• 제목/요약/키워드: load transfer curves

검색결과 60건 처리시간 0.026초

탄소나노튜브/폴리에스터 복합재의 역학적 거동과 하중전달에 관한 분자 동역학 전산모사 : 그래프팅 가공의 영향 (Molecular Dynamics Study on Mechanical Behavior and Load Transfer of CNT/PET Nanocomposites : the Effects of Covalent Grafting)

  • 진주호;양승화
    • Composites Research
    • /
    • 제30권3호
    • /
    • pp.193-201
    • /
    • 2017
  • 탄소나노튜브와 폴리에스터 계면 간 그래프팅이 나노복합재의 역학적 거동과 하중전달에 미치는 영향을 고찰하기 위해 분자동역학 전산모사를 수행하고 그 결과를 Mori-Tanaka 모델 예측해와 비교하였다. 각 방향으로의 인장과 전단 전산모사를 통해 응력-변형률 선도를 도출한 후, 가교 유무에 따른 탄성거동 변화를 관찰하였다. 또한 가로등방성 강성행렬을 방향 평균하여 나노튜브가 랜덤분포하는 경우의 등방성 영률과 전단계수를 구하였다. 그 결과 가로방향 영률과 전단계수는 그래프팅 가공에 의해 향상되었으나, 길이방향 영률의 경우 나노튜브의 물성감소로 인해 오히려 물성이 저하되었다. 나노튜브의 랜덤분포를 고려한 예측 결과에서는 그래프팅 가공에 의해 물성이 약간 감소하였다.

$SiC_p/Al-Si$ 복합재료의 고온변형 특성 (High Temperature Deformation Behavior of $SiC_p/Al-Si$ Composites)

  • 전정식;고병철;김명호;유연철
    • 소성∙가공
    • /
    • 제3권4호
    • /
    • pp.427-439
    • /
    • 1994
  • The high temperature deformation behavior of $SiC_p/Al-Si$ composites and Al-Si matrix was studied by hot torsion test in a range of temperature from $270^{\circ}C$ to $520^{\circ}C$ and at strain rate range of $1.2{\times}10_{-3}~2.16{\times}10_{-1}/sec$. The hot restoration mechanisms for both matrix and composites were found to be dynamic recrystallization(DRX) from the investigation of flow curves and microstructural evolutions. The Si precipitates and SiC particles promoted DRX, and the peak strain$({\varepsilon}_p)$ of the composites was smaller than that of the matrix. Flow stresses of $SiC_p/Al-Si$ composites were found to be generally higher than the matrix, but the difference was quite small at higher temperature due to the decrease of capability of load transfer by SiC particles. With increasing temperature, failure strain of matrix and composites are inclined to increase, the increasing value of failure strain for the $SiC_p/Al-Si$ composites was small compared to that of matrix. The stress dependence of both materials on strain rate() and temperature(T) was examined by hyperbolic sine law, $\.{\varepsilon}=A_1[sinh({\alpha}{\cdot}{\sigma})]_n$exp(-Q/RT)

  • PDF

현장 계측을 통한 말뚝지지 전면기초의 하중분담률 분석 (Analysis of Load Sharing Ratio of Piled Raft Foundation by Field Measurement)

  • 정상섬;이준환;박종전;노양훈;홍문현
    • 한국지반공학회논문집
    • /
    • 제33권8호
    • /
    • pp.41-52
    • /
    • 2017
  • 본 연구에서는 말뚝지지 전면기초의 하중분담률 및 거동분석을 위해 시공단계 별 현장계측을 수행하였다. 현장계측은 시공시작일 부터 약 300일 동안 수행되었으며, 사용된 말뚝지지 전면기초는 $3.1m{\times}3.1m$ 크기의 전면기초와 길이 23m 직경 0.508m의 매입말뚝 5본이 시공되었다. 현장계측을 통해 시공단계에 따라 말뚝지지 전면기초의 하중-침하량 관계를 확인할 수 있었고, 극한하중조건에서 말뚝의 하중분담률은 약 70%에 수렴하였다. 기초의 침하량이 증가함에 따라 말뚝의 하중분담률이 증가하는 경향을 보였으며, 이는 하부 지반인 풍화토의 주면마찰력이 크게 영향을 주었기 때문으로 판단된다. 현장계측 결과를 이용하여 하중전이분석을 수행하였으며, 이를 통해 말뚝-지반 사이의 비선형 하중전이곡선을 산정하고 하중전이기법을 이용한 수치해석 결과에 적용하였다.

Nonlinear analysis of connectors applied on concrete composite constructions

  • Winkler, B.;Bianchi, P.;Siemers, M.
    • Computers and Concrete
    • /
    • 제3권2_3호
    • /
    • pp.91-102
    • /
    • 2006
  • To place concrete overlays has become a standard application in the strengthening and rehabilitation of concrete structures such as bridges, tunnels, parking decks and industrial buildings. In general, connectors are used to ensure a monolithic behavior of the two concrete layers. Within the framework of the development of a new connector wedge splitting tests and shear tests were performed, in addition nonlinear finite element analyses were applied to investigate the load transfer behavior of the connectors for different prototypes. The numerical simulation results were compared to experimental data. The computed load-displacement curve demonstrates good correspondence with the curves obtained in the experiments, and the experimental crack patterns are reasonably simulated by the computed crack propagation. Both numerical and experimental investigations on the wedge splitting test and on the shear test served as basis for the development of new type of connectors.

