• 제목/요약/키워드: High deformation-high strength bolt

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고력볼트 인장접을 갖는 합성상판의 이음구조에 관한 연구 (The Study of joint structure of composite slabs with the tensile grip connection)

  • 서성탁
    • 한국산업융합학회 논문집
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    • 제9권3호
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    • pp.215-220
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    • 2006
  • Recently, steel-concrete composite slab decks have been widely used as highway bridge decks. In the construction of the composite slab decks, it is necessary to join two adjacent blocked bottom plates to form one unite in the longitudinal direction. In this paper, several types of longitudinal direction joints for Robinson type composite slab decks ared proposed herein and static bending test are carried out by using slab specimens. And the stress and deformation of the tensile grip connection with high strength bolts are discussed by using three-dimensional elastic-plastic FEM.

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Axial strengthening of RC columns by direct fastening of steel plates

  • Shan, Z.W.;Su, R.K.L.
    • Structural Engineering and Mechanics
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    • 제77권6호
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    • pp.705-720
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    • 2021
  • Reinforced concrete (RC) columns are the primary type of vertical support used in building structures that sustain vertical loads. However, their strength may be insufficient due to fire, earthquake or volatile environments. The load demand may be increased due to new functional usages of the structure. The deformability of concrete columns can be greatly reduced under high axial load conditions. In response, a novel steel encasement that distinguishes from the traditional steel jacketing that is assembled by welding or bolt is developed. This novel strengthening method features easy installation and quick strengthening because direct fastening is used to connect the four steel plates surrounding the column. This new connection method is usually used to quickly and stably connect two steel components by driving high strength fastener into the steel components. The connections together with the steel plates behave like transverse reinforcement, which can provide passive confinement to the concrete. The confined column along with the steel plates resist the axial load. By this way, the axial load capacity and deformability of the column can be enhanced. Eight columns are tested to examine the reliability and effectiveness of the proposed method. The effects of the vertical spacing between adjacent connections, thickness of the steel plate and number of fasteners in each connection are studied to identify the critical parameters which affect the load bearing performance and deformation behavior. Lastly, a theoretical model is proposed for predicting the axial load capacity of the strengthened RC columns.

접합요소를 이용한 볼트 접합부의 유한요소해석 (Finite Element Analysis of Bolted Connections Using Joint Elements)

  • 변대근;윤성기;박성수
    • 전산구조공학
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    • 제7권2호
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    • pp.139-146
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    • 1994
  • 볼트 접합부의 정확한 해석을 위하여 접합 요소와 볼트 요소 및 쉘 요소를 사용한 방법을 개발하였다. 접합면을 단순하게 이상화시키는 접합 요소와 장력을 갖는 볼트 요소를 도입하였고, 전체적인 계산과정은 2단계, 즉 제안된 방법에 의한 초기 강성의 결정과 뉴턴-랩슨법에 근거하는 호장법을 이용한 비선형 거동의 추적으로 구분하여 행함으로써 계산의 효율성을 증대시켰다. 앵글을 사용한 반강접 접합부와 모멘트 판을 사용한 접합부를 해석하여 기존 실험 및 해석과 비교함으로써 제안한 방법의 정확성과 적용성을 입증하였다. 또한 볼트 접합부의 정확한 해석을 위해서는 접합면에서 발생하는 미끄럼짐의 고려가 반드시 필요하며 접합부를 구성하는 판재의 3차원적인 변형의 해석도 무시할 수 없는 역할을 하는 사실을 보여주었다.

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Improving support performances of cone bolts by a new grout additive and energy absorber

  • Komurlu, Eren
    • Advances in materials Research
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    • 제11권3호
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    • pp.237-250
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    • 2022
  • The cone bolts with expanded front ends supply improved anchoring performances and increase energy absorbing capacities due to ploughing in the grouted drills. Within this study, use of a novel energy absorber for the cone bolt heads were investigated to assess its design in terms of supplying high support performances. Additionally, different grout material designs were tested to investigate whether the energy absorption capacities of the rock bolts can be improved using a silicone based thermoset polymer (STP) additive. To determine load bearing and energy absorption capacities, a series of deformation controlled pull-out tests were carried out by using bolt samples grouted in rock blocks. According to the results obtained from this study, maximum load bearing capacities of cone bolts are similar and mostly depend on the steel material strength, whereas the energy absorption capacity was determined to significantly vary in accordance with the displacement limits of the shanks. As a result of using STP additive and new polyamide absorber rings, displacement limits without the steel failure increase. The STP additive was found to improve the energy absorption capacities of grouted cone bolts. The absorber rings designed within this study were also assessed to be highly effective and able to double up the energy absorption capacities of the cone bolts.

