• 제목/요약/키워드: slenderness limit

검색결과 26건 처리시간 0.028초

Slenderness limit for SSTT-confined HSC column

  • Khun, Ma Chau;Awang, Abdullah Zawawi;Omar, Wahid
    • Structural Engineering and Mechanics
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    • 제50권2호
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    • pp.201-214
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    • 2014
  • Due to the confinement effects, Steel-Straps Tensioning Technique (SSTT) can significantly enhance the strength and ductility of high-strength concrete (HSC) members (Moghaddam et al. 2008). However, the enhancement especially in strength may result in slender member and more susceptible to instability (Jiang and Teng 2012a). This instability is particularly significant in HSC member as it inherent the brittle nature of the material (Galano et al. 2008). The current slenderness limit expression used in the design is mainly derived from the experiment and analysis results based on Normal strength concrete (NSC) column and therefore the direct application of these slenderness limit expressions to the HSC column is being questioned. Besides, a particular slenderness limit for the SSTT-confined HSC column which incorporated the pre-tensioned force and multilayers effects is not yet available. Hence, an analytical study was carried out in the view of developing a simple equation in order to determine the slenderness limit for HSC column confined with SSTT. Based on the analytical results, it was concluded that the existing slenderness limit expressions used in the design are appropriate for neither HSC columns nor SSTT-confined HSC columns. In this paper, a slenderness limit expression which has incorporated the SSTT-confinement effects is proposed. The proposed expression can also be applied to unconfined HSC columns.

The role of slenderness on the seismic behavior of ground-supported cylindrical silos

  • Demir, Aysegul Durmus;Livaoglu, Ramazan
    • Advances in concrete construction
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    • 제7권2호
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    • pp.65-74
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    • 2019
  • This paper reports on the results of a parametric study, which examines the effects of varying aspect ratios on the dynamic response of cylindrical silos directly supported on the ground under earthquake loading. Previous research has shown that numerical models can provide considerably realistic simulations when it comes to the behavior of silos by using correct boundary conditions, appropriate element types and material models. To this end, a three dimensional numerical model, taking into account the bulk material-silo wall interaction, was produced by the ANSYS commercial program, which is in turn based on the finite element method. The results obtained from the numerical analysis are discussed comparatively in terms of dynamic material pressure, horizontal displacement, equivalent base shear force and equivalent bending moment responses for considered aspect ratios. The effects experienced because of the slenderness of the silo in regards to the seismic response were evaluated along with the effectiveness of the classification system proposed by Eurocode in evaluating the loads on the vertical walls. Results clearly show that slenderness directly affects the seismic response of such structures especially in terms of behavior and the magnitude of the responses. Furthermore the aspect ratio value of 2.0, given as a behavioral changing limit in the technical literature, can be used as a valid limit for seismic behavior.

Effects of plate slenderness on the ultimate strength behaviour of foam supported steel plate elements

  • Pokharel, Narayan;Mahendran, Mahen
    • Structural Engineering and Mechanics
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    • 제21권4호
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    • pp.407-422
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    • 2005
  • Plate elements in fully profiled sandwich panels are generally subjected to local buckling failure modes and this behaviour is treated in design by using the conventional effective width method for plates with a width to thickness (b/t) ratio less than 100. If the plate elements are very slender (b/t > 1000), the panel failure is governed by wrinkling instead of local buckling and the strength is determined by the flexural wrinkling formula. The plate elements in fully profiled sandwich panels do not fail by wrinkling as their b/t ratio is generally in the range of 100 to 600. For this plate slenderness region, it was found that the current effective width formula overestimates the strength of the fully profiled sandwich panels whereas the wrinkling formula underestimates it. Hence a new effective width design equation has been developed for practical plate slenderness values. However, no guidelines exist to identify the plate slenderness (b/t) limits defining the local buckling, wrinkling and the intermediate regions so that appropriate design rules can be used based on plate slenderness ratios. A research study was therefore conducted using experimental and numerical studies to investigate the effect of plate slenderness ratio on the ultimate strength behaviour of foam supported steel plate elements. This paper presents the details of the study and the results.

