• 제목/요약/키워드: Ramberg-Osgood model

검색결과 35건 처리시간 0.022초

잔류응력을 고려한 국부변형률과 공칭응력 기준 피로수명 평가 (Fatigue Life Evaluation by ${\sigma}-N$ and ${\epsilon}-N$ Approaches Considering Residual Stresses)

  • 구병춘;양승용;서정원;정흥채
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.342-347
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    • 2004
  • To evaluate the fatigue lives of welded joints taking into residual stress relaxation, two approaches are applied. One is based on the conventional local strain analyses. The other is based on a model developed by the authors. In the first approach, the Ramberg-Osgood relation, Lawrence model and S.W.T. parameter are used. In the second approach, The S-N curve for a welded joint is deduced from that of the parent material. Residual stress relaxation obtained by finite element analysis is considered. Finally, we evaluate the fatigue lives for four weld details using the two approaches.

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비선형 지반특성이 수평 방향운동을 받는 기초지반체계의 동적강성에 미치는 영향 (Effects of Nonlinear Soil Characteristics on the Dynamic Stiffnesses of a Foundation-Soil System Excited with the Horizontal Motion)

  • 김용석
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2000년도 춘계 학술발표회 논문집 Proceedings of EESK Conference-Spring
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    • pp.120-129
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    • 2000
  • As structure-soil interaction analysis for the seismic analysis of structures requires a nonlinear analysis of a structure-soil system considering the inelastic characteristics of soil layers nonlinear analyses of the foundation-soil system with the horizontal excitation were performed considering the nonlinear soil conditions for the nonlinear seismic analysis of structures. Stiff soil profile of SD and soft soil profile of SE specified in UBC were considered for the soil layers of a foundation and Ramberg-Osgood model was assumed for the nonlinear characteristics of soil layers. Studies on the changes of dynamci stiffnesses and damping rations of surface and embedded foundations depending on foundation size soil layer depth and piles were performed to investigate the effects of the nonlinear soil layer on the horizontal and rotational dynamic stiffnesses and damping ratios of the foundation-soil system According to the study results nonlinear prperties of a soil laryer decreeased horizontal and rotational linear stiffnesses and increased damping ratios largely Effects of foundation size soil layer depth and piles were also significant suggesting the necessity of nonlinear seismic analyses of structures.

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불포화토의 등방압축 삼축시험시 변형계수에 관한 연구 (Isotropic Compression Triaxial Test of Deformation Modulus of Unsaturated soils)

  • 이종필;오세붕;김태경
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.132-135
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    • 2009
  • In order study, experimental stress-strain relationships were achieved for various suctions by triaxial tests. A failure envelop was occurred on a plane in p-q-$\psi$ space, since the level of matric suction is in the small range. It was found that the failure criteria could be defined uniquely by the Bishop stress and were also independent of matric suctions. At the level of small strain, deformation moduli were evaluated according to matric suctions by fitting to Ramberg-Osgood model. It was found that deformation moduli increase as matric suctions increase.

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Modified Equivalent Radius Approach in Evaluating Stress-Strain Relationship in Torsional Test

  • Bae, Yoon-Shin
    • 한국방재학회 논문집
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    • 제8권2호
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    • pp.97-103
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    • 2008
  • Determination of stress-strain relationship in torsional tests is complicated due to nonuniform stress-strain variation occurring linearly with the radius in a soil specimen in torsion. The equivalent radius approach is adequate when calculating strain at low to intermediate strains, however, the approach is less accurate when performing the test at higher strain levels. The modified equivalent radius approach was developed to account for the problem more precisely. This approach was extended to generate the plots of equivalent radius ratio versus strain using modified hyperbolic and Ramberg-Osgood models. Results showed the effects of soil nonlinearity on the equivalent radius ratio curves were observed. Curve fitting was also performed to find the stress-strain relationship by fitting the theoretical torque-rotation relationship to measured torque-rotation relationship.

