• 제목/요약/키워드: Compressive load support

검색결과 54건 처리시간 0.036초

샌드위치패널심재로 활용한 St/BA 개질 다공성 경량 콘크리트의 특성 (Properties of St/BA Modified Cellular Lightweight Concrete as Sandwich Panel Core)

  • 강내민;노정식;도정윤;문경주;소양섭
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2003년도 학술.기술논문발표회
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    • pp.31-34
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    • 2003
  • Sandwich panel is composed of the facing sheets which support the external load, the cellular core with the low thermal conductivity and the adhesive agent to bond them. The cellular core was produced by binding lightweight cellular aggregates with cement and two types of acrylic base St/BA emulsion were added with a view to improving the workability ion due to high absorption of light weight aggregate and to develope more strength, respectively. This investigation is to comprehend the effect of the addition of two types of St/BA on thermal conductivity, calorific value and exhaustion content of noxious gas in addition re compressive and flexural strength. Flexural strength of the specimen made with St/BA-2 ranged 20kgf/cm2 to 25kgf/cm2 and was about 50% to 100% as high as that of the non-fiber specimen. Thermal conductivity was recorded from 2.0 to 3.0 kcal/mh$^{\circ}C$ and calorific value of St/BA modified specimen was much lower than that of commercial sandwich panel core of EPS and urethane. Careful caution has to be taken because generation of noxious gas such as CO, NO and SO2 tend to increase with addition of polymer cement ratio.

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Experimental study on modified low liquid limit silt for abutment backfill in bridge-embankment transition section

  • Shu-jian Wang;Yong Sun;Zhen-bao Li;Kai Xiao;Wei Cui
    • Geomechanics and Engineering
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    • 제32권6호
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    • pp.601-613
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    • 2023
  • Low liquid limit silt, widely distributed in the middle and down reaches of Yellow River, has the disadvantages of poor grading, less clay content and poor colloidal activity. It is very easy to cause vehicle jumping at the bridge-embankment transition section when the low liquid limit silt used as the backfill at the abutment back. In this paper, a series of laboratory tests were carried out to study the physical and mechanical properties of the low liquid limit silt used as back filling. Ground granulated blast furnace slag (GGBFS) was excited by active MgO and hydrated lime to solidify silt as abutment backfill. The optimum ratio of firming agent and the compaction and mechanical properties of reinforced soil were revealed through compaction test and unconfined compressive strength (UCS) test. Scanning electron microscope (SEM) test was used to study the pore characteristics and hydration products of reinforced soil. 6% hydrated lime and alkali activated slag were used to solidify silt and fill the model of subgrade respectively. The pavement settlement regulation and soil internal stress-strain regulation of subgrade with different materials under uniformly distributed load were studied by model experiment. The effect of alkali activated slag curing agent on curing silt was verified. The research results can provide technical support for highway construction in silt area of the Yellow River alluvial plain.

치주지지가 감소된 상태에서 섬유강화형 포스트로 수복한 치아의 실패양상 분석 (AN ANALYSIS OF FAILURE MODE OF TEETH RESTORED WITH FIBER-REINFORCED POSTS UNDER THE CONDITION OF BONY RESORPTION)

  • 이병우;이양진;조리라;박찬진
    • 대한치과보철학회지
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    • 제41권2호
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    • pp.232-242
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    • 2003
  • Statement of problem : Fiber-reinforced posts have lower modulus of elasticity than titanium post or cast post-core. With this similar elasticity to that of dentin, fiber-reinforced posts have been known to have a tendency to reduce the risk of root fracture. However, there were few studies on the teeth restored with fiber-reinforced posts under the condition of reduced periodontal support. Purpose : The purpose of this study was to evaluate the fracture strength and failure mode of endodontically treated teeth restored with fiber-reinforced posts and titanium posts under the condition of reduced periodontal support. Material and method : Extracted human maxillary incisor roots were divided into 3 groups (group 1 carbon fiber post, group 2 : glass fiber post, and group 3 : titanium alloy post). After coronectomy and endodontic treatment, teeth were restored with each post systems and resin core according to the manufacturer's recommendation. Then, teeth with simulated periodontal ligament were embedded in the acrylic resin blocks at the level of 4 mm below the cemento-enamel junction. Each specimen was exposed to $10^5$ load cycles with average 30 N force in $36.5^{\circ}C$ water using a computer-controlled chewing simulator. Loads were applied at $45^{\circ}$ angle to the long axis of the teeth. After cyclic loading, teeth were subjected a compressive load until failure at a crosshead speed of 0.5 mm/min. Fracture strength (N) and failure mode were examined. The fracture strength was analyzed with one-way ANOVA and the Scheffe adjustment at the 95% significance level. Results and conclusion : The results were as follows. 1. There was no statistically significant difference in the mean fracture strength among the groups (P<.05). 2. Carbon fiber post and glass fiber post group showed less root fracture tendency than control group. 3. All specimens with root fractures showed fracture lines above the level of acrylic resin block, except for only one specimen in group 3.

