• 제목/요약/키워드: elastic-plasticity

검색결과 389건 처리시간 0.028초

싱글 클린칭 공정에서 소재간 마찰이 축방향 분리력에 미치는 영향 (Influence of Friction Between Materials on the Axial Direction Pull Force in Single Clinching)

  • 이득원;;이찬주;전만수
    • 소성∙가공
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    • 제30권2호
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    • pp.83-90
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    • 2021
  • In this paper, a parametric study on the influence of friction between materials on pull force in single clinching is conducted using an axisymmetric elasto-plastic finite element method and law of Coulomb friction. An appropriate finite element analysis model is given, which minimizes the effect of the material model and numerical factors including the number of quadrilateral finite elements and blank radius. It is emphasized that the elasto-plastic material model should be employed because the elastic deformation of the internal region is affected more by the pull force. It has been shown that the pull force increases as friction coefficient increases and that the optimized friction coefficient is around 0.4, which is qualitatively comparable with its theoretical value. When the friction coefficient reaches 0.5 in the example studied, the neck fracture is predicted.

A comprehensive laboratory compaction study: Geophysical assessment

  • Park, Junghee;Lee, Jong-Sub;Jang, Byeong-Su;Min, Dae-Hong;Yoon, Hyung-Koo
    • Geomechanics and Engineering
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    • 제30권2호
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    • pp.211-218
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    • 2022
  • This study characterizes Proctor and geophysical properties in a broad range of grading and fines contents. The results show that soil index properties such as uniformity and fines plasticity control the optimum water content and peak dry unit trends, as well as elastic wave velocity. The capillary pressure at a degree of saturation less than S = 20% plays a critical role in determining the shear wave velocity for poorly graded sandy soils. The reduction in electrical resistivity with a higher water content becomes pronounced as the water phase is connected A parallel set of compaction and geophysical properties of sand-kaolinite mixtures reveal that the threshold boundaries computed from soil index properties adequately capture the transitions from sand-controlled to kaolinite-controlled behavior. In the transitional fines fraction zone between FF ≈ 20 and 40%, either sand or kaolinite or both sand and kaolinite could dominate the geophysical properties and all other properties associated with soil compaction behavior. Overall, the compaction and geophysical data gathered in this study can be used to gain a first-order approximation of the degree of compaction in the field and produce degree of compaction maps as a function of water content and fines fraction.

Numerical investigation on the flexural links of eccentrically braced frames with web openings

  • Erfani, S.;Vakili, A.;Akrami, V.
    • Steel and Composite Structures
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    • 제44권2호
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    • pp.183-198
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    • 2022
  • Plastic deformation of link beams in eccentrically braced frames is the primary dissipating source of seismic energy. Despite the excellent compatibility with the architectural designs, previous researches indicate the deficiency of flexural yielding links compared to the shear yielding ones because of their localized plastic deformation. Previous investigations have shown that implementing web openings in beams could be an efficient method to improve the seismic performance of moment-resisting connections. Accordingly, this research investigates the use of flexural links with stiffened and un-stiffened web openings to eliminate localized plasticity at the ends of the link. For this purpose, the numerical models are generated in finite element software "Abaqus" and verified against experimental data gathered from other studies. Models are subjected to cyclic displacement history to evaluate their behavior. Failure of the numerical models under cyclic loading is simulated using a micromechanical based damage model known as Cyclic Void Growth Model (CVGM). The elastic stiffness and the strength-based and CVGM-based inelastic rotation capacity of the links are compared to evaluate the studied models' seismic response. The results of this investigation indicate that some of the flexural links with edge stiffened web openings show increased inelastic rotation capacity compared to an un-perforated link.

