• 제목/요약/키워드: Strength design method

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계단식 보강토 옹벽 설계시 사면안정해석의 중요성 (Importance of global slope stability analysis in design of geosynthetic reinforced walls in tiered configuration)

  • 유충식;김선빈
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.176-183
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    • 2008
  • This paper highlights the importance of carrying out global slope stability analysis as part of design calculations for geosynethetic walls in tiered configuration. Four design case histories were selected to examine the appropriateness of their design by performing additional slope stability analyses using the shear strength reduction method with in the frame work of finite element analysis. The results indicated that all of the walls examined, which were designed to meet the current design guide lines, did not satisfy the global slope stability requirement, and that longer reinforcements are required in the upper tiers to achieve the minimum factor of safety. Practical implications of the findings are discussed.

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알루미늄합금 선체의 최종 종강도에 대한 해석 (Longitudinal Ultimate Strength Analysis of Aluminum Alloy Ship Structures)

  • 백점기;이제명;박철민;박영일;고재용
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2004년도 가을 학술발표회 논문집
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    • pp.254-261
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    • 2004
  • Until now, there are different kinds of design and evaluation method criteria for ship hulls and ship strength based on allowable stress design using past experiences. But for many sinking accidents of large ships in operation, it has also a doubt about allowable stress design. It is recognized that structural plastic collapse caused by large external force is a main cause of that accidents. Therefore, there is the need for new design criteria based on ultimate limit state with a consideration about progressive collapse behavior as a safety assessment of ship hulls. Also many aluminum alloy ships is built for the purposes of lightweight of ship hulls, with that, a developing of criteria based on ultimate limit state should be made. In this study, the ultimate strength characteristics of aluminum ship hull are investigated by the ALPS/USAS program using already developed design formula for aluminum plate and stiffened panel.

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고온성형 위한 고강도보론강의 기계적 특성 및 마이크로구조 연구 (Mechanical and microstructural characteristics of a high-strength boron-alloyed steel for hot press forming)

  • 이종신;채명수;박춘달;김영석
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.1355-1360
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    • 2007
  • The use of high strength steels are gradually increasing to reduce the weight of automobile to improve the environmental problems and collision safety. To encounter the traditional disadvantages of high strength steels like as a poor formability and high springback, hot press forming has been developed. By this method, the strength of steel sheet is increased about three times of original one through die quenching process. In order to the design of hot press forming tools by using numerical simulation, the knowledge of mechanical and microstructural characteristics are required. This study show the mechanical and microstructural characteristics of a high strength boron-alloyed steel according to the various quenching conditions.

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선박구조설계 합리화를 위한 선체 종강도의 신뢰성 해석 (Reliability Analysis of Ship′s Longitrdinal Strength for the Rational Ship Structural Design)

  • 김외현;김병주
    • 대한조선학회논문집
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    • 제32권1호
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    • pp.25-36
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    • 1995
  • 확률적인 접근법으로서의 신뢰성 해석법의 소개와 이의 선체 구조 강도 평가 방법에의 적용에 관해 고찰하였다. 당사에서 건조한 유조선 및 살물선 34척을 대상으로 인장 항복강도, 보강판의 압축 최종강도, 그리고 선각 거어더의 최종강도 등 몇몇 대표적인 종강도 파괴양식에 대해 신뢰성 해석을 수행하였다. 해석결과로서 각 선박에 대한 신뢰도 지수를 보이고 종강도에 대한 신뢰성 해석시의 목표 신뢰도 지수를 제시하였다. 배길이와 건조연도에 따른 신뢰도 지수의 변화를 검토하였으며 결과로서 각 선박의 안전도가 큰 차이를 보임을 알 수 있었다. 각 선박에 대해 균일한 수준의 신뢰도를 제공하기 위하여 부분 안전계수를 이용한 새로운 강도 평가 기준을 마련하였다. AFOSM 방법 및 신뢰성 조건(RC) 방법에 따라 부분 안전계수를 계산하고 이를 비교하였으며 원하는 신뢰도를 줄 수 있는 설계식을 RC 방법으로 구하였다. 부분 안전계수로부터 구한 새로운 설계식을 사용하여 신뢰성 해석을 수행한 선박에 대해 재해석을 실시하였다. 그 결과 처음보다 많이 개선된 균일한 수준의 신뢰도를 얻을 수 있었고 이로부터 신뢰성 해석의 적용가능성과 유용성을 확인하였다.