프리캐스트 콘크리트 트러스 시스템의 압축 내하력 실험 연구 (An Experimental Study on Compressive Loading Capacity of Precast Concrete Truss System)

  • 한만엽;전세진
    • 대한토목학회논문집
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    • 제33권3호
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    • pp.889-900
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    • 2013
  • 대형 구조물의 기초나 지중 구조물 시공을 위한 대규모 굴착 시 매우 큰 토압이 발생할 수 있다. 이러한 큰 토압을 지지하기 위해 기존에 사용되어 온 강재 버팀보를 적용할 경우 경제성 및 효율성이 저하될 우려가 있다. 이러한 점을 개선하기 위해 PCT(Precast Concrete Truss) 시스템을 고안하였으며 이에 대한 실험 및 해석적 연구를 수행하였다. 콘크리트 트러스 부재의 조립 및 해체를 용이하게 하기 위해 적절한 연결방법이 제안되었다. 이러한 연결부를 포함한 PCT 시스템의 내하력을 검증하기 위해 실대형 실험이 실시되었으며, 실험결과는 구조해석결과와도 비교되었다. PCT 버팀보를 모사한 시험체는 극한하중 도달 시까지 좌굴이 발생하지 않았으나, 연결 부재 상세에 대한 일부 개선점이 도출되었다. PCT 시스템은 대규모 굴착 시 기존의 강재 버팀보를 대체하는 가설구조물로서 효율적으로 활용될 수 있을 것으로 기대된다.

Domain decomposition technique to simulate crack in nonlinear analysis of initially imperfect laminates

  • Ghannadpour, S. Amir M.;Karimi, Mona
    • Structural Engineering and Mechanics
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    • 제68권5호
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    • pp.603-619
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    • 2018
  • In this research, an effective computational technique is carried out for nonlinear and post-buckling analyses of cracked imperfect composite plates. The laminated plates are assumed to be moderately thick so that the analysis can be carried out based on the first-order shear deformation theory. Geometric non-linearity is introduced in the way of von-Karman assumptions for the strain-displacement equations. The Ritz technique is applied using Legendre polynomials for the primary variable approximations. The crack is modeled by partitioning the entire domain of the plates into several sub-plates and therefore the plate decomposition technique is implemented in this research. The penalty technique is used for imposing the interface continuity between the sub-plates. Different out-of-plane essential boundary conditions such as clamp, simply support or free conditions will be assumed in this research by defining the relevant displacement functions. For in-plane boundary conditions, lateral expansions of the unloaded edges are completely free while the loaded edges are assumed to move straight but restricted to move laterally. With the formulation presented here, the plates can be subjected to biaxial compressive loads, therefore a sensitivity analysis is performed with respect to the applied load direction, along the parallel or perpendicular to the crack axis. The integrals of potential energy are numerically computed using Gauss-Lobatto quadrature formulas to get adequate accuracy. Then, the obtained non-linear system of equations is solved by the Newton-Raphson method. Finally, the results are presented to show the influence of crack length, various locations of crack, load direction, boundary conditions and different values of initial imperfection on nonlinear and post-buckling behavior of laminates.

