• 제목/요약/키워드: 응력해석

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Cemented Sand and Gravel 재료의 강도특성 (Strength Characteristics of Cemented Sand and Gravel)

  • 김기영;박한규;전제성
    • 한국지반공학회논문집
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    • 제21권10호
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    • pp.61-71
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    • 2005
  • Cemented Sand and Gravel(CSG)재료는 댐 수몰지로부터 쉽게 얻을 수 있는 하상자갈과 굴착토를 물, 시멘트와 함께 혼합한 재료를 총칭하는 것이다. 최근 일본에서는 가물막이댐과 본 댐 축조공사에 CSG 재료를 활용함으로써 댐 축조에 필요한 채석장 개발과 플랜트 건설에 투입되는 제반경비와 시공 공기를 줄일 수 있게 되었으며, 석산개발에 따른 환경훼손을 완화할 수 있게 됨으로써 경제성과 환경적 측면에서 그 활용성이 주목받고 있다. 본 연구에서는 CSG 재료의 기초적인 강도특성을 파악하기 위하여 단위시멘트량를 변화시켜 다짐시험, 일축압축시험 그리고 대형 삼축압축시험을 실시하고 단위 시멘트량과 재령에 따른 압축강도, 탄성계수 그리고 응력-변형특성 등을 검토하였으며 각 인자별 상관식을 제시함으로써 CSG 공법설계 및 해석에 필요한 기초적인 자료를 제공하고자 한다.

$XiVE^{(R)}$ 임플랜트 시스템에서 고정체보다 작은 직경의 지대주 장착이 경부 피질골 응력에 미치는 효과에 대한 유한요소해석적 연구 (FINITE ELEMENT EVALUATION OF THE EFFECT OF DIFFERENCES IN THE ABUTMENT AND THE FIXTURE DIAMETERS ON THE CERVICAL BONE STRESSES)

  • 유원재;이규복
    • 대한치과보철학회지
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    • 제43권1호
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    • pp.95-104
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    • 2005
  • Statement of problem. Higher stresses at the cervical bone around dental implants have been seen as a primary cause of the bone resorption at the site. Purpose : To determine the possibility of stress reduction by assembly of different abutment and implant in diameters. Material and methods. Abutments of several different diameters assembled on the top of XiVE$^{(R)}$ implants were axisymmetrically modeled for a series of finite element analyses. Abutments of 3.4, 3.8, 4.5, and 5.5 mm diameters were assumed to be sit on implants of the same or bigger diameters. All the abutments with an exception of 3.4mm dia, are technically possible to be assembled on bigger implants. Main consideration was given to the stresses at the cervical cortical bone induced by loads of parallel to the implant axis. Results and conclusions. 1. Higher stresses were observed at the cervical area of all the models of the same diameters of abutment and future. The peak stresses, which were shown to be a function of the fixture diameter, were from 1-1.85MPa. 2. Difference in the diameters of the abutments and the implants actually reduced the cervical bone stresses. 3. Downsizing of the abutment by one step resulted in 0.1MPa (5%) reduction of the stresses. In light of the relatively lower bone stress, however, this amount of stress reduction was decided to be biomechanically insignificant.

악골폭경이 치근형 임플란트 인접골에서의 응력에 미치는 영향에 대한 유한요소해석적 연구 (Finite Element Approach to Investigate the Influence of the Jaw Bone Dimension on the Stress Around the Root Analogue Dental Implant)

  • 장지만;이규복;이청희;조광현
    • 구강회복응용과학지
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    • 제22권1호
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    • pp.37-53
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    • 2006
  • Purpose: The purpose of this study was to investigate the influences of the jaw dimension on the bone stress. Materials and Methods: Root analogue implant of Frialit-2 Synchro model in the jaw bone of various thickness from 8mm to 13mm were modelled axisymmetrically for a series of finite element analyses. As load conditions, non-axisymmetric lateral load of 20N and an oblique load of 50N, as well as an axisymmetric vertical load of 50N were taken into consideration. Results: The cervical area of implant under the axisymmetric load and the base cortical bone under the non axisymmetric load condition were the areas of main concern where the higher level of stress were likely to be obtained. Conclusion: The results indicated that at the two concerned areas drastically different stress distribution could take place as a function of the load conditions. Under the vertical load, the lower level of stress was observed for the narrow jaw bone at the cervical cortical bone whereas stress at the base cortical bone remained virtually unchanged. Under the non axisymmetric load condition, however, the stress at the base cortical bone increased very rapidly as the jaw bone width increased without inducing any significant change in the stress level at the cervical area.

