• 제목/요약/키워드: initial elastic stiffness

검색결과 112건 처리시간 0.028초

원자로 용접부의 국부적 미세조직 변화에 따른 동적탄성계수 측정 (Measurement of Dynamic Elastic Constants of RPV Steel Weld due to Localized Microstructural Variation)

  • 정용무;김주학;홍준화;정현규
    • 비파괴검사학회지
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    • 제20권5호
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    • pp.390-396
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    • 2000
  • 원자로 재료인 SA 508 Class 3 강용접부 및 열영향부 모사 시험편에 대해서 초음파공명분광법으로 동적탄성계수를 측정하였다. 등방성 탄성계수를 가정하여 초기 추정 탄성 계수, $c_{11},\;c_{12}$$c_{44}$로부터 장방형 시편의 공명 주파수를 계산하였으며 계산된 주파수와 초음파공명분광법으로 측정된 주파수를 비교, 반복 수렴 절차를 거쳐 정밀한 탄성계수를 구했다. 열처리 조건의 차이 및 미세 조직의 차이에 따라 영률 및 전단 계수의 차이가 확실하게 나타났다. 미세한 베이나이트 조직에서의 영률 및 전단 계수는 조대한 마르텐사이트 조직보다 높았으며 이러한 경향은 미세 경도 시험 등의 다른 실험 결과와도 일치하였다.

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Effects of openings geometry and relative area on seismic performance of steel shear walls

  • Massumi, Ali;Karimi, Nasibeh;Ahmadi, Mostafa
    • Steel and Composite Structures
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    • 제28권5호
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    • pp.617-628
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    • 2018
  • Steel shear wall possesses priority over many of the current lateral load-bearing systems due to reasons like higher elastic stiffness, desirable ductility and energy absorption, convenience in construction and implementation technology, and economic criteria. Besides these advantages, this system causes increase in the dimensions of other structural elements due to its high stiffness as one of its intrinsic characteristics. One of the methods for stiffness reduction is perforating the wall panel and creating openings in the wall that can also be used as windows or ducts in buildings service period. The aim of the present study is probing the appropriate geometric shape and location of opening to fulfil economic criterion plus technical and seismic design criteria. In the present research, a number of possible while reasonable opening shapes and locations are defined in various sizes for some steel shear wall specimens. The specimens are modelled in ABAQUS finite elements software and analyzed using nonlinear pushover analysis. Finally, the analyses' results are reported as force-displacement diagrams and the strength, the initial stiffness and the energy absorption are calculated for all specimens and compared together. The obtained results show that both shape and location of the openings affect the seismic parameters of the shear wall. The specimens in which the openings are further from the center and closer to the columns possess higher stiffness and strength while the specimens in which the openings are closer to the center show more considerable changes in their seismic parameters in response to increase in opening area.

내풍설계를 위한 초고층 무량판 건축물의 횡강성 및 고유주기 산정 (Lateral Stiffness and Natural Period Evaluation of Flat Plate Tall Buildings for Wind Design)

  • 박제우;김홍진;조지성
    • 한국전산구조공학회논문집
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    • 제23권1호
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    • pp.73-80
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    • 2010
  • 건축물의 풍진동은 건축물의 사용성평가에 중요한 구조설계 요인 중 하나이다. 신뢰성있는 풍하중 및 풍진동을 구하기 위해서는 정확한 고유주기의 예측이 필요하며 이러한 고유주기에 오차가 있을 경우 하중을 과대 또는 과소평가하게 되는 문제를 유발한다. 본 논문에서는 최근 본격적으로 증가하고 있는 초고층 무량판 구조시스템의 건축물에 대하여 계측을 통한 횡강성 산정식의 유효성을 검정하였다. 이를 위하여 최근 건설된 초고층 무량판 구조시스템이 적용된 3개의 건물에 대하여 계측 결과와 해석 모델의 고유주기를 비교 분석하였다. 이때, 무량판 구조물의 횡강성에 영향을 미치는 요인들에 대하여 각 케이스별로 해석을 수행하였으며, 특히 일반적으로 사용되고 있는 콘크리트의 할선탄성계수와 동탄성계수가 적용 되었을 때의 구조물의 고유주기 변화를 비교하였다. 그 결과 풍진동에 의한 건물의 변형률은 매우 적기 때문에 할선탄성계수의 적용보다는 동탄성계수의 적용이 보다 정확한 해석의 결과를 가져올 것으로 판단된다.