인공신경망을 이용한 이력모델에 관한 연구 (A Study on the Hysteretic Model using Artificial Neural Network)

  • 김호성;이승창;이학수;이원호
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1999년도 가을 학술발표회 논문집
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    • pp.387-394
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    • 1999
  • Artificial Neural Network (ANN) is a computational model inspired by the structure and operations of the brain. It is massively parallel system consisting of a large number of highly interconnected and simple processing units. The purpose of this paper is to verify the applicability of ANN to predict experimental results through the use of measured experimental data. Although there have been accumulated data based on hysteretic characteristics of structural element with cyclic loading tests, it is difficult to directly apply them for the analysis of elastic and plastic response. Thus, simple models with mathematical formula such as Bi-Linear Model, Ramberg-Osgood Model, Degrading Tri Model, Takeda Model, Slip type Model, and etc, have been used. To verify the practicality and capability of this study, ANN is adapted to several models with mathematical formula using numerical data To show the efficiency of ANN in nonlinear analysis, it is important to determine the adequate input and output variables of hysteretic models and to minimize an error in ANN process. The application example is Beam-Column joint test using the ANN in modeling of the linear and nonlinear hysteretic behavior of structure.

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Semi-rigid connection modeling for steel frameworks

  • Liu, Yuxin
    • Structural Engineering and Mechanics
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    • 제35권4호
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    • pp.431-457
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    • 2010
  • This article provides a discussion of the mathematic modeling of connections for designing and qualifying structures, systems, and components subject to monotonic or cyclic loading. To characterize the force-deformation behavior of connections under monotonic loading, a review of the Ramberg-Osgood, Richard-Abbott, and Menegotto-Pinto models is conducted, and it is shown that these nonlinear functions can be mathematically derived by scaling up or down a linear force-deformation function. A generalized four-parameter model for simulating connection behavior is investigated to facilitate nonlinear regression analysis. In order to perform seismic analysis of frameworks, a hysteretic model accounting for loading, unloading, and reloading is described using the established monotonic model. For preliminary analysis, a method is provided to quickly determine the model parameters that fit approximately with the observed data. To reach more accurate values of the parameters, the methods of nonlinear regression analysis are investigated and the modified Levenberg-Marquardt and separable nonlinear least-square algorithms are applied in determining the model parameters. Example case studies illustrate the procedure for the computation through the use of experimental/analytical data taken form the literature. Transformation of connection curves from the three-parameter model to the four-parameter model for structural analysis is conducted based on the modeling of connections subject to fire.

Effects of viscous damping models on a single-layer latticed dome during earthquakes

  • Zhang, Huidong;Wang, Jinpeng;Zhang, Xiaoshuai;Liu, Guoping
    • Structural Engineering and Mechanics
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    • 제62권4호
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    • pp.455-464
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    • 2017
  • Rayleigh damping model is recommended in the recently developed Performance-Based Earthquake Engineering (PBEE) methodology, but this methodology does not provide sufficient information due to the complexity of the damping mechanism. Furthermore, each Rayleigh-type damping model may have its individual limitations. In this study, Rayleigh-type damping models that are used widely in engineering practice are discussed. The seismic performance of a large-span single-layer latticed dome subjected to earthquake ground motions is investigated using different Rayleigh damping models. Herein a simulation technique is developed considering low cycle fatigue (LCF) in steel material. In the simulation technique, Ramberg-Osgood steel material model with the low cycle fatigue effect is used to simulate the non-uniformly distributed material damping and low cycle fatigue damage in the structure. Subsequently, the damping forces of the structure generated by different damping models are compared and discussed; the effects of the damping ratio and roof load on the damping forces are evaluated. Finally, the low cycle fatigue damage values in sections of members are given using these damping models. Through a comparative analysis, an appropriate Rayleigh-type damping model used for a large span single-layer latticed dome subjected to earthquake ground motions is determined in terms of the existing damping models.

굽힌 후 편 철근의 기계적 성질과 응력-변형률 모델 (Mechanical Properties and Stress-Strain Model of Re-Bars Coldly Bent and Straightened)

