• 제목/요약/키워드: Hollow Structural Section

검색결과 141건 처리시간 0.024초

600MPa급 고강도강 압축재의 좌굴강도에 관한 구조특성 (Structural Characteristics on the Buckling Strength for 600MPa Grade High Strength Steel Compression Members)

  • 이명재
    • 한국강구조학회 논문집
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    • 제22권6호
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    • pp.609-616
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    • 2010
  • 이 논문은 600MPa급 고강도강이 원형강관 건축구조용으로 이용될 때 중심압축재의 좌굴강도에 관하여 수치해석적으로 조사한 것이다. 600MPa급 고강도강의 소재인장시험 결과로부터 중심압축재의 좌굴강도를 산정하였으며, 좌굴강도 산정에는 Beam-Column이론에 근거한 방법과 Tangent Modulus 이론에 의한 양자의 방법을 이용하였다. 그리고 소성흐름이 없는 인장시험의 응력-변형도 관계를 비례한도의 크기와 비례한도에서 항복점에 이르는 접선계수의 기울기로 근사시키고 좌굴강도 미치는 영향인자를 조사하였다. 600MPa급 고강도강에 적용되는 현재의 건축기준은 압축재의 경우 항복강도 Fy값을 480Mpa 까지 상향조정하여도 무리가 없다고 사료된다.

Stability study on tenon-connected SHS and CFST columns in modular construction

  • Chen, Yisu;Hou, Chao;Peng, Jiahao
    • Steel and Composite Structures
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    • 제30권2호
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    • pp.185-199
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    • 2019
  • Modular construction is an emerging technology to accommodate the increasing restrictions in terms of construction period, energy efficiency and environmental impacts, since each structural module is prefabricated offsite beforehand and assembled onsite using industrialized techniques. However, some innate structural drawbacks of this innovative method are also distinct, such as connection tying inaccessibility, column instability and system robustness. This study aims to explore the theoretical and numerical stability analysis of a tenon-connected square hollow section (SHS) steel column to address the tying and stability issue in modular construction. Due to the excellent performance of composite structures in fire resistance and buckling prevention, concrete-filled steel tube (CFST) columns are also taken into account in the analysis to evaluate the feasibility of adopting composite sections in modular buildings. Characteristic equations with three variables, i.e., the length ratio, the bending stiffness ratio and the rotational stiffness ratio, are generated from the fourth-order governing differential equations. The rotational stiffness ratio is recognized as the most significant factor, with interval analysis conducted for its mechanical significance and domain. Numerical analysis using ABAQUS is conducted for validation of characteristic equations. Recommendations and instructions in predicting the buckling performance of both SHS and CFST columns are then proposed.

Stiffness model for "column face in bending" component in tensile zone of bolted joints to SHS/RHS column

  • Ye, Dongchen;Ke, Ke;Chen, Yiyi
    • Steel and Composite Structures
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    • 제38권6호
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    • pp.637-656
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    • 2021
  • The component-based method is widely used to analyze the initial stiffness of joint in steel structures. In this study, an analytical component model for determining the column face stiffness of square or rectangular hollow section (SHS/RHS) subjected to tension was established, focusing on endplate connections. Equations for calculating the stiffness of the SHS/RHS column face in bending were derived through regression analysis using numerical results obtained from a finite element model database. Because the presence of bolt holes decreased the bending stiffness of the column face, this effect was calculated using a novel plate-spring-based model through numerical analysis. The developed component model was first applied to predict the bending stiffness of the SHS column face determined through tests. Furthermore, this model was incorporated into the component-based method with other effective components, e.g., bolts under tension, to determine the tensile stiffness of the T-stub connections, which connects the SHS column, and the initial rotational stiffness of the joints. A comparison between the model predictions, test data, and numerical results confirms that the proposed model shows satisfactory accuracy in evaluating the bending stiffness of SHS column faces.