The flexural performance of laminated glass beams under elevated temperature

  • Huang, Xiaokun;Liu, Gang;Liu, Qiang;Bennison, Stephen J.
    • Structural Engineering and Mechanics
    • /
    • 제52권3호
    • /
    • pp.603-612
    • /
    • 2014
  • A series of experimental work is carried out with the aim to understand the flexural performance of laminated glass (LG) beams using polyvinyl butyral (PVB) and Ionoplast interlayers subjected to short term duration loads in the circumstance of elevated temperature. The study is based on a total of 42 laboratory tests conducted in ambient temperature ranging from $25^{\circ}C$ to $80^{\circ}C$. The load duration is kept within 20 seconds. Through the tests, load-stress and load-deflection curves of the LG are established; appropriate analytical models for the LG are indentified; the effective thicknesses as well as the shear transfer coefficients of the LG are semi-empirically determined. The test results show that within the studied temperature range the bending stresses and deflections at mid-span of the LG develop linearly with respect to the applied loads. From $25^{\circ}C$ to $80^{\circ}C$ the flexural behavior of the PVB LG is found constantly between that of monolithic glass and layered glass having the same nominal thickness; the flexural behavior of the Ionoplast LG is equivalent to monolithic glass of the same nominal thickness until the temperature elevates up to $50^{\circ}C$. The test results reveal that in calculating the effective thicknesses of the PVB and Ionoplast LG, neglecting the shear capacities of the interlayers is uneconomic even when the ambient temperature is as high as $80^{\circ}C$. In the particular case of this study, the shear transfer coefficient of the PVB interlayer is found in a range from 0.62 to 0.14 while that of the Ionoplast interlayer is found in a range from 1.00 to 0.56 when the ambient temperature varies from $25^{\circ}C$ to $80^{\circ}C$.

양방향 재하시험을 이용한 말뚝의 하중-변위곡선 추정방법 (Method of Estimating Pile Load-displacement Curve Using Bi-directional Load Test)

  • 권오성;최용규;권오균;김명모
    • 한국지반공학회논문집
    • /
    • 제22권4호
    • /
    • pp.11-19
    • /
    • 2006
  • 1990년대 이후로 양방향 재하시험(Bi-directional pile load test)은 기존 재하시험 방법에 대한 장점으로 인해 최근 여러 나라에서 그 사용이 증가하고 있다. 그러나 양방향재하시험은 두부재하시험과 상이한 재하기구를 따르므로 실제 구조물의 거동, 특히 말뚝 두부에서의 하중-변위 거동에 있어 실제와 다른 결과를 줄 우려가 있다. 따라서 본 논문에서는 동일한 형상과 지반조건을 갖는 두 본의 말뚝에 대해 한 본은 두부재하 방식으로, 한 본은 선단부 양방향 재하방식으로 정재하시험을 수행하였으며, 이 때 말뚝 깊이별로 변형률계를 부착하여 말뚝의 하중-전이 기구를 분석하였다. 변형률계 분석으로 구한 말뚝의 깊이별 하중 전이 함수의 모양은 시험방법에 따른 큰 차이를 보이지 않았으나, 양방향 재하시험을 이용하여 기존의 방법으로 추정한 말뚝두부 변위는 두부재하시험으로 구한 변위에 비해 사용하중하에서 1/2 미만인 것으로 나타났다. 양방향 재하시험 결과를 이용하여 보다 정확한 하중-변위곡선을 예측하기 위해 말뚝의 탄성압축량을 고려하는 간단한 방법을 제안하였다. 또한 양방향 재하시험시 변형률계 계측자료를 이용하여 두부재하시험 곡선과 거의 동일한 하중-변위 곡선을 예측할 수 있었다.

계류식 돌핀구조물에 대한 지반-말뚝계의 비선형 지반반력 해석 (Nonlinear Subgrade Reaction Analysis of the Soil-Pile System for Mooring Dolphin Structures)