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Modeling shear capacity of RC slender beams without stirrups using genetic algorithms

  • Nehdi, M.;Greenough, T.
    • Smart Structures and Systems
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    • 제3권1호
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    • pp.51-68
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    • 2007
  • High-strength concrete (HSC) is becoming increasingly attractive for various construction projects since it offers a multitude of benefits over normal-strength concrete (NSC). Unfortunately, current design provisions for shear capacity of RC slender beams are generally based on data developed for NSC members having a compressive strength of up to 50 MPa, with limited recommendations on the use of HSC. The failure of HSC beams is noticeably different than that of NSC beams since the transition zone between the cement paste and aggregates is much denser in HSC. Thus, unlike NSC beams in which micro-cracks propagate around aggregates, providing significant aggregate interlock, micro-cracks in HSC are trans-granular, resulting in relatively smoother fracture surfaces, thereby inhibiting aggregate interlock as a shear transfer mechanism and reducing the influence of compressive strength on the ultimate shear strength of HSC beams. In this study, a new approach based on genetic algorithms (GAs) was used to predict the shear capacity of both NSC and HSC slender beams without shear reinforcement. Shear capacity predictions of the GA model were compared to calculations of four other commonly used methods: the ACI method, CSA method, Eurocode-2, and Zsutty's equation. A parametric study was conducted to evaluate the ability of the GA model to capture the effect of basic shear design parameters on the behaviour of reinforced concrete (RC) beams under shear loading. The parameters investigated include compressivestrength, amount of longitudinal reinforcement, and beam's depth. It was found that the GA model provided more accurate evaluation of shear capacity compared to that of the other common methods and better captured the influence of the significant shear design parameters. Therefore, the GA model offers an attractive user-friendly alternative to conventional shear design methods.

선체 유공보강판의 최종강도 거동에 관한 연구 (A Study on the Ultimate Strength Behavior for Ship Perforated Stiffened Plate)

  • 고재용;이준교;박주신;배동균
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2005년도 춘계학술발표회
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    • pp.141-146
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    • 2005
  • 선체는 기본적으로 판부재들의 조합으로 구성되어 있으며 이들중 상당수는 유공판(Perforated plate)이다. 선체에 설치된 유공판으로서는 선체 상갑판 해치(하역시설로 사용), 선저부의 거더와 플로어(중량경감과 선박 건조 및 검사시 통로확보용), 다이어프램(중량경감 및 파이프 관통의 목적)둥이 있다. 이들 유공판에 하중이 작용하면 좌굴과 최종강도 특성이 크게 변화할 뿐만 아니라 수반되는 면내응력도 재 분포하게 되어 심각한 강도문제를 야기 시킬 수 있다. 실적선에서는 유공주위에 스티프너 보강을 통하여 취약한 좌굴강도 보완하고 있으며, 유공을 고려한 최적의 유공보강판 모델을 적용한 좌굴강도 및 최종강도를 파악할 필요성이 대두시 되고 있다. 이와 같은 측면에서 각 조선소에서는 각국 선급들이 제시하는 유공판의 좌굴설계식을 사용하여 강도계산을 하고 있으나 임의의 유공크기에 대찬 좌굴강도 및 최종강도 평가법을 찾기란 매우 어려운 일이다. 본 연구에서는 실선에서 사용중인 유공보강판의 모델을 조사하여 비선형유한요소법을 적용하여 면내 압축하중이 작용하는 경우에 대해서 유공의 크기와 웹 치수를 변화시켜가며, 최종강도 시리즈 해석을 수행하고 압축최종강도에 미치는 영향을 검토하였다.

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기둥-보 휨강도비와 단위하중법을 이용한 철골모멘트골조의 강성설계기법 (Drift Design Method of Steel Moment Frames by using Column-Beam Strength Ratios and Unit-Load Method)