이중 아웃리거 구조 시스템의 한계 세장비에 대한 연구 (Study on the Limit Slenderness of a Double Outrigger System)

  • 양재광;강호근;박성수
    • 대한건축학회논문집:구조계
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    • 제34권3호
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    • pp.11-18
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    • 2018
  • Due to the recent overpopulation of urban cities, land shortage and soaring land prices have caused an increase in the demand for high-rise buildings. To build buildings on a limited land, the size of the building is important. Displacement control by horizontal loads in a skyscraper is critical to securing stability and usability of structures. Several systems have been proposed for efficient horizontal displacement control, and so far the study continues. Among them, the Outrigger System is a representative of the typical horizontal load resistance system. Although studies have been conducted so far to locate the optimal position of the outrigger, studies of the slenderness ratio of the buildings are still insufficient. Based on the Outrigger-Optimized Position equation, this study induces the calculation of the displacement of the outrigger installation building according to the slenderness ratio.

Crack effect on the elastic buckling behavior of axially and eccentrically loaded columns

  • Zhou, L.;Huang, Y.
    • Structural Engineering and Mechanics
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    • 제22권2호
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    • pp.169-184
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    • 2006
  • A close form solution of the maximum deflection for cracked columns with rectangular cross-sections was developed and thus the elastic buckling behavior and ultimate bearing capacity were studied analytically. First, taking into account the effect of the crack in the potential energy of elastic systems, a trigonometric series solution for the elastic deflection equation of an arbitrary crack position was derived by use of the Rayleigh-Ritz energy method and an analytical expression of the maximum deflection was obtained. By comparison with the rotational spring model (Okamura et al. 1969) and the equivalent stiffness method (Sinha et al. 2002), the advantages of the present solution are that there are few assumed conditions and the effect of axial compression on crack closure was considered. Second, based on the above solutions, the equilibrium paths of the elastic buckling were analytically described for cracked columns subjected to both axial and eccentric compressive load. Finally, as examples, the influence of crack depth, load eccentricity and column slenderness on the elastic buckling behavior was investigated in the case of a rectangular column with a single-edge crack. The relationship of the load capacity of the column with respect to crack depth and eccentricity or slenderness was also illustrated. The analytical and numerical results from the examples show that there are three kinds of collapse mechanisms for the various states of cracking, eccentricity and slenderness. These are the bifurcation for axial compression, the limit point instability for the condition of the deeper crack and lighter eccentricity and the fracture for higher eccentricity. As a result, the conception of critical transition eccentricity $(e/h)_c$, from limit-point buckling to fracture failure, was proposed and the critical values of $(e/h)_c$ were numerically determined for various eccentricities, crack depths and slenderness.

아웃리거 구조시스템의 한계세장비 근사식 활용을 위한 건물규모에 대한 연구 (A Study on the Size of Buildings for Utilizing the Limit Slenderness Ratio Approximation Equation of Outrigger Structural System)

  • 양재광;최현상
    • 한국산학기술학회논문지
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    • 제20권11호
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    • pp.19-26
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    • 2019
  • 최근 도시화로 인구집중이 지속되고, 도시 과밀화로 인한 대지 부족 현상, 지가 상승 등의 문제가 발생하여, 그에 대한 대안 중 하나로, 초고층건축물에 대한 요구가 증가하고 있다. 한정된 대지에 건물을 짓기 위해선 건물의 합리적인 규모 설정이 중요하다. 계획단계에서 구조적으로 안전한 건물의 규모를 파악하기에는 많은 시간과 비용이 들기 때문에, 이러한 과정을 간소화할 수 있는 하나의 방법으로 한계세장비 근사식이 제안되었다. 이에 본 연구에서는 고층건물에 횡변위 제어를 위해 제안된 여러 시스템 중 아웃리거 구조시스템에 대해서, 한계세장비 근사식을 기본으로, 해석프로그램의 결과값과 근사식을 비교 검토하고, 근사식의 활용성을 높이고자 하였다. 해석프로그램으로는 MAIDAS 건축구조해석 프로그램을 사용하여 모델별 해석을 진행하였다. 그 결과 한계세장비 근사식으로 계산한 근사값과 구조해석 프로그램 해석 결과값과의 오차를 최소화하기 위한 건물의 적정규모는 다음과 같다. 아웃리거 설치 개수가 많을수록 오차를 줄일 수 있고, 코어의 비율은 20%~30%가 합리적이며, 기둥의 배치는 내부기둥 없이 외부기둥으로만 되어있는 형태가 적절한 것으로 나타났다.

GFRP 적층복합재료관의 신뢰성해석 (Reliability Analysis of GFRP Laminated Composite