복합재료 적층판으로 구성된 절판구조물의 구조해석 (Analysis of Folded Plate Structures Composed of Laminated Composite Plates)

  • 이정호;홍창우;이주형;김동호
    • 한국농공학회지
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    • 제43권1호
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    • pp.122-128
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    • 2001
  • The theory of non-prismatic folded plate structures was reported by D.H. Kim in 1965 and 1966. Fiber reinforced composite materials are strong in tension. The structural element for such tension force is very thin and weak against bending because of small bending stiffnesses. Naturally, the box type section is considered as the optimum structural configuration because of its high bending stiffnesses. Such structures can be effectively analyzed by the folded plate theory with relative ease. The “hollow” bending membr with uniform cross-section can be treated as prismatic folded plates which is a special case of the non-prismatic folded plates. In this paper, the result of analysis of a folded plates with one box type uniform cross-section is presented. Each plate is made of composite laminates with fiber orientation of [ABBCAAB]r, with A=-B=45${\circ}C$, and C=90${\circ}$. The influence of the span to depth ratio is also studied. When this ratio is 5, the difference between the results of folded plate theory and beam theory is 1.66%.

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Computationally Efficient and Accurate Simulation of Cyclic Behavior for Rectangular HSS Braces

  • Lee, Chang Seok;Sung, Min Soo;Han, Sang Whan;Jee, Hyun Woo
    • 국제강구조저널
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    • 제18권4호
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    • pp.1125-1138
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    • 2018
  • During earthquakes, braces behave in complex manners because of the asymmetric response nature of their responses in tension and compression. Hollow structural sections (HSS) have been popularly used for braces due to their sectional efficiency in compression. The purpose of this study is to accurately simulate the cyclic behavior of rectangular HSS braces using a computationally efficient numerical model. A conceptually efficient and simple physical theory model is used as a basis model. To improve the accuracy of the model, cyclic beam growth and buckling load, as well as the incidences of local buckling and brace fracture are estimated using empirical equations obtained from regression analyses using test data on rectangular HSS braces. The accuracy of the proposed model is verified by comparing actual and simulated cyclic curves of brace specimens with various slenderness and width-to-thickness ratios.

중공단면 고강도 철근 콘크리트 교각의 연성거동에 관한 실험적 연구 (Ductility performance of hollow-section reinforced concrete piers using high-strength reinforcing bars)

  • 오병환;박대균;조근호;신용석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.730-733
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    • 2004
  • Three Hollow RC piers were tested under a constant axial load and a cyclically reversed horizontal loadto investigate the structural behavior of hollow RC piers using the high strength concrete and the high strength rebars. The test variables include concrete compressive strength, steel strength, and steel ratio. The test results indicate that RC piers using the high strength concrete and high strength rebars exhibit ductile behavior and appropriate seismic performance, in compliance with the design code. The present study allows more realistic application of high strength rebars and concrete to RC piers, which will provide enhanced durability as well as more economy.

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Strengthening of steel hollow pipe sections subjected to transverse loads using CFRP

  • Narmashiri, Kambiz;Mehramiz, Ghadir
    • Structural Engineering and Mechanics
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    • 제60권1호
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    • pp.163-173
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    • 2016
  • Nowadays using Carbon Fiber Reinforced Polymer (CFRP) has been expanded in strengthening steel structures. Given that few studies have taken about strengthening of steel hollow pipe sections using CFRP, in present study, the effects of CFRP sheets using two layers as well as in combination with additional reinforcing strips has been assessment. Strengthening of five specimens was carried out in laboratory tests. As well as numerical simulation was performed for all specimens by Finite Element Method (FEM) using ABAQUS software and high correlation between the results of numerical models with experimental data indicate the power of FEM in this field. The results of both laboratory and simulated specimens showed that load-bearing capacity of circular cross-sections can be significantly increased using CFRP retrofitting technique. Also, application of additional CFRP reinforcing strips and layers caused more strength for the strengthened specimens.