  • 오세붕;이진학;이상순;김동수;정태영
    • 한국지반공학회논문집
    • /
    • 제15권2호
    • /
    • pp.3-16
    • /
    • 1999
  • 현재 국내에서는 부유식 구조물을 이용하여 소각로 및 담수화 공장을 해상에 축조하는 BMP(Barge Mounted Plant) 시스템에 관한 연구를 수행중에 있다(한국기계연구원 1997). 본 논문에서는 이러한 BMP의 계류 돌핀(mooring dolphin) 구조물하부의 말뚝기초의 거동을 모델하는 기법에 관하여 다루었다. 지반-말뚝계의 축하중 및 횡하중에 대한 거동은 지반을 비선형 스프링으로 모델하고 말뚝을 일축부재 및 보로 모델하여 유한차분적으로 해를 구하는 비선형 지반반력해석을 수행한다. 이러한 말뚝두부에서의 하중-변위관계로부터 지반-말뚝계의 등가강성을 산정할 수 있다. 따라서 본 연구에서는 거제도 주변 해역을 대상으로 지반조사를 수행하였고 이를 토대로 지반의 깊이에 따른 축방향 및 횡방향 하중전이 관계를 도출하였다. 그리고 돌핀하부의 말뚝에 대하여 축하중 및 횡하중에 대한 지반반력해석을 수행하였다. 이러한 해석과정을 통하여 대상지역에 적합한 말뚝의 관입깊이 및 단면을 합리적으로 산정할 수 있었다. 결국 말뚝두부에서의 하중-변위관계로부터 지반-말뚝계의 강성을 모델함으로써, 지반조건을 고려하여 돌핀구조물의 동적해석을 합리적으로 수행할 수 있었다. 해석결과 지반-말뚝계의 강성을 고려할 경우에는 강체로 고려한 경우에 비하여 변위 진폭이 상당히 크게 나타났다. 그리고 돌핀의 케이싱 상부의 모멘트가 더 크게 나타나고 해저지표 말뚝두부에 전달되는 모멘트는 더 작게 나타남을 알 수 있었다.

  • PDF

단일현장타설말뚝을 이용한 교량기초의 설계 및 시공 사례 (A Case Study on the Design and Construction of the Pile Bent System)

  • 조성한;김형욱;김주철
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 2010년도 추계 학술발표회
    • /
    • pp.357-367
    • /
    • 2010
  • In this study, several design and construction cases of the pile bent system for bridges were introduced. The lateral displacement of the pile bent system is larger than the displacement of pile cap system, due to the smaller bending stiffness and the longer unsupported length. So, the analysis of the lateral pile displacement is main factor for the design of pile bent system and superstructure. For the accurate estimation of the pile displacement, an iterative analysis method was developed. The superstructure was analyzed regarding the pile foundation as $6{\times}6$ spring and the substructure was analysed using non-linear load transfer curves (p-y, t-z, q-z curve). And, to verify this analysis method, the estimated displacements are compared with the results of lateral load test. This analysis method is expected to be a viable alternative approach for the design of bridge foundation hereafter.

  • PDF

Experimental investigation of masonry walls supported by steel plate-masonry composite beams

  • Jing, Deng-Hu;Chen, Jian-Fei;Amato, Giuseppina;Wu, Ting;Cao, Shuang-Yin
    • Steel and Composite Structures
    • /
    • 제28권6호
    • /
    • pp.709-718
    • /
    • 2018
  • Masonry walls are sometimes removed in buildings to either make new passages or increase the usable space. This may change the loading paths in the structure, and require new beams to transfer the loads which are carried by the masonry walls that are to be removed. One possible method of creating such new beams is to attach steel plates onto part of the existing walls to form a steel plate-masonry composite (SPMC) beam, leading to a new structure with part of the masonry wall supported by a new SPMC beam. This paper presents an experimental investigation into the interaction between the SPMC beam and the masonry wall above. Five SPMC beams supporting a masonry wall were tested to study the influence of parameters including the height-to-span ratio of the masonry wall, height of the beam and thickness of the steel plates. The test results, including failure mode, load-carrying capacity, load-deflection curves and strain distribution, are presented and discussed. It is found that for developing better arching effect in the masonry wall the ratio of the in-plane flexural stiffness of the masonry wall to the flexural stiffness of the SPMC beam must be between 2.8 and 7.1.

Experimental and numerical investigations on reinforcement arrangements in RC deep beams

  • Husem, Metin;Yilmaz, Mehmet;Cosgun, Suleyman I.
    • Advances in concrete construction
    • /
    • 제13권3호
    • /
    • pp.243-254
    • /
    • 2022
  • Reinforced concrete (RC) deep beams are critical structural elements used in offshore pile caps, rectangular cross-section water tanks, silo structures, transfer beams in high-rise buildings, and bent caps. As a result of the low shear span ratio to effective depth (a/d) in deep beams, arch action occurs, which leads to shear failure. Several studies have been carried out to improve the shear resistance of RC deep beams and avoid brittle fracture behavior in recent years. This study was performed to investigate the behavior of RC deep beams numerically and experimentally with different reinforcement arrangements. Deep beams with four different reinforcement arrangements were produced and tested under monotonic static loading in the study's scope. The horizontal and vertical shear reinforcement members were changed in the test specimens to obtain the effects of different reinforcement arrangements. However, the rebars used for tension and the vertical shear reinforcement ratio were constant. In addition, the behavior of each deep beam was obtained numerically with commercial finite element analysis (FEA) software ABAQUS, and the findings were compared with the experimental results. The results showed that the reinforcements placed diagonally significantly increased the load-carrying and energy absorption capacities of RC deep beams. Moreover, an apparent plastic plateau was seen in the load-displacement curves of these test specimens in question (DE-2 and DE-3). This finding also indicated that diagonally located reinforcements improve displacement ductility. Also, the numerical results showed that the FEM method could be used to accurately predict RC deep beams'behavior with different reinforcement arrangements.