Partially restrained beam-column weak-axis moment connections of low-rise steel structures

  • Lim, Woo-Young;Lee, Dongkeun;You, Young-Chan
    • Structural Engineering and Mechanics
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    • 제76권5호
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    • pp.663-674
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    • 2020
  • In this study, partially restrained beam-column moment joints in the weak-axis direction were examined using three large-scale specimens subject to cyclic loading in order to assess the seismic resistance of the joints of low-rise steel structures and to propose joint details based on the test results. The influence of different number of bolts on the moment joints was thoroughly investigated. It was found that the flexural capacity of the joints in the direction of weak axis was highly dependent on the number of high-tension bolts. In addition, even though the flexural connections subjected to cyclic loading was perfectly designed in accordance with current design codes, severe failure mode such as block shear failure could occur at beam flange. Therefore, to prevent excessive deformation at bolt holes under cyclic loading conditions, the holes in beam flange need to have larger bearing capacity than the required tensile force. In particular, if the thickness of the connecting plate is larger than that of the beam flange, the bearing capacity of the flange should be checked for structural safety.

Analytical behavior of longitudinal face dowels based on an innovative interpretation of the ground response curve method

  • Rahimpour, Nima;Omran, Morteza MohammadAlinejad;Moghaddam, Amir Bazrafshan
    • Geomechanics and Engineering
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    • 제30권4호
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    • pp.363-372
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    • 2022
  • One of the most frequent issues in tunnel excavation is the collapse of rock blocks and the dropping of rock fragments from the tunnel face. The tunnel face can be reinforced using a number of techniques. One of the most popular and affordable solutions is the use of face longitudinal dowels, which has benefits including high strength, flexibility, and ease of cutting. In order to examine the reinforced face, this work shows the longitudinal deformation profile and ground response curve for a tunnel face. This approach is based on assumptions made during the analysis phase of problem solving. By knowing the tunnel face response and dowel behavior, the interaction of two elements can be solved. The rock element equation derived from the rock bolt method is combined with the dowel differential equation to solve the reinforced ground response curve (GRC). With a straightforward and accurate analytical equation, the new differential equation produces the reinforced displacement of the tunnel face at each stage of excavation. With simple equations and a less involved computational process, this approach offers quick and accurate solutions. The FLAC3D simulation has been compared with the suggested analytical approach. A logical error is apparent from the discrepancies between the two solutions. Each component of the equation's effect has also been described.

볼트접합 앵글을 사용한 PSRC 합성기둥의 편심 압축실험 (Eccentric Axial Load Test of Prefabricated Composite Columns Using Bolt-connected Steel Angles)

  • 김현진;황현종;박홍근;김동관;양종민
    • 한국강구조학회 논문집
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    • 제29권3호
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    • pp.249-260
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    • 2017
  • 볼트접합 앵글을 사용한 선조립-SRC 합성기둥(이하 PSRC 합성기둥)의 구조성능을 평가하기 위하여 PSRC 기둥실험체 6개와 일반 SRC 기둥실험체 2개에 대하여 편심축 압축실험을 수행하였다. 횡보강재의 수직간격 및 단면형상과 축하중의 편심율을 실험변수로 고려하였다. 실험결과, 편심율이 큰 경우 PSRC 실험체는 단면 코너에 위치한 고강성 앵글로 인하여 압축하중 재하능력 및 변형능력이 기존 SRC 실험체보다 향상되었다. PSRC 기둥 실험체에서 횡방향 강판의 좁은 횡보강 간격과 Z형 단면의 횡방향 강판은 우수한 횡구속력을 제공하였으며, 하중재 하능력을 향상시켰다. 실험 및 수치해석을 통한 합성기둥의 휨 압축 강도는 현행설계기준에 의한 휨-압축 상관도를 상회하였다. 수치해석결과는 각 실험체의 강성, 최대강도, 최대하중 이후 강도감소거동을 비교적 잘 예측하였다.