Predicting rock brittleness indices from simple laboratory test results using some machine learning methods

  • Davood Fereidooni;Zohre Karimi
    • Geomechanics and Engineering
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    • 제34권6호
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    • pp.697-726
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    • 2023
  • Brittleness as an important property of rock plays a crucial role both in the failure process of intact rock and rock mass response to excavation in engineering geological and geotechnical projects. Generally, rock brittleness indices are calculated from the mechanical properties of rocks such as uniaxial compressive strength, tensile strength and modulus of elasticity. These properties are generally determined from complicated, expensive and time-consuming tests in laboratory. For this reason, in the present research, an attempt has been made to predict the rock brittleness indices from simple, inexpensive, and quick laboratory test results namely dry unit weight, porosity, slake-durability index, P-wave velocity, Schmidt rebound hardness, and point load strength index using multiple linear regression, exponential regression, support vector machine (SVM) with various kernels, generating fuzzy inference system, and regression tree ensemble (RTE) with boosting framework. So, this could be considered as an innovation for the present research. For this purpose, the number of 39 rock samples including five igneous, twenty-six sedimentary, and eight metamorphic were collected from different regions of Iran. Mineralogical, physical and mechanical properties as well as five well known rock brittleness indices (i.e., B1, B2, B3, B4, and B5) were measured for the selected rock samples before application of the above-mentioned machine learning techniques. The performance of the developed models was evaluated based on several statistical metrics such as mean square error, relative absolute error, root relative absolute error, determination coefficients, variance account for, mean absolute percentage error and standard deviation of the error. The comparison of the obtained results revealed that among the studied methods, SVM is the most suitable one for predicting B1, B2 and B5, while RTE predicts B3 and B4 better than other methods.

협소공간전용 바닥고정형 입상관 흔들림방지버팀대 개발에 관한 연구 (A Study on the Development of Floor-Fixed Standpipe Sway Brace for Narrow Space)

  • 진세영;최수길;박상민;연태영;김창수;김시국
    • 한국화재소방학회논문지
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    • 제34권1호
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    • pp.47-54
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    • 2020
  • 본 논문은 협소공간인 피트 내부에 설치되는 기존 입상관 흔들림방지버팀대의 설치 및 시공 상의 문제점을 개선하고, 수평지진하중(X축, Y축)에 대한 지지역할과 더불어 추가적으로 수직지진하중(Z축)을 지지할 수 있는 협소공간전용 바닥고정형 입상관 버팀대 개발에 관한 연구이다. 솔리드웍스 시뮬레이션을 이용한 구조해석 결과 1차 설계모델의 경우 수직방향에서 앵커 위치에 따른 편심하중이 발생하였고, 수평 및 수직 방향에서 모두 재질의 허용응력을 초과하는 문제가 나타났다. 2차 설계모델의 경우 1차 설계모델에서 발생하였던 수직방향으로의 편심하중에 의한 변형이 발생되지 않았고, 최대변형률이 0.17%로 1차 설계모델(최대변형률 13.01%)보다 약 12.84% 감소하는 것으로 나타나 구조적인 안정성 및 내구성이 향상된 것을 확인할 수 있었다. 시제품에 대한 압축 및 인장 하중시험결과 모든 시제품이 기준에서 정한 성능기준에 적합한 것으로 나타났다.

상악 임플란트 overdenture에서 anchorage system과 의치상 구개피개가 하중전달에 미치는 영향 (EFFECT OF ANCHORAGE SYSTEMS AND PALATAL COVERAGE OF DENTURE BASE ON LOAD TRANSFER WITH MAXILLARY IMPLANT-SUPPORTING OVERDENTURES : A THREE-DIMENSIONAL PHOTOELASTIC STRESS ANALYSIS)