인발성형 중공단면 복합소재 교량 바닥판의 구조적 특성 분석 (Structural Characteristics of Pultruded Composite Bridge Deck of Hollow Section)

  • 이성우;김병석;조남훈
    • 대한토목학회논문집
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    • 제26권1A호
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    • pp.35-43
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    • 2006
  • 본 논문에서는 중공단면 형상의 유리섬유 강화 복합소재 교량바닥판의 개발에 관련된 연구 절차와 결과를 기술하였다. 설계된 3셀 단면에 대해 적층설계를 수행하였고, DB24 하중에 대한 플레이트 거더 복합소재 바닥판 교량의 유한요소해석을 통하여 처짐 사용성, 강도, 파괴 및 좌굴안정성 등의 구조적 특성을 평가하였다. 설계, 해석된 복합소재 바닥판 튜브는 인발성형으로 제작하였고, 구조적인 거동을 실험적으로 평가하기 위해 3점 휨시험, 거더 연결부시험, 방호벽 연결부시험을 실시하였고, DB24하중의 200만회 반복하중에 대해 압축피로시험, 휨피로시험 등 광범위한 구조성능시험을 실시하였다. 또한 시범시공된 복합소재 바닥판 플레이트 거더교량에 대한 현장 재하시험에서도 구조 안전성 및 사용성을 검토 하였다.

고강도 원형강관의 직각방향 거셋플레이트 접합부 실험 및 해석 (Test and Analysis on the Transverse Gusset Plate Connection to Circular Hollow Section(CHS) of High Strength)

  • 이수헌;신경재;이희두;김우범
    • 한국강구조학회 논문집
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    • 제24권2호
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    • pp.163-173
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    • 2012
  • 원형강관의 접합부는 다양한 상세를 가지고 있으며 접합부가 항복에 이를 경우 복잡한 국부변형을 유발한다. 이러한 접합부의 국부변형을 고려한 단순화된 설계식의 제안은 매우 어려운 문제이다. 원형강관접합부 설계를 위한 현행 한국구조기준(KBC 2009)에서는 AISC의 설계식과 매우 유사한 단순화된 설계식을 제시하고 있다. 현행 설계식은 원형강관 부재의 재질에 대하여 항복강도는 최대 360MPa 항복비는 0.8로 각각 제한하고 있어서 구조기준에서 제한하는 최대항복강도 이상의 강재를 사용할 경우에는 유사 상세접합부를 대상으로 구조실험이나 합리적인 해석 등을 통하여 안전성을 검증한 후 사용하도록 하고 있다. 본 논문에서는 고강도강재(HSB600)와 일반구조용강재 (SS400)를 이용한 원형강관-직각방향 거셋플레이트 접합부에 횡력(수평력)이 작용하는 실험과 정밀모델 유한요소해석을 실시하였다. 유한요소해석 및 실험결과를 현행 설계식과 비교분석하여 향후 접합부 설계식의 개정에 기초적 자료로 사용될 수 있을 것이다.

Comparative study between inelastic compressive buckling analysis and Eurocode 3 for rectangular steel columns under elevated temperatures

  • Seo, Jihye;Won, Deokhee;Kim, Seungjun
    • Steel and Composite Structures
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    • 제43권3호
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    • pp.341-351
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    • 2022
  • This paper presents an inelastic buckling behavior analysis of rectangular hollow steel tubes with geometrical imperfections under elevated temperatures. The main variables are the temperature loads, slenderness ratios, and exposure conditions at high temperatures. The material and structural properties of steels at different temperatures are based on Eurocode (EN 1993-1-2, 2005). In the elastic buckling analysis, the buckling strength decreases linearly with the exposure conditions, whereas the inelastic buckling analysis shows that the buckling strength decreases in clusters based on the exposure conditions of strong and weak axes. The buckling shape of the rectangular steel column in the elastic buckling mode, which depicts geometrical imperfection, shows a shift in the position at which bending buckling occurs when the lower section of the member is exposed to high temperatures. Furthermore, lateral torsional buckling occurs owing to cross-section deformation when the strong axial plane of the model is exposed to high temperatures. The elastic buckling analysis indicates a conservative value when the model is exposed to a relatively low temperature, whereas the inelastic buckling analysis indicates a conservative value at a certain temperature or higher. The comparative results between the inelastic buckling analysis and Eurocode 3 show that a range exists in which the buckling strength in the design equation result is overestimated at elevated temperatures, and the shapes of the buckling curves are different.