적층제조 연속섬유강화 고분자 복합재료의 물성 예측 (Prediction of the Mechanical Properties of Additively Manufactured Continuous Fiber-Reinforced Composites )

  • ;;김형태;김지훈
    • 소성∙가공
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    • 제32권1호
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    • pp.28-34
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    • 2023
  • In this research, a representative volume element (RVE)-based FE Model is presented to estimate the mechanical properties of additively manufactured continuous fiber-reinforced composites with different fiber orientations. To construct the model, an ABAQUS Python script has been implemented to produce matrix and fiber in the desired orientations at the RVE. A script has also been developed to apply the periodic boundary conditions to the RVE. Experimental tests were conducted to validate the numerical models. Tensile specimens with the fiber directions aligned in the 0, 45, and 90 degrees to the loading direction were manufactured using a continuous fiber 3D printer and tensile tests were performed in the three directions. Tensile tests were also simulated using the RVE models. The predicted Young's moduli compared well with the measurements: the Young's modulus prediction accuracy values were 83.73, 97.70, and 92.92 percent for the specimens in the 0, 45, and 90 degrees, respectively. The proposed method with periodic boundary conditions precisely evaluated the elastic properties of additively manufactured continuous fiber-reinforced composites with complex microstructures.

유리섬유-폴리프로필렌 복합재료의 압축 공정 중 뒤틀림 예측에 관한 연구 (A Study on the Prediction of Warpage During the Compression Molding of Glass Fiber-polypropylene Composites)

  • 김규형;조동혁;이주원;김상덕;신철민;윤정환
    • 소성∙가공
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    • 제32권6호
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    • pp.367-375
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    • 2023
  • Composite materials, known for their excellent mechanical properties and lightweight characteristics, are applied in various engineering fields. Recently, efforts have been made to develop an automotive battery protection panel using a plain-woven composite composed of glass fiber and polypropylene to reduce the weight of automobiles. However, excessive warpage occurs during the GF/PP compression molding process, which makes car assembly challenging. This study aims to develop a model that predicts the warpage during the compression molding process. Obtaining out-of-plane properties such as elastic or shear modulus, essential for predicting warpages, is tricky. Existing mechanical methods also have limitations in calculating these properties for woven composite materials. To address this issue, finite element analysis is conducted using representative volume elements (RVE) for woven composite materials. A warpage prediction model is developed based on the estimated physical properties of GF/PP composite materials obtained through representative volume elements. This model is expected to be used for reducing warpages in the compression molding process.

Mohr-Coulomb식(式)을 사용한 흙의 구성(構成)모델 (A Constitutive Model for Soil Using Mohr-Coulomb Criteria)

  • 이형수;이병대
    • 대한토목학회논문집
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    • 제14권6호
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    • pp.1405-1415
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    • 1994
  • 탄소성(彈塑性) 변형경화(變形硬化) 거동(擧動)을 하는 흙은 토질(土質)의 상태(狀態)와 시험조건(試驗條件)에 따라 다양(多樣)한 응력경로(應力經路)를 갖는다. 체적비(體積比) ${\upsilon}$인 흙을 주응력공간(主應力空間)에서 표시(表示)하면 불규칙육각형(不規則六角形)피라밋에 캡을 씌운 형상(形狀)이다. 캡은 ${\upsilon}$값이 변(變)하면 그 크기가 달라지나 형상(形狀)은 항상 닮은 꼴이며 소성체적변형(塑性體積變形)의 증감(增減)에 따라 이동(移動)이 결정된다. 이와 같은 토질특성(土質特性)을 반영하여 현재(現在)까지 많은 학자(學者)들이 캡모델을 연구발표(硏究發表)하였으며 본(本) 연구(硏究)에서는 비선형(非線形) 탄성변형(彈性變形) 경화(硬化) 소성(塑性) 캡과 Mohr-Coulomb의 파괴곡면(破壞曲面)을 접합(接合)한 흙의 구성(構成) 모델(M-C 캡모델)의 함수식(函數式)을 유도(誘導)하였다. 변형경화(變形硬化) 소성(塑性) 캡모델을 사용(使用)한 해석(解析)의 결과(結果)에 의하면 정규압밀(正規壓密) 상태(狀態)에서는 전단(剪斷)을 통한 경화(硬化)와 소성(塑性)흐름(캡의 이동(移動))의 형상(形狀)을 보여주고 있으나 과압밀상태(過壓密狀態)의 전단(剪斷)에서는 파괴포락선(破壞包絡線)에 도달할 때까지 탄성거동(彈性擧動)을 보이고 캡은 이동(移動)하지 않았다.

