안정검토를 위해서는 보강재 자체의 예상변형량에 대한 평가가 섬유보강재의 경우 특히 중요시 된다. 보강재의 인장응력 -변형률 관계는 강보강재의 경우 선형탄성거동으로 가정할 수 있으나, 섬 유보강재의 경우에는 일반적으로 비 선형거동을 나타낸다. 본 연구에서는 쌍곡선 함수를 이용하여 섬유보강재의 비선형 거동특성을 모델링하였으며,또한 뒤채움흙 다짐으로 인한 유발응력등을 고려하기 위해 Ehrlich SE Mitchell, Duncan등이 제안한 방법을 수정하여 섬유 보강토벽체의 안정 해석법을 제시하였다. 본 안정 해석법 에서는 침투수압의 영향 및 뒤채움흙의 구속효과에 따른 섬유보강재의 부분적인 상대강성 변화 등을 고려하였으며, 이를 토대로 깊이별 각 섬유보 강재의 최대인장력 및 변형량 등의 예측이 가능하다. 본 연구에서는 제시하리라 하는 안정해석법의 적용성을 위해, paraweb polyester fibre multicord, non-woven polyester 지오텍스타일 및 knitted polyester 지오그리드 등 3가지 종류 보강재의 인장응력-변형률 관계 실험결과를 회귀분석하여 쌍곡선 함수형태로 이와같은 섬유보 강재의 비선형거동을 모델링하였다. 또한 이를 토대로 한 븐 연구 해석법의 적합성 검토를 위해, Ho & Rowe가 제시한 유한요소해석결과 및 LCPC, FHWA등에서 시행한 시험결과와 깊이별 각 섬유보강재의 최대인장력,변형량 및 지점별 변형률 등에 대해서도 비교하였다. 아울러 섬유 보강재의 상대강성, 뒤채움흙의 깊이별 구속효과의 정도, 다짐정도 및 침투수압 등이 각 섬유보강재의 변형량 및 전체적인 변형형태 등에 미치는 영향을 종합적으로 분석하였다.

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Curing Behavior of Phenolic Resin with Humid Atmosphere on The Porous $ZrO_2$ ceramics

  • 윤상현;김장훈;김주영;이준태;이희수
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.57.1-57.1
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    • 2011
  • The effects of relative humidity on the properties of the porous $ZrO_2$ ceramics were investigated in terms of the curing behavior of phenolic resin as a binder. The $ZrO_2$ powders containing 5wt% of phenolic resin were conditioned in a consistent chamber condition at a temperature of $50^{\circ}C$ and different humidity levels (25, 50, 75, and 95%) for 1 h. The exposure of humid atmosphere caused changes of density and microstructure in the green bodies. The higher level the powders were exposed to the humid atmosphere, the lower green density was obtained and the more irregular microstructure was observed due to aggregation by the curing of phenolic resin. After firing, the porosity of specimens has risen from 35.7% to 38.1% and Young's modulus has declined in response to the variation of green density. These results could be explained by the degree of resin cure which was associated with the area under the exothermic peak enclosed by a baseline of DSC thermogram curve. Also, the curing behavior of phenolic resin according to relative humidity has been confirmed by decrease of ether groups which have interacted with the phenolic-OH group and the hexamine as a curing agent. Consequently, it could be demonstrated that increase the relative humidity during fabrication of porous $ZrO_2$ diminished the compaction and properties of specimens after firing owing to curing of phenolic resin.

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위상천이 네트워크를 사용한 X-마스크 기법 (An X-masking Scheme for Logic Built-In Self-Test Using a Phase-Shifting Network)

  • 송동섭;강성호
    • 대한전자공학회논문지SD
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    • 제44권2호
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    • pp.127-138
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    • 2007
  • 본 논문에서는 최대길이 의사무작위 이진 시퀀스(m-시퀀스)의 쉬프트-덧셈 특성에 근거한 위상천이를 이용하여 회로 출력에 나타나는 X-값을 효과적으로 마스크 함으로써 내장된 자체 테스트를 실현할 수 있는 기법을 제안한다. 이 기법은 패턴생성기인 LFSR의 출력을 적절하게 위상천이 하여 마스크 패턴을 생성할 수 있는 위상천이 네트워크를 이용한다. 테스트 절차 동안에 각 스캔 체인에 인가되는 마스크 패턴의 위상 천이 수는 재구성 가능하다. LFSR의 출력을 적절하게 위상 천이하여 모든 스캔 체인 마스크 패턴을 생성할 수 있는 위상천이 네트워크 합성 알고리즘을 제안한다. 본 논문에서 제안하는 X-마스크 회로는 각 스캔 체인 마스크 패턴을 생성할 수 있는 후보 위상천이 수가 많기 때문에 하드웨어 오버헤드를 효과적으로 감축할 수 있다. 실험을 통하여 제안된 위상천이를 이용한 X-마스크 회로는 기존의 연구 결과보다 훨씬 적은 저장공간과 하드웨어 오버헤드를 필요로 함을 증명한다.