Flexural bearing capacity and stiffness research on CFRP sheet strengthened existing reinforced concrete poles with corroded connectors

  • Chen, Zongping;Song, Chunmei;Li, Shengxin;Zhou, Ji
    • Structural Monitoring and Maintenance
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    • 제9권1호
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    • pp.29-42
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    • 2022
  • In mountainous areas of China, concrete poles with connectors are widely employed in power transmission due to its convenience of manufacture and transportation. The bearing capacity of the poles must have degenerated over time, and most of the steel connectors have been corroded. Carbon fiber reinforced polymer (CFRP) offers a durable, light-weight alternative in strengthening those poles that have served for many years. In this paper, the bearing capacity and failure mechanism of CFRP sheet strengthened existing reinforced concrete poles with corrosion steel connectors were investigated. Four poles were selected to conduct flexural capacity test. Two poles were strengthened by single-layer longitudinal CFRP sheet, one pole was strengthened by double-layer longitudinal CFRP sheets and the last specimen was not strengthened. Results indicate that the failure is mainly bond failure between concrete and the external CFRP sheet, and the specimens fail in a brittle pattern. The cross-sectional strains of specimens approximately follow the plane section assumption in the early stage of loading, but the strain in the tensile zone no longer conforms to this assumption when the load approaches the failure load. Also, bearing capacity and stiffness of the strengthened specimens are much larger than those without CFRP sheet. The bearing capacity, initial stiffness and elastic-plastic stiffness of specimen strengthened by double-layer CFRP are larger than those strengthened by single-layer CFRP. Weighting the cost-effective effect, it is more economical and reasonable to strengthen with single-layer CFRP sheet. The results can provide a reference to the same type of poles for strengthening design.

Alternatives to Enhance Flat Slab Ductility

  • Husain, Mohamed;Eisa, Ahmed S.;Roshdy, Ramy
    • International Journal of Concrete Structures and Materials
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    • 제11권1호
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    • pp.161-169
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    • 2017
  • Flat slab systems are vastly used in multi-story buildings because of their savings in story height and construction time, as well as for their flexibility in architectural remodeling. However, they frequently suffer brittle punching-shear failure around columns, especially when subjected to lateral loads. Therefore, seismic codes labeled flat slabs as non-ductile systems. This research goal is investigating some construction alternatives to enhance flat slab ductility and deformability. The alternatives are: adding different types of punching-shear reinforcement, using discreet fibers in concrete mixes, and increasing thickness of slab around columns. The experimental study included preparation and testing of seven half-scale interior slab-column connections up to failure. The first specimen is considered a reference, the second two specimens made of concrete mixes with different volumetric ratios of polymer fibers. Another three specimens reinforced with different types of punching-shear reinforcement, and the last specimen constructed with drop panel of inverted pyramidal shape. It is found that using the inverted pyramid-shape drop panel of specimen, increases the punching-shear capacity, and the initial and the post-cracking stiffnesses. The initial elastic stiffnesses are different for all specimens especially for the slab with closed stirrups where it is experienced the highest initial stiffness compared to the reference slab.

Nonlinear analysis of viscoelastic micro-composite beam with geometrical imperfection using FEM: MSGT electro-magneto-elastic bending, buckling and vibration solutions

  • Alimirzaei, S.;Mohammadimehr, M.;Tounsi, Abdelouahed
    • Structural Engineering and Mechanics
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    • 제71권5호
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    • pp.485-502
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    • 2019
  • In this research, the nonlinear static, buckling and vibration analysis of viscoelastic micro-composite beam reinforced by various distributions of boron nitrid nanotube (BNNT) with initial geometrical imperfection by modified strain gradient theory (MSGT) using finite element method (FEM) are presented. The various distributions of BNNT are considered as UD, FG-V and FG-X and also, the extended rule of mixture is used to estimate the properties of micro-composite beam. The components of stress are dependent to mechanical, electrical and thermal terms and calculated using piezoelasticity theory. Then, the kinematic equations of micro-composite beam using the displacement fields are obtained. The governing equations of motion are derived using energy method and Hamilton's principle based on MSGT. Then, using FEM, these equations are solved. Finally the effects of different parameters such as initial geometrical imperfection, various distributions of nanotube, damping coefficient, piezoelectric constant, slenderness ratio, Winkler spring constant, Pasternak shear constant, various boundary conditions and three material length scale parameters on the behavior of nonlinear static, buckling and vibration of micro-composite beam are investigated. The results indicate that with an increase in the geometrical imperfection parameter, the stiffness of micro-composite beam increases and thus the non-dimensional nonlinear frequency of the micro structure reduces gradually.