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FE analysis of RC structures using DSC model with yield surfaces for tension and compression

  • Akhaveissy, A.H.;Desai, C.S.;Mostofinejad, D.;Vafai, A.
    • Computers and Concrete
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    • 제11권2호
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    • pp.123-148
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    • 2013
  • The nonlinear finite element method with eight noded isoparametric quadrilateral element for concrete and two noded element for reinforcement is used for the prediction of the behavior of reinforcement concrete structures. The disturbed state concept (DSC) including the hierarchical single surface (HISS) plasticity model with associated flow rule with modifications is used to characterize the constitutive behavior of concrete both in compression and in tension which is named DSC/HISS-CT. The HISS model is applied to shows the plastic behavior of concrete, and DSC for microcracking, fracture and softening simulations of concrete. It should be noted that the DSC expresses the behavior of a material element as a mixture of two interacting components and can include both softening and stiffening, while the classical damage approach assumes that cracks (damage) induced in a material treated acts as a void, with no strength. The DSC/HISS-CT is a unified model with different mechanism, which expresses the observed behavior in terms of interacting behavior of components; thus the mechanism in the DSC is much different than that of the damage model, which is based on physical cracks which has no strength and interaction with the undamaged part. This is the first time the DSC/HISS-CT model, with the capacity to account for both compression and tension yields, is applied for concrete materials. The DSC model allows also for the characterization of non-associative behavior through the use of disturbance. Elastic perfectly plastic behavior is assumed for modeling of steel reinforcement. The DSC model is validated at two levels: (1) specimen and (2) practical boundary value problem. For the specimen level, the predictions are obtained by the integration of the incremental constitutive relations. The FE procedure with DSC/HISS-CT model is used to obtain predictions for practical boundary value problems. Based on the comparisons between DSC/HISS-CT predictions, test data and ANSYS software predictions, it is found that the model provides highly satisfactory predictions. The model allows computation of microcracking during deformation leading to the fracture and failure; in the model, the critical disturbance, Dc, identifies fracture and failure.

터널 소성영역에 따른 터널 천단토압 해석 (Earth Pressure Analysis of Tunnel Ceiling according to Tunnel Plastic Zone)

  • 박신영;한희수
    • 한국산학기술학회논문지
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    • 제21권11호
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    • pp.753-764
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    • 2020
  • 본 연구는 금속의 소성 가공 시 변형을 해석하기 위한 금속소성학의 개념, 지반공학 관점인 Terzaghi's 토압론과 이를 수정한 수정 Terzaghi's 토압론, Mohr-Coulomb 항복조건을 이용한 미끄러짐선장이론의 세가지 방법을 이용하여 각 방법에 따른 터널의 소성영역 및 내부 토압을 산정하였다. 세가지 방법 모두 등방성 재료의 평면변형율조건 해석의 이차원 수학적 해석 모델이다. 금속소성학의 이론을 사용할 경우, 터널에 내부압력이 작용하는 것으로 가정하여 지반의 소성영역 및 지반 내부토압을 구한 결과이므로, 중력만 작용하는 실제 터널 현장과는 맞지 않는 다른 결과가 도출되었다. 미끄러짐선장 이론을 통해 소성영역 형성범위 및 토압을 분석한 결과, 대수나선형태로 파괴면이 형성되는 것으로 나타났고 이는 선행연구와 비교를 통해 실제와 유사한 것으로 나타났다. 또한, 터널 굴착 등으로 인해 발생하는 지반의 체적 변화를 고려한 토압 산정식을 수학적으로 검토하고 이를 Terzaghi's 토압과 비교하였다. 지반의 체적 팽창으로 인해 발생하는 다일러턴시 효과로 인한 강도 증진을 고려하였으며, Terzaghi's 토압의 문제점을 분석하고 토피고와 내부마찰각을 변수로 이론적 방법을 통한 토압을 각각 비교·검토하였다. Terzaghi's 토압론과 이를 수정한 수정 Terzaghi's 토압론의 경우, 소성영역 범위를 임의로 가정하였으므로, 두 이론 모두 터널의 소성영역을 해석할 수 없다. 이론적 방법을 통한 토압 산정 결과, Terzaghi's 토압의 경우 팽창성을 고려한 토압에 비해 토압이 과도하게 크게 산정되었으며 이는 지반의 체적변화로 인한 다일러턴시 효과를 무시하고, 이완영역을 과도하게 가정하였기 때문이다.