  • 오병관;박효선;최세운
    • 한국전산구조공학회논문집
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    • 제29권6호
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    • pp.563-569
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    • 2016
  • 본 논문에서는 철골모멘트골조의 초기 강성과 연성을 동시에 조절하기 위해 기둥-보 휨강도비를 고려한 재분배 기법이 제시된다. 제시되는 기법은 총 구조물량과 기둥-보 휨강도비에 대한 제약조건을 만족시키면서 구조물의 최상층의 변위를 최소화한다. 고려된 설계변수는 구조부재의 단면적을 사용하며, 정식화된 문제로부터 최적의 결과를 얻기 위해 Sequential Quadratic Programming(SQP) 기법을 사용한다. 최상층의 횡변위에 대한 각 부재의 변위기여도를 단위하중법을 통해 구하고, 이를 최상층의 횡변위가 감소하도록 각 부재의 단면을 재설계한다. 각 부재의 변위기여도를 이용하여 부재의 단면을 재설계하는 과정은 구조물의 초기 강성을 향상시키는 효과를 가진다. 동시에, 제시된 기법은 기둥-보 휨강도비를 제약함으로써 구조물의 연성을 조절하도록 한다. 제시된 최적변위설계기법은 철골골조 예제에 적용하여 적용성을 검증한다. 적용한 결과 제시된 기법을 통해 구조물의 초기강성과 연성능력이 조절되는 것을 확인할 수 있었다.

고무차륜형 경량전철개발을 위한 구조체의 강도해석 (Carbody strength analysis for a LRT of rubber tire type)

  • 이호용;한석윤;정종덕;홍재성;이관섭
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2000년도 춘계학술대회 논문집
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    • pp.455-462
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    • 2000
  • The characteristic of “Korea LRT Carbody” is designed by using AED(All Extrusion Design) method. This is developed in Europe and be introduced in this paper minutely. The window type of “Korea LTR” has no supported frame, so the passengers ensure the outside view widely. The passenger's door will designed by plug type - This is the first time in Korea. In this report we have an object to the strength analysis for the carbody design. For the purpose of safety and lightening, we are going to research the section of thickness through optimization design.

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Reliabilities of distances describing bolt placement for high strength steel connections

  • Oztekin, Ertekin
    • Structural Engineering and Mechanics
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    • 제54권1호
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    • pp.149-168
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    • 2015
  • In the bolted connections, bolt placements are generally described and are generally made in the direction of design effects and in the perpendicular direction to design effects. In these both directions, the reliability of the distance of bolts to the edges of connection plate and the distance of bolts to each other is investigated for high strength steel connections built up with high strength bolts in this study. For this purpose, simple SL (bearing type shear connection) and SLP (bearing type shear connection for body-fit bolts) type steel connections with St 52 grade steel plates with 8 different thicknesses and with 8.8D grade high strength bolts (HV) were constituted and analyzed under H (Dead Loads+Live Loads+Snow Loads+Roof Loads) and HZ (H Loads+Wind Loads+Earthquake Loads) loadings. Geometric properties, material properties and design actions were taken as random variables. Monte Carlo Simulation method was used to compute failure risk and the first order second moment method was used to determine the reliability indexes of those different distances describing the placement of bolts. Results obtained from computations have been presented in graphics and in a Table. Then, they were compared with some values proposed by some structural codes. Finally, new equations were constituted for minimum and maximum values of distances describing bolt placement by regression analyses performed on those results.

Cost effective optimal mix proportioning of high strength self compacting concrete using response surface methodology

  • Khan, Asaduzzaman;Do, Jeongyun;Kim, Dookie
    • Computers and Concrete
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    • 제17권5호
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    • pp.629-638
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    • 2016
  • Optimization of the concrete mixture design is a process of search for a mixture for which the sum of the cost of the ingredients is the lowest, yet satisfying the required performance of concrete. In this study, a statistical model was carried out to model a cost effective optimal mix proportioning of high strength self-compacting concrete (HSSCC) using the Response Surface Methodology (RSM). The effect of five key mixture parameters such as water-binder ratio, cement content, fine aggregate percentage, fly ash content and superplasticizer content on the properties and performance of HSSCC like compressive strength, passing ability, segregation resistance and manufacturing cost were investigated. To demonstrate the responses of model in quadratic manner Central Composite Design (CCD) was chosen. The statistical model showed the adjusted correlation coefficient R2adj values were 92.55%, 93.49%, 92.33%, and 100% for each performance which establish the adequacy of the model. The optimum combination was determined to be $439.4kg/m^3$ cement content, 35.5% W/B ratio, 50.0% fine aggregate, $49.85kg/m^3$ fly ash, and $7.76kg/m^3$ superplasticizer within the interest region using desirability function. Finally, it is concluded that multiobjective optimization method based on desirability function of the proposed response model offers an efficient approach regarding the HSSCC mixture optimization.