  • 제홍지;전영찬;정창모;임장섭;황재석
    • 대한치과보철학회지
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    • 제42권4호
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    • pp.397-411
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    • 2004
  • Purpose: The purpose of this study was to determine the effect of anchorage systems and palatal coverage of denture base on load transfer in maxillary implant-supported overdenture. Material and methods: Maxillary implant -supported overdentures in which 4 implants were placed in the anterior region of edentulous maxilla were fabricated, and stress distribution patterns in implant supporting bone in the case of unilateral vertical loading on maxillary right first molar were compared with each other depending on various types of anchorage system and palatal coverage extent of denture base using three-dimensional photoelastic stress analysis. Two photoelastic overdenture models were fabricated in each anchorage system to compare with the palatal coverage extent of denture base, as a result we got eight models : Hader bar using clips(type 1), cantilevered Hader bar using clips(type 2), Hader bar using clip and ERA attachments(type 3), cantilevered milled-bar using swivel-latchs and frictional pins(type 4). Result: 1. In all experimental models, the highest stress was concentrated on the most distal implant supporting bone on loaded side. 2. In every experimental models with or without palatal coverage of denture base, maximum fringe orders on the distal ipsilateral implant supporting bone in an ascending order is as follows; type 3, type 1, type 4, and type 2. 3. Each implants showed compressive stresses in all experimental models with palatal coverage of denture base, but in the case of those without palatal coverage of denture base, tensile stresses were observed in the distal contralateral implant supporting bone. 4. In all anchorage system without palatal coverage of denture base, higher stresses were concentrated on the most distal implant supporting bone on loaded side. 5. The type of anchorage system affected in load transfer more than palatal coverage extent of the denture base. Conclusion: To the results mentioned above, in the case of patients with unfavorable biomechanical conditions such as not sufficient number of supporting implants, short length of the implant, and poor bone quality, selecting a resilient type attachment or minimizing the distal cantilevered bar is considered to be an appropriate method to prevent overloading on implants by reducing cantilever effect and gaining more support from the distal residual ridge.

LMU용 일래스토머릭 베어링의 강성평가 (Stiffness evaluation of elastomeric bearings for leg mating unit)

  • 한동섭;장시환;이권희
    • 한국산학기술학회논문지
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    • 제18권12호
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    • pp.106-111
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    • 2017
  • 본 연구에서는 해양구조물의 상부(top side) 구조물을 설치할 때 필요한 장치인 LMU(Leg Mating Unit)의 강성을 구조해석을 통하여 검토하였다. 이것은 구조물의 지지 점에 장착되어 설치 시 충격을 흡수하고 안정적으로 구조물을 지지하는 데 사용된다. LMU는 가운데가 비어있는 원통형 구조로서 수직 하중을 지지하기 위해서 일래스토머릭 베어링(Elastomeric Bearing, 이하 EB)과 철판을 여러 층으로 적층한다. EB의 강성은 기본적으로 베어링의 크기에 영향을 받지만, 동일한 크기에서도 내부 보강판의 적층 수에 따라 강성이 변하게 된다. 일반적으로 보강판과 압축 강성 사이의 관계를 분석하여 적합한 설계를 한다. EB의 강성은 변위를 제어하면서 반력을 산출하는 방식으로 분석을 한다. 먼저 보강판의 크기와 압축 강성 관계를 검토하고, 보강판의 적층 수와 압축 강성 관계를 검토한다. LMU는 장착되는 지점마다 다른 하중이 요구된다. 해석을 통해 각 지점에서 동일한 변형이 발생하도록 압축 강성을 다르게 설계하는 것이 목표이다. 본 연구의 유한요소해석을 위하여 상용 프로그램인 ANSYS를 이용하였다.

도시형 자기부상열차 프리텐션 거더교의 설계변수 분석 (Parameter Analysis for Design of Pretension Girder Bridge for Urban Maglev Transit)

  • 이재호;김도학;김승현;김성일
    • 한국철도학회논문집
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    • 제19권4호
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    • pp.515-525
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    • 2016
  • 도시형 자기부상열차 프리텐션 거더교의 최적설계를 위해서 설계변수 분석을 수행하였다. 자기부상철도용 거더 설계 시에는 중앙부 처짐을 고려해야 하므로 이와 연관있는 콘크리트 압축강도, 거더 형고, 거더 연장및 강연선비부착 길이를 설계변수로 선정하였다. 또한, 프리텐션 거더에서 지점부의 상연응력을 제어하기 위해서 강연선 개소수 및 배치방식을 설계변수로 선정하고, 강연선비부착률을 검토하였다. 설계변수 해석결과로부터 거더 처짐량에는 거더 형고와 거더 연장이 콘크리트 압축강도와 강연선 비부착 길이보다 더 큰 영향을 미치는 것을 확인하였고, 민감도 분석을 통해 설계 가중값을 제시하였다. 지점부 상연응력 제어를 위해서 비부착 강연선배치기준을 만족하는 경우에는 상연 긴장선 또는 철근배근이 필요한 것으로 확인되었다. 따라서 향후 경제성 및 시공성 향상을 위해 자기부상철도 가이드웨이의 하중특성을 고려한 비부착강연선 기준 향상에 대한 검토가 필요하다.