• 제목/요약/키워드: Plastic collapse limit

검색결과 41건 처리시간 0.022초

소성 붕괴하중 및 변형거동 해석(1) (Simulation of Plastic Collapsing Load and Deformation Behaviours(I))

  • 김영석
    • 대한기계학회논문집
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    • 제19권9호
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    • pp.2165-2172
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    • 1995
  • Optimization of mesh discretization has been proposed to improve the accuracy of limit analysis solution of collapse load by using the Rigid Body Spring Model(R. B. S. M) under the plane strain condition. Moreover, the fracture behaviour of materials was investigated by employing the fracture mechanism of a spring connecting the triangular rigid body element. It has been clarified that the collapse load and the geometry of slip boundary for optimized mesh discretization were close to those of the slip line solution. Further, the wedge-shaped fracture of a cylinder under a lateral load and the central fracture of a strip in the drawing process were well simulated.

다중균열 구조물의 소성붕괴거동 평가 (Evaluation of Plastic Collapse Behavior for Multiple Cracked Structures)

  • 문성인;장윤석;김영진;이진호;송명호;최영환;황성식
    • 대한기계학회논문집A
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    • 제28권11호
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    • pp.1813-1821
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    • 2004
  • Until now, the 40% of wall thickness criterion, which is generally used for the plugging of steam generator tubes, has been applied only to a single cracked geometry. In the previous study by the authors, a total number of 9 local failure prediction models were introduced to estimate the coalescence load of two collinear through-wall cracks and, then, the reaction force model and plastic zone contact model were selected as the optimum ones. The objective of this study is to estimate the coalescence load of two collinear through-wall cracks in steam generator tube by using the optimum local failure prediction models. In order to investigate the applicability of the optimum local failure prediction models, a series of plastic collapse tests and corresponding finite element analyses for two collinear through-wall cracks in steam generator tube were carried out. Thereby, the applicability of the optimum local failure prediction models was verified and, finally, a coalescence evaluation diagram which can be used to determine whether the adjacent cracks detected by NDE coalesce or not has been developed.

3차원 유한요소해석을 통해 도출한 균열배관의 소성한계압력식 (Plastic Limit Pressure Solutions for Cracked Pipes Using 3-D Finite Element Method)

  • 심도준;허남수;김윤재;김영진
    • 대한기계학회논문집A
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    • 제27권1호
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    • pp.26-33
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    • 2003
  • Based on detailed FE limit analyses, the present paper provides tractable approximations fer plastic limit pressure solutions fur axially through-wall-cracked pipe; axially (inner) surface-cracked pipe; circumferentially through-wall-cracked pipe; and circumferentially (inner) surface-cracked pipe. In particular, for surface crack problems, the effect of the crack shape, the semi-elliptical shape or the rectangular shape, on the limit pressure is quantified. Comparisons with existing analytical and empirical solutions show a large discrepancy in circumferential short through-wall cracks and in surface cracks (both axial and circumferential). Being based on detailed 3-D FE limit analysis, the present solutions are believed to be the most accurate, and thus to be valuable information not only for plastic collapse analysis of pressurised piping but also for estimating non-linear fracture mechanics parameters based on the reference stress approach.

원형평판의 붕괴문제에 관한 유한차분 완전 하계해 (Complete lower bound solutions of circular plate collapse problems by a finite difference method)

  • 허훈
    • 대한기계학회논문집
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    • 제14권6호
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    • pp.1382-1390
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    • 1990
  • 본 연구에서는 Yang의 이론을 바탕으로 여러가지 원형집중하중을 받는 원형평 판에 관한 최대하계해를 구하고자 한다.앞서 열거한 문헌에서는 여러가지 해석법이 제시되었으나, 문제의 성격에 비하여 그 해법이 매우 복잡하였다. 본 논문에서는 원 형평판에 관한 해법으로서 전산기를 응용하여 가능한 한 단순한 해법으로 최대화기법 에 의한 완전한 해를 얻기 위한 시도를 제시하고자 한다.

Stiffener형상에 따른 보강판의 트리핑거동에 관한 연구 (A Study on the Tripping Behaviour of Stiffened Plate according to the Stiffener type)

  • 고재용;박주신;박성현
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2004년도 춘계학술대회 논문집
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    • pp.89-94
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    • 2004
  • 일반적으로 강구조물을 복잡한 판넬로 구성되어 있다. 구조의 전체적인 붕괴는 각각의 구성요소들의 좌굴과 소성붕괴에 영향을 받는다. 최종한계상태설계법에서는 어떤 구조적인 구성요소들의 좌굴과 소성붕괴에 대한 정확한 계산은 중요하다. 구조물은 개별적 요소로 구성되어 있지 않으며 고차 부정정 자유도를 가진 복잡한 구조이다. 이러한 구조물을 해석하기 위해서 단순화나 이상화를 통하여서 가능하며 일반적으로 복잡한 부정정 구조의 해석에 사용되어지고 있다. 본연구의 목적은 일축압축하중이 작용할 경우에 보강재의 트리핑이 최종강도에 미치는 영향을 규명하는 것이며 또한 보강재 단면의 특성에 따른 트리핑거동을 탄소성대변형 유한요소법을 이용하여 해석하였다.