Performance control analysis of concrete-filled steel tube sepa-rated spherical joint wind power tower

  • Yang Wen;Guangmao Xu;Xiazhi Wu;Zhaojian Li
    • Structural Engineering and Mechanics
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    • 제87권2호
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    • pp.137-149
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    • 2023
  • In this study, to explore the working performance of the CFST split spherical node wind power tower, two groups of CFST split spherical joint plane towers with different web wall thicknesses and a set of space systems were analyzed. The tower was subjected to a low-cycle repeated load test, and the hysteresis and skeleton curves were analyzed. ABAQUS finite element simulation was used for verification and comparison, and on this basis parameter expansion analysis was carried out. The results show that the failure mode of the wind power tower was divided into weld tear damage between belly bar, high strength bolt thread damage and belly rod flexion damage. In addition, increasing the wall thickness of the web member could render the hysteresis curve fuller. Finally, the bearing capacity of the separated spherical node wind power tower was high, but its plastic deformation ability was poor. The ultimate bearing capacity and ductility coefficient of the simulated specimens are positively correlated with web diameter ratio and web column stiffness ratio. When the diameter ratio of the web member was greater than 0.13, or the stiffness ratio γ of the web member to the column was greater than 0.022, the increase of the ultimate bearing capacity and ductility coefficient decreased significantly. In order to maximize the overall mechanical performance of the tower and improve its economy, it was suggested that the diameter ratio of the ventral rod be 0.11-0.13, while the stiffness ratio γ should be 0.02-0.022.

절곡 강판(Cap)을 전단연결재로 사용한 강판-콘크리트 합성보의 휨강도 분석 (Analysis about Flexural Strength of Steel Plate-Concrete Composite Beam using Folded Steel Plate (Cap) as Shear Connector)

  • 조태구;최병정
    • 한국산학기술학회논문지
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    • 제19권7호
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    • pp.481-492
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    • 2018
  • 본 강판 콘크리트 합성보는 강판, 콘크리트 및 전단 연결재로 구성되어 2개의 이질 재료를 결합한다. 일반적으로 강판은 기존의 합성보에 용접하여 조립된다. 이 연구에서, SPC 보는 스터드가 없는 강판과 콘크리트로 구성된다. 절곡한 강판은 용접 대신 고강도 볼트로 조립된다. 현장 건설의 작업성을 향상시키기 위해 슬래브와 접합부에 모자 모양의 Cap이 부착되어있다. Cap을 전단연결재로 사용하여 SPC 보의 휨성능을 분석하기 위해 변위 제어 모드에서 단조 하중 2점가력 실험을 수행 하였다. 전단 연결재 유형, 돌출 길이, 강판의 두께의 변수를 갖는 5개의 시험편을 제작하여 시험 하였다. KBC 2009에서 제시하는 전단강도비와 휨강도비의 관계를 분석하였다. 시험 결과로 전단 강도비를 40% 이상으로 나타냈다. 전단 연결재와 Cap을 부착하였음에도 완전합성보로 가정한 휨강도의 70% 이상의 휨강도를 발휘하였다. 또한 Cap이 스터드 보다는 작은 전단강도를 보였으나, Cap이 전단연결재 역할을 하였다. 강판두께를 변수로 한 경우, 완전합성보 대비 약 70%의 휨강도를 발휘하였으며, 유사한 변형성능을 나타내었다. 불완전합성거동함에 따라 국부좌굴이 발생하였으나, 상대적으로 두꺼운 강판의 경우 5% 높은 강도에서 국부좌굴이 발생하였다. 또한 좌굴폭이 15% 감소하였다.

전단접합 및 리브 플레이트로 보강한 H형 보-기둥 접합부의 내진성능에 관한 실험적 연구 (An Experimental Study on the Seismic Performance of Shear Connections and Rib Plate H Beam to Column Connections)

  • 오경현;서성연;김성용;양영성;김규석
    • 한국강구조학회 논문집
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    • 제17권5호통권78호
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    • pp.569-580
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    • 2005
  • 기존 강구조 모멘트연성골조시스템의 기둥-보 접합부는 노스리지 지진과 고베 지진시 충분한 내진성능을 발휘하지 못하고 접합부에서 취성파괴가 발생하였다. 본 논문은 기존 접합부의 형상을 변화하여 H형강보 웨브의 고장력볼트 전단접합과 H형 플랜지의 리브보강 유무를 변수로 한 실대형 실험을 실시하였다. 실험목적은 보웨브의 2면전단접합으로 고장력 볼트수 감소와 시공성 향상을 기대하며, 리브플레이트 보강을 통해 내진성능을 향상시키고자 한다. H형강 보웨브의 2면전단접합과 리브플레이트로 보강한 접합부 실험결과, 기존 접합부보다 초기강성, 에너지 소산능력 및 소성회전능력이 높게 나타났으며, 내력상승률 및 변형능력은 전단탭의 위치로 인해 인장측과 압축측이 다소 차이를 보이고 있으나 전체적으로 우수한 내진성능을 나타냈다. 그리고 모든 시험체가 층간변위비 4%, 총소성회능력 약 0.029rad이상 및 접합부 최대내력이 원단면보 전소성모멘트의 약 130% 이상을 상회하여 중급모멘트연성골조이상의 설계가 가능하리라 사료된다.