비국부 이론을 이용한 입자 강화 복합재 이중후방응력 소성 구성방정식 모델 및 전단밴드 분석 (Non-Local Plasticity Constitutive Relation for Particulate Composite Material Using Combined Back-Stress Model and Shear Band Formation)

  • 윤수진;김신회;박재범;정규동
    • 대한기계학회논문집A
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    • 제38권10호
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    • pp.1057-1068
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    • 2014
  • 2개의 상으로 구성된 입자 강화 복합재에 대한 균질화와 내부 상태 변수에 대해 2차 미분항이 포함된 비구역적 이론을 적용하여 탄소성 구성 방정식을 제안하였다. 열역학과 소성 포텐셜을 통해 내부 상태 변수에 대한 전개식 또한 본 논문에 포함되었다. 연속체 결함 모델을 이용, 결함 인자에 따른 물성 저하 현상도 감안되었으며 이중 후방응력이 조합된 전개식 또한 제시하였다. 일부 예에 대한 수치해석 결과, 비구역적 변수의 영향이 증가할수록 전단밴드는 감소하나 반면 특정 후방응력 전개가 지배적일수록 소성변형 집중이 증가함이 관찰되었다. 더욱이 두 개의 강소성 상으로 이루어진 복합재의 경우 강성이 높은 게재물의 비중이 증가함에 따라 전단밴드 형성이 용이한 것으로 나타났다. 그 밖에 제어변수들의 변화에 따른 전단밴드 형성에 대한 분석 결과는 Rice 소성 불안정성 분석결과와 잘 일치함 또한 밝혀졌다.

초기균열을 가진 판의 최종파괴 강도해석 (Ultimate Fracture Strength Analysis of Initially Cracked Plate)

  • 백점기;서흥원
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1991년도 가을 학술발표회 논문집
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    • pp.133-138
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    • 1991
  • The aim of the present paper is to develop a computer program predicting ultimate fracture strength of initially cracked structure under monotonically increasing external loads. For this purpose, two kinds of 3-D isoparametric solid elements, one 6-node wedge element and another 8-node brick element are formulated along the small deformation theory. Plasticity in the element is checked using von Mises' yield criterion. Elasto-plastic stiffness matrix of the element is calculated taking account of strain hardening effect. If the principal strain at crack tip which is one nodal point exceeds the critical strain dependin on the material property, crack tip is supposed to be opened and the crack tip node which was previously constrained in the direction perpendicular to the crack line is released. After that, the crack lay be propagated to the adjacent node. Once a crack tip node is fractured, the energy of the newly fractured node should be released which is to be absorbed by the remaining part. The accumulated reaction force which was carried by the newly fractured node so far is then applied in the opposite direction. During the action of crack tip relief force, since unloading may be occured in the plastic element, unloading check should be made. If a plastic element unloads, elastic stress-strain equation is used in the calculation of the stiffness matrix of the element, while for a loading element, elasto-plastic stress-strain equation is continuously used. Verification of the computer program is made comparing with the experimental results for center cracked panel subjected to uniform tensile load. Also some factors affecting ultimate fracture strength of initially cracked plate are investigated. It is concluded that the computer program developed here gives an accurate solution and becomes useful tool for predicting ultimate fracture load of initially cracked structural system under monotonically increasing external loads.

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