• 제목/요약/키워드: Finite Element Approximation

검색결과 358건 처리시간 0.02초

변형체간의 접촉을 고려한 3차원 초소성 성형/확산접합의 유한요소해석 (3-D Finite Element Analysis of Superplastic Forming/Diffusion Bonding Processes with Consideration of Contact between Deformable Bodies)

  • 강영길;송재선;홍성석;김용환
    • 한국군사과학기술학회지
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    • 제11권1호
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    • pp.57-65
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    • 2008
  • Superplastic forming/diffusion bonding(SPF/DB) processes with inner contact were analyzed using a 3-D rigid visco-plastic finite element method. A constant-triangular element based on membrane approximation and an incremental theory of plasticity are employed for the formulation. The hierarchical search algorithm for the contact searching has been applied. The algorithms for contact force processing were designed to handle equally well contact between deformable bodies, as well as rigid bodies. The plate of three and four sheets for 3-D SPF/DB model are analyzed using the developed program. The validity for the analysis is verified by comparison between analysis, experiment and results in the literature.

자기적 비선형발생을 고려한 변칙적자동분석의 유한요소해석에 관한 연구 (A Study on the Analysis for the Nonlinear Magnetic Flux Distribution of a Transformer by Finite Element Method)

  • Dal-Ho Im;Chan-O Kim
    • 대한전기학회논문지
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    • 제32권12호
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    • pp.419-426
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    • 1983
  • This study is to analyze the nonlinear characteristics of magnetic flux distribution of a transformer by Finite Element Method using 2-dimensional elements. To accomplish this, first a single phase shell-type transformer is selected a model to be analyzed, and the element equation is derived by the vriational approach. And then using the numerical approximation of a magnetization curve and the Direct Convergence Method which is presented in this study, the magnetic nonlinear characteristic is analyzed. In this consequence, the resultant values are converged within 10 iterations of calculation. And in the comparison with the case of linear analysis, these results are more accurate and reasonable.

동차선형 유한요소와 Fractional Step방법을 이용한 열유동장의 해석 (Analysis of Thermal flow Field Uing Equal Order Linear Finite Element and Fractional Step Method)

  • 최형권;유정열
    • 대한기계학회논문집
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    • 제19권10호
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    • pp.2667-2677
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    • 1995
  • A new numerical algorithm using equal order linear finite element and fractional step method has been developed which is capable of analyzing unsteady fluid flow and heat transfer problems. Streamline Upwind Petrov-Galerkin (SUPG) method is used for the weighted residual formulation of the Navier-Stokes equations. It is shown that fractional step method, in which pressure term is splitted from the momentum equation, reduces computer memory and computing time. In addition, since pressure equation is derived without any approximation procedure unlike in the previously developed SIMPLE algorithm based FEM codes, the present numerical algorithm gives more accurate results than them. The present algorithm has been applied preferentially to the well known bench mark problems associated with steady flow and heat transfer, and proves to be more efficient and accurate.

변요소법을 이용한 3차원 와전류 문제의 유한요소 해석 (3D Finite Element Analysis of Eddy Current Using Edge Elements)

  • 홍승표;류재섭;고창섭
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 추계학술대회 논문집 학회본부 B
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    • pp.262-264
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    • 2000
  • A numerical method for the analysis of 3D eddy current in conductors due to applied time varying field is suggested using the finite element method. In the approximation of the field quantifies, the edge element is used, because it reduce the required computer memory and the computing time compared with the nodal elements. With edge elements, furthermore, the field governing equations become simple because the electric scalar potential ${\phi}$ can be set to zero. The modified magnetic vector potential($A^*$) is used as a state variable. The analysed results are compared with the experimentally measured ones for the TEAM workshop problem3.

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3차원 입체요소를 사용한 정밀 전자부품의 사출성형 해석 (Numerical Analysis for Injection Molding of Precision Electronics Parts Using Three-Dimensional Solid Elements)

  • 박근;박제현;최상련
    • 소성∙가공
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    • 제11권5호
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    • pp.414-422
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    • 2002
  • Most of numerical analyses for injection molding have been based on the Hele Shaw's approximation: two-dimensional flow analysis. In some cases, that approximation causes significant errors due to loss of geometrical information as well as simplification of the flow characteristics along the thickness direction. The present work covers numerical analyses of injection molding using three-dimensional solid elements. The accuracy of the analysis results has been verified through some numerical examples in comparison with the classical shell-based approach. The Proposed approach is then applied to predict product defects and to improve flow characteristics for a precision electronics part. In addition, design of experiment has been utilized in order to find the optimal process conditions for better product quality.

3차원 입체요소를 사용한 정밀 전자부품의 사출성형해석 (Numerical Analysis for Injection Molding of Precision Electronics Parts using Three-Dimensional Solid Elements)

  • 박근;박제현;최상련
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2002년도 금형가공 심포지엄
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    • pp.68-75
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    • 2002
  • Most of numerical analyses for injection molding have been based on the Hele Shaw's approximation: two-dimensional flow analysis. In some cases, that approximation causes significant errors due to loss of geometrical information as well as simplification of the flow characteristics along the thickness direction. The present work covers numerical analyses of injection molding using three-dimensional solid elements. The accuracy of the analysis results has been verified through some numerical examples in comparison with the classical shell-based approach. The proposed approach are then applied to predict product defects and to improve flow characteristics for a precision electronics part. In addition, design of experiment has been utilized in order to find the optimal process conditions for better product quality.