장축 실린더의 열변형 최소화를 위한 차열관 효과 해석 및 실험 연구 (An Analytical and Experimental Study on the Thermal Shroud Effect to Minimize Thermal Deformation of a High L/D Ratio Cylinder)

  • 안상태
    • 한국유체기계학회 논문집
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    • 제10권5호
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    • pp.54-63
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    • 2007
  • A barrel is a high length-to-diameter ratio cylinder that is influenced by environmental factors such as sunlight, precipitation, wind and clouds. Cross-barrel temperature differences caused by uneven heating or cooling lead to thermal deformation that degrades accuracy. Therefore, a barrel is covered by thermal shrouds to minimize the type of thermal deformation, "fall-of-shot". In this paper, an analytical and experimental study is presented to design the thermal shrouds for a gun barrel and to evaluate the thermal shroud effect. First, an analytical study on the thermal shroud effect to minimize thermal deformation of a gun barrel by sunlight and wind is performed. The coupled analysis of thermal fluid dynamics of the air flow between a barrel and thermal shrouds and thermal stresses of a barrel Is performed to clarify both the thermal shroud effect and the drift in gun muzzle orientation by thermal deformation. Second, experiments are carried out to test and evaluate the thermal shroud effect on the performance of a gun barrel. The drift in gun muzzle orientation against the solar radiation is confirmed by the experiments, and the results well agree with the analytical estimation. Third, three principal design factors that are presumed to have an effect on the performance of the thermal shrouds are also analyzed; sorts of shroud materials, wall-thickness of thermal shrouds, and distance of the gap between a barrel and thermal shrouds.

운전조건에 따른 펌프 터빈 시스템의 안정성 연구 (Reliability Investigation of a Pump-Turbine System at Various Operating Conditions)

  • 천청청;패트릭마크싱;최영도
    • 한국유체기계학회 논문집
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    • 제18권3호
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    • pp.46-52
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    • 2015
  • Pump-turbine system is widely used by the hydropower industry for stabilizing the electrical grid in the vast growing economy of most developed countries. This study only investigates the Fluid-structure Interaction (FSI) analysis of the pump-turbine system at various operating conditions. The FSI analysis can show how reliable each component of the system is by providing the engineer with a better understanding of high stress and deformation points, which could reduce the lifespan of the pump-turbine. Pump-turbine components are categorized in two parts, pressurized static parts and movable stressed parts. The fixed parts include the spiral casing, top and bottom cover, stay vane and draft tube. The movable parts include guide vanes and impeller blades. Fine hexahedral numerical grids were used for CFD calculation and fine tetrahedral grids were used for structural analysis with imported load solution mapping greater than 90 %. The maximum equivalent stress are much smaller than the material yield stress, and the maximum equivalent stress showed an increasing tendency with the varying of operating conditions from partial to excessive at both modes. In addition, the total deformation of all the operating conditions showed a small magnitude, which have quite small influence on the structural stability. It can be conjectured that this system can be safely implemented.

토목섬유 보강 구조물의 응력 및 거동 해석 (An Analysis of Stresses and Behaviors in the Geotextile-Reinforced Soil Structures)

  • 고홍석
    • 한국농공학회지
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    • 제30권4호
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    • pp.94-108
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    • 1988
  • The use of geotextile as reinforcing materials in soil structures has become widespread throughout the world. Geotextile reinforcement has been used in retaining walls, roadbed, embankment stabilization and especially reinforcement of soft foundation, and so on, In the past, however, its design and construction have been performed empirically. In this study, laboratory model tests were carried out in order to investigate the effects of geotextile rein- forcement on vertical and horizontal displacement and other characteristics in soft founda- tions. The experiments were executed in eight treatments ;no geotextile between embank - ment and subsoils, and seven geotextiles with different tensile strength. And such factors as the loading conditions, the tensile strength of geotextiles, the ingredient of geotextiles and the elapsed time were investigate in this study. And the analytical method were executed in order to study the stress and behavior of geotextile - reinforced soil structure by the nonlinear elasto - plastic finite element model. The following conclusions were drawn from this study. 1. Geotextile reinforcement reduced the effects of banking loads on subsoils more effectively with the increase of their tensile strength. 2. As the tensile strength of geotextiles was increase, the rate of the initial vertical disp - lacements of loading plate was reduced inverse proportional to loads, Rowever, the effect of loading was reduced when the loads exceed a certain limits, 3. The effect of reinforcement of nonwoven geotextile was 1.5-4.5 times larger than that of the woven geotextile with equivalent tensile strength. 4. The increased bearing capacity and the reduced settlement are proportioned as the tensile strength of geotextile. 5. The settlement at the long time loading were developed almost all, were completed after 10 days and the additional settlement were not developed since then. 6. The nonlinear elasto - plastic finite element method are accurate to predict the stresses and behayior of geotextile - reinforced soil structures.

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카본-페놀 직물복합재료의 층간인장물성 측정기법 (Test Method on Interlaminar Tensile Properties of Carbon fabric Reinforced Phenolic Composites)

  • 이지형;김형근;이형식
    • 한국추진공학회지
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    • 제10권3호
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    • pp.48-52
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    • 2006
  • 적층 복합재료를 구조재로 이용할 경우 발생하는 구조적 파단과 두꺼운 원환체 형상의 복합재를 성형 할 경우 발생하는 층간파단(interlaminar failures)은 주로 층간 인장응력에 기인하기 때문에 적층 복합재료의 층간인장 물성은 구조해석 시 요구되는 물성이다. 그러나 복합재료의 층간 인장물성은 국제적으로 통일된 시험방법 및 시험규격이 없고 신뢰할 수 있는 물성자료가 없어 자체적인 평가를 수행하여야 한다. 본 논문에서는 국내에서 내열/구조재로 생산되고 있는 카본/페놀 복합재료의 층간 인장물성 비교/평가에 앞서 층간 인장물성의 측정에 대한 실험적 연구를 수행하였다. 시험방법 연구에서는 알루미늄 시편을 이용하여 재료의 탄성한계 내에서 몇 가지 실험을 수행하여 시험방법을 비교 평가하였으며 그 결과로 선정한 시험방법을 복합재료에 적용하였다. 실험의 결과, 복합재 시편의 모든 면에서 같은 경향의 변형률을 얻음에 따라 저 하중에서 파단이 발생하는 복합재료의 층간 인장물성 최적 시험 기법을 확보하였다.