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Limit analysis of plates-a finite element formulation

  • Capsoni, Antonio;Corradi, Leone
    • Structural Engineering and Mechanics
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    • 제8권4호
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    • pp.325-341
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    • 1999
  • A procedure for the computation of the load carrying capacity of perfectly plastic plates in bending is presented. The approach, based on the kinematic theorem of limit analysis, requires the evaluation of the minimum of a convex, but non-smooth, function under linear equality constraints. A systematic solution procedure is devised, which detects and eliminates the finite elements which are predicted as rigid in the collapse mechanism, thus reducing the problem to the search for the minimum of a smooth and essentially unconstrained function of nodal velocities. Both Kirchhoff and Mindlin plate models are considered. The effectiveness of the approach is illustrated by means of some examples.

탄소성 모델에 의한 포물선 아치의 극한 내하력 평가 (The Ultimate Load Capacity of the Parabolic Arches by Elasto-Plastic Model)

  • 조진구;박근수
    • 한국농공학회지
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    • 제44권3호
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    • pp.92-100
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    • 2002
  • The advent or high-strength steel has enabled the arch structures to be relatively light, durable and long-spanned by reducing the cross sectional area. On the other hand, the possibility of collapse may be increased due to the slender members which may cause the stability problems. The limit analysis to estimate the ultimate load is based on the concept of collapse mechanism that forms the plastic zone through the full transverse sections. So, it is not appropriate to apply it directly to the instability analysis of arch structures that are composed with compressive members. The objective of this study is to evaluate the ultimate load carrying capacity of the parabolic arch by using the elasto-plastic finite element model. As the rise to span ratio (h/L) varies from 0.0 to 0.5 with the increment of 0.05, the ultimate load has been calculated fur arch structures subjected to uniformly distributed vertical loads. Also, the disco-elasto-plastic analysis has been carried out to find the duration time until the behavior of arch begins to show the stable state when the estimated ultimate load is applied. It may be noted that the maximum ultimate lead of the parabolic arch occurs at h/L=0.2, and the appropriate ratio can be recommended between 0.2 and 0.3. Moreover, it is shown that the circular arch may be more suitable when the h/L ratio is less than 0.2, however, the parabolic arch can be suggested when the h/L ratio is greater than 0.3. The ultimate load carrying capacity of parabolic arch can be estimated by the well-known formula of kEI/L$^3$where the values of k have been reported in this study. In addition, there is no general tendency to obtain the duration time of arch structures subjected to the ultimate load in order to reach the steady state. Merely, it is observed that the duration time is the shortest when the h/L ratio is 0.1, and the longest when the h/L ratio is 0.2.

선형 매칭 기법을 활용한 해저 샌드위치 파이프의 복합하중 영향도 분석 (Investigating the Subsea Sandwich Pipeline Integrity under Complex Loadings)

  • 박거락;송규;최영재;조락균;김충수
    • 한국압력기기공학회 논문집
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    • 제17권2호
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    • pp.119-125
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    • 2021
  • Subsea pipelines are widely used to transport hydrocarbons from ultra-deep seawater to facilities on the coast. A sandwich pipe is a pipe-in-pipe system in which the annulus between the two concentric steel pipes is filled with polymer cores and fillers for insulation and structural reinforcement. Sandwich pipeline is always exposed to complex loading such as bending moment, bulking, internal and external pressures caused by installation, operation and environmental factors. This research provides insights into the structural integrity of sandwich pipeline exposed to complex loading conditions using a linear matching method (LMM). The finite element model of the sandwich pipeline has been generated from previous research, and the model validation is performed by comparing the results of the linear analysis between the two models. The temperature dependent material properties are used to simulate the behavior of real pipeline, and the elastic-perfectly plastic (EPP) model has been taken into account for the material non-linearity. Numerical results provide comprehensive insights into the structural response of the sandwich pipeline under monotonic and cyclic loading and provide notable points about the evaluation of the plastic collapse limit and the elastic shakedown limit of the sandwich pipeline.

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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2차좌굴을 포함하는 선체판의 탄소성거동에 관한 연구 (A Study of the Buckling/plastic Collapse Behaviour of Ship Plates with Secondary Buckling)

  • 고재용;이돈출;유영훈;조영태;박성현
    • 한국항해항만학회지
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    • 제26권1호
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    • pp.50-54
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    • 2002
  • 선박은 박판으로 이루어진 상자형구조물이기 때문에 선박이 황천항해를 하게 되면 선체의 상갑판과 선저판에는 호깅이나 새깅이 반복적으로 일어나므로 선테판에는 인장력과 압축력이 반복적으로 작용하게 된다 이 중에서도 압축력이 작용하는 경우가 선박의 종강도상에 치명적인 결과를 가져올 수 있다. 따라서, 본 본문에서는 선체판중에서 종횡비가 1.4인 판을 대상으로 하여 탄소성유한요소해석을 통하여 압축하중을 계속적으로 증가시켜 좌굴과 함께 탄소성대변형거동을 밝힘과 동시에 2차좌굴과 탄소성거동과의 메카니즘을 규명하여 압축하중을 받는 선테판의 탄소성대변형거동을 규명하였다.