  • 천성철;탁소영;하태훈
    • 콘크리트학회논문집
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    • 제24권2호
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    • pp.195-204
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    • 2012
  • 신구 콘크리트 접합부에서는 굽힌 후 편 철근을 이용한 이음이 발생한다. 철근의 굽힘과 펴는 과정에는 필연적으로 소성 변형이 발생하며, 이 과정에서 가공 경화, 바우싱거 효과, 시효 경화 현상이 발생된다. 이 연구에서는 강종, 지름, 굽힘 내면 반지름, 굽힌 후 펴기까지의 존치기간을 변수로 굽힌 후 편 철근의 인장에 대한 기계적 성질을 조사하였다. 연구 결과, 굽힌 후 편 철근은 비례한계점이 낮아지는 비선형성이 직선 철근에 비해 일찍 발생되었으며, 항복마루 없이 바로 변형경화가 발생하였다. 이것은 굽힘 가공에서 압축을 받은 부분의 바우싱거 효과에 의해 항복점이 낮아졌고, 굽힘 가공에서 인장을 받은 부분의 가공 경화에 의해 항복마루가 없어졌기 때문이다. 높은 강종일수록 항복강도의 저하가 크게 발생되었으며, SD400 철근의 항복강도는 설계기준강도보다 낮았다. 철근은 표면부의 강도가 내부보다 높기 때문에, 높은 강종일수록 굽힌 후 펴면 바우싱거 효과가 크게 발생된다. 굽힌 후 펴기까지의 존치기간이 길면 시효 경화에 의해 항복강도의 상승과 연성의 저하가 발생되었다. Ramberg-Osgood 모델을 기본 형태로 실험 자료를 회귀분석하여 항복강도와 존치기간을 고려한 굽힌 후 편 철근의 응력-변형률 관계를 구성하였다. 이 모델은 굽힌 후 편 철근이 사용된 접합부의 강성 평가에 활용될 수 있다.

지반계수의 한계값 평가를 위한 구조물-지반체계에 대한 지진응답해석 (Seismic Response Analyses of the Structure-Soil System for the Evaluation of the Limits of the Site Coefficients)

  • 김용석
    • 한국지진공학회논문집
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    • 제11권1호
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    • pp.67-77
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    • 2007
  • IBC와KBC 기준의 지반계수는 지반증폭 만이 고려되고 구조물-지반 상호작용 영향이 고려되지 않은 지반계수로 합리적인 구조물의 지진거동을 예측하는데 어떤 한계가 있다. 이 연구에서는 선형과 비선형 지반 위에 세워진 구조물의 탄성지진응답해석을 의사 3-D 해석으로 수행하여 구조물-지반 상호작용 영향이 고려된 지반계수의 상 하 한계값을 평가하였다. 지반의 특성은 지반 A, B, C의 경우에는 선형으로 가정하였고, 지반 D와 E의 경우에는 비선형으로 가정하여 Ramberg-Osgood 모델을 사용하여 전단파속도를 기준으로 전단탄성계수와 감쇠비 계산식을 규정하였다. 지진해석은 중 약진 지진기록 12개를 선정하여 최대 지진가속도를 0.1g와 0.2g로 조정하고, 구조물-지반 체계에 대한 의사 3-D 해석 시에는 30m 지반 하부 암반에서의 지진기록으로 변환하여 사용하였다. 구조물의 탄성 지진응답해석을 통해서 얻은 결과로부터 구조물-지반 상호작용 영향을 고려한 새로운 표준응답스펙트럼과 단주기 영역 및 주기 1초에서의 지반계수 $F_{a}$$F_{v}$의 상 하 한계값을 제시하였으며, KBC 기준을 위한 새로운 지반계수도 제안하였다.

Wire-woven Bulk Kagome의 압축 특성 분석 (Analysis of Compressive Characteristics of Wire-woven Bulk Kagome)

  • 이병곤;최지은;강기주;전인수
    • 대한기계학회논문집A
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    • 제32권1호
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    • pp.70-76
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    • 2008
  • Periodic cellular metals (PCMs) are actively being investigated because of their excellent specific strength and stiffness, and multi-functionality such as a heat disperse structure bearing external loading. The Kagome truss PCM has been proved that it has higher resistance to plastic buckling and lower anisotropy than other truss PCMs. In this paper, the out-of-plane compressive responses of the WBK specimens have been measured, theoretically predicted and numerically analyzed. Three specimens of two-layered WBK are fabricated and tested for measuring the responses. The peak stress of compressive behavior and effective elastic modulus are predicted based on the equilibrium equation and elastic energy conservation. Moreover, the structure of the specimen is modeled using the commercial mesh generation code, PATRAN and the finite element analysis for the model under the compression is carried out using the commercial FE code, ABAQUS. Finally, the obtained results are compared with each other to analyze the compressive characteristics of Wire-woven Bulk Kagome (WBK).