성형조건과 수지의 종류에 따른 사출 성형품의 성형 수축 (Shrinkage in Injection Molded Part for Operational Conditions and Resins)

  • 모정혁;정완진;류민영
    • Elastomers and Composites
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    • 제38권4호
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    • pp.295-302
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    • 2003
  • 사출성형에서 성형품의 수축현상은 사출온도, 사출압력, 금형온도와 같은 성형공정에 따라 다르게 나타나며 게이트의 크기 등과 같은 금형설계에 따라서도 다르게 나타난다. 또한 수지의 결정화 유무에 따라 다르게 나타나고 있다. 본 연구에서는 여러가지 공정변수와 수지 특성에 따른 성형 수축률을 결정성수지인 poly(butylene terephthalate) (PBT)와 비결정성 수지인 polycarbonate (PC), poly(methyl methacrylate) (PMMA)를 사용하여 연구하였다. 결정성 수지가 비결정성 수지에 비해 약 3배 정도의 큰 수축률을 보였다. 사출 성형품의 성형 수축은 사출온도와 금형온도가 높을수록 그리고 사출압력이 작을수록 수축률은 커지는 경향을 보였다. 게이트의 크기가 커질수록 캐비티내의 압력전달이 원활하여 성형수축률은 작아 졌다. 또한 수지의 흐름방향과 흐름직각방향의 수축률 실험에서는 흐름방향의 수축이 더 작은 경향을 보였다. 게이트와의 거리에 따른 성형수축률은 게이트에서 가까운쪽의 수축이 먼쪽보다 더 큰 수축을 보였는데 이 현상은 잔류응력의 차이로 인하여 나타난 현상으로 해석된다.

드릴쉽 건조 중 문풀 구조 수정 작업 및 구조적 안정성 검토 (Repair Procedure and Structural Strength Analysis to Damage of Moon-Pool Structure for Drillship During Construction)

  • 유인상;손상용;백승중;최용락;유해근;윤기정
    • 대한조선학회 특별논문집
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    • 대한조선학회 2011년도 특별논문집
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    • pp.12-16
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    • 2011
  • During the shipbuilding construction, the repair works will be occurred by various reasons such as the natural disaster, mistakes of engineers or workers, defect of material, and so on. The one of the engineer's responsibilities is to design considering every possibility and to prevent the repair works due to the mistakes during construction stages, but actually it is very difficult and impossible to avoid every mistake. However, it is also the responsibility of engineers to find the best solution for the unavoidable mistakes which is to maintain the capacity of vessel and guarantee the safety for the repair works considering the construction schedules and economic cost. In this paper, it will be introduced the brief of repair works to the structural damage of the moon-pool structure in drillship which is built in our shipyard. For the verification of the structural strength, the fatigue analysis has been carried out based on the guide of Classification society. Furthermore, the modifications of structure design and welding procedure have been applied to avoid the stress concentration in the moon-pool structure.

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이중 분지관내 혈액 및 혈액대용유체의 3차원 유동해석 (3-D Flow Analysis of Blood and Blood Substitutes in a Double Branching Model)

  • 서상호;유상신;노형운
    • 대한의용생체공학회:의공학회지
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    • 제18권2호
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    • pp.187-196
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    • 1997
  • The three-dimensional flow analysis using the finite volume method is presented to compare the steady flow characteristics of blood with those of blood substitutes such as water and aqueous polymer solution in an idealized double branching model. The model is used to simlllate the region of the abdominal aorta near the celiac and superior mesenteric branches. Apparent viscosities of blood and the aqueous Separan solution are represented as a function of shear rate by the Carreau model, Water and aqueoiu Separan AP-273 500wppm solution are frequently used as blood substitutes in vitro experiments. Water is a typical Newtonian fluid and blood and Separan solution are non-Newtonian fluids. Flow phenomena such as velocity distribution, pressure variation and wall shear stress distribution of water, blood and polymer solution are quite different due to differences of the rheological characteristics of fluids. Flow phenomena of polymer solution are qualitatively similar to those of blood but the phenomena of water are quite different from those of blood and polymer solution. It is recommended that a lion-Newtonian fluid which exhibits very similar rheological behavior to blood be used in vitro experiments. A non-Newtonian fluid whose rheological characteristics are very similar to those of blood should be used to obtain the meaninylll hemodynamic data for blood flow in vitro experiment and by numerical analysis

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