재료의 비선형성을 고려한 터널의 내진성능평가에 관한 연구 (A Study on Seismic Performance Evaluation of Tunnel to Considering Material Nonlinearity)

  • 최병일;하명호;노은철;박시현;강기천
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권3호
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    • pp.92-102
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    • 2022
  • 대표적인 지중구조물인 터널시설물의 거동 특성을 평가하기 위해 다양한 수치해석 모델을 활용할 수 있다. 일반적으로 수치해석시 가장 많이 사용한 Mohr-Coulomb 모델은 탄성-완전소성 거동 모델로 하중증가-하중감소 단계시 변형 특성이 동일하여, 굴착해석의 경우 변위가 현장 상황과 다르게 나타날 수 있는 문제점이 있다. 그에 비해 HS-small Strain Stiffness 모델은 지반별 적용 범위가 넓으며, 초기탄성계수 및 비선형곡선 파라미터 하중증가-하중감소 단계의 탄성계수 등을 입력 가능하게 하여 흙의 변형 특성이 현장 조건에 맞게 해석 가능하다고 알려져 있다. 하지만 토목 기술자들은 지반의 특성 계수 추정의 어려움으로 인해 재료 비선형 특성을 적용 가능한 모델의 사용에 어려움이 있다. 본 연구에서는 토목 기술자들이 터널 수치해석시 일반적으로 적용하는 Mohr-Coulomb 모델과 지반 비선형성을 고려 가능한 HS Small strain Stiffness 모델을 적용한 내진성능평가 결과 값을 비교하여 합리적인 모델 선택의 필요성을 검토하였다.

필로티형 저층 내력벽주택의 내진설계 고려사항 (Considerations for Seismic Design of Low-Rise Residential Bearing Wall Buildings with Pilotis)

  • 이승제;엄태성
    • 한국지진공학회논문집
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    • 제23권1호
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    • pp.31-42
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    • 2019
  • In this study, the results of an analytical investigation on the seismic behavior of two residential 4-story bearing wall buildings with pilotis, each of which has symmetric or unsymmetric wall arrangement at their piloti level, are presented. The dynamic characteristics and lateral resistance of the piloti buildings were investigated through linear elastic and nonlinear static analyses. According to the results, the analytical natural period of vibration of the piloti buildings were significantly shorter than the fundamental period calculated in accordance with KBC 2016. In the initial elastic behavior, the walls resisting in-plane shear contributed to the lateral stiffness and strength, while the contribution of columns resisting flexural moments in double curvature was limited. However, after the shear cracking and yielding of the walls occurred, the columns significantly contributed to the residual strength and ductility. Based on those investigations, design recommendations of low-rise bearing wall buildings with piloti configuration are given.

Passive p-y curves for rigid basement walls supporting granular soils

  • Imad, Elchiti;George, Saad;Shadi S., Najjar
    • Geomechanics and Engineering
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    • 제32권3호
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    • pp.335-346
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    • 2023
  • For structures with underground basement walls, the soil-structure-interaction between the side soil and the walls affects the response of the system. There is interest in quantifying the relationship between the lateral earth pressure and the wall displacement using p-y curves. To date, passive p-y curves in available limited studies were assumed elastic-perfectly plastic. In reality, the relationship between earth pressure and wall displacement is complex. This paper focuses on studying the development of passive p-y curves behind rigid walls supporting granular soils. The study aims at identifying the different components of the passive p-y relationship and proposing a rigorous non-linear p-y model in place of simplified elastic-plastic models. The results of the study show that (1) the p-y relationship that models the stress-displacement response behind a rigid basement wall is highly non-linear, (2) passive p-y curves are affected by the height of the wall, relative density, and depth below the ground surface, and (3) passive p-y curves can be expressed using a truncated hyperbolic model that is defined by a limit state passive pressure that is determined using available logarithmic spiral methods and an initial slope that is expressed using a depth-dependent soil stiffness model.

정적 탄소성 해석에 의한 고층 벽식 아파트의 수평내력 검토 (Evaluation of Lateral Load Resistance Capacity of a High-rise Shear Wall Apartment Based on Elasto-plastic Analaysis)

  • 전대한;강호근;조한욱;이정원
    • 한국지진공학회논문집
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    • 제2권4호
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    • pp.31-40
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    • 1998
  • 본 연구에서는 등가 정적 지진하중을 받는 고층 벽식구조물의 거동을 파악하고자 탄소성해석을 수행하고 극한 수평내력을 평가하였다 해석 대상 건물로 현재 국내에서 분양되고 있는 두세대로 이루어진 25층 고층벽식 아파트 평면 형식을 선정하였다 3차원 정적 탄소성 입체 해석 프로그램(CANNY)을 이용하여 벽식 아파트 건물의 층별 초기 탄성강성 항복후 항복강성, 종국 내력 등을 평가한다 정적 탄소성 해석결과 해석대상 해석대상 아파트 건물의 항복내력은 설계용 등가 정적 지진하중의 1.6배 정도의 여유를 가지고 있음을 보여준다.

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