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유한요소법에 의한 열점탄성 응력해석 (Thermoviscoelastic Stress Analysis by the Finite Element Method)

  • 심우진;박인규
    • 대한기계학회논문집A
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    • 제20권7호
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    • pp.2148-2158
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    • 1996
  • Uncoupled, quasi-static and linear thermoviscoelastic problems are analyzed in time domain by the finite element approximation which is developed using the principle of virtual work and viscoelasticity matrices instead of shear and bulk relaxation functions as in usual formulations. The material is assumed to be isotropic, homegeneous and thermorheologically simple, which means that the temperature-time equivalence postulate is effective. The stress-strain laws are expressed by relaxation-type hereditary integrals. In spatial and time discritizations, isoparametric quadratic quadrilateral finite elements and linear time variations are adopted. For explicit derivations, the viscoelastic material is assumed to behave standard linear solid in shear and elastically in dilatation. Two-dimensional examples are solved under general temperature distributions T = T(x, t), and compared with other opproximate solutions to show the versatility of the presented analysis.

Marguerre shell type secant matrices for the postbuckling analysis of thin, shallow composite shells

  • Arul Jayachandran, S.;Kalyanaraman, V.;Narayanan, R.
    • Structural Engineering and Mechanics
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    • 제18권1호
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    • pp.41-58
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    • 2004
  • The postbuckling behaviour of thin shells has fascinated researchers because the theoretical prediction and their experimental verification are often different. In reality, shell panels possess small imperfections and these can cause large reduction in static buckling strength. This is more relevant in thin laminated composite shells. To study the postbuckling behaviour of thin, imperfect laminated composite shells using finite elements, explicit incremental or secant matrices have been presented in this paper. These incremental matrices which are derived using Marguerre's shallow shell theory can be used in combination with any thin plate/shell finite element (Classical Laminated Plate Theory - CLPT) and can be easily extended to the First Order Shear deformation Theory (FOST). The advantage of the present formulation is that it involves no numerical approximation in forming total potential energy of the shell during large deformations as opposed to earlier approximate formulations published in the literature. The initial imperfection in shells could be modeled by simply adjusting the ordinate of the shell forms. The present formulation is very easy to implement in any existing finite element codes. The secant matrices presented in this paper are shown to be very accurate in tracing the postbuckling behaviour of thin isotropic and laminated composite shells with general initial imperfections.

계층적 축대칭요소에 의한 P-version모델 (P-Version Model Based on Hierarchical Axisymmetric Element)

  • 우광성;장용채;정우성
    • 대한토목학회논문집
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    • 제12권4_1호
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    • pp.67-76
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    • 1992
  • 축대칭(軸對稱) 선형강성(線形彈性) 응력해석을 위해 p-version 유한요소법에 기초한 계층적(階層的) 정식화 과정이 제안되었다. 이 방식은 적분형 르장드르 다항식을 사용하여 절점좌표값을 갖지 않는 절점을 추가하여 형상함수의 조합형태로 변위함수(變位)를 근사시키는 방법이다. 형상함수(形狀函數)가 계층적 성질을 갖기 때문에 강성도(剛性度)행렬과 하중벡터도 계층적이 된다. 본 연구에서 제안된 요소(要所)의 장점(長點)은 다음과 같다. 첫째, 개선된 수치연산의 효율성이며 둘째, 요소간에 서로 다른 차수(次數)의 형상함수를 사용할 수 있고 셋째, p-세분화를 할 때 저차(低次)일 때 계산된 값을 그대로 사용할 수 있다. 수치예제를 통해 제안된 요소의 정확도(正確度), 효율성(效率性), 모델링의 간편성(簡便性), 적용성(適用性) 및 변위와 응력 그리고 에너지 Norm등을 사용하여 그 우월성을 입증하고 있다. 몇 가지 예제의 해석결과는 이미 발표된 논문과 아울러 해석적 방법에 의한 결과와 비교되었다.

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스프링백 특성에 영향을 미치는 수치변수의 분석을 위한 다구치 실험계획법의 응용 (Application of the Taguchi Method to the Analysis of the Numerical Parameters Influencing Springback Characteristics)

  • 김형종;전태보
    • 산업기술연구
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    • 제20권A호
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    • pp.211-218
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    • 2000
  • It is desirable but difficult to predict springback quantitatively and accurately for successful tool and process design in sheet stamping operations. The result of springback analysis by the finite element method (FEM) is sensitively influenced by numerical factors such as blank element size, number of integration points, punch velocity, contact algorithm, etc. In the present work, a parametric study by Taguchi method is performed in order to evaluate the influence of numerical factors on the result of springback analysis quantitatively and to obtain the combination of numerical factors which gives the best approximation to experimental data. Since springback is determined by the residual stress after forming process, it is important to evaluate stress distribution accurately. The oscillation in the time history curve of stress obtained by the dynamic-explicit finite element method says that the stress solution at termination time is in very unstable state. Therefore, a variability study is also carried out in this study in order to assess the stability of implicit springback analysis starting from the stress solution by explicit forming simulation. The U-draw bending process, one of the NUMISHEET '93 benchmark problems, is adopted as an application model because it is most popular one for evaluating the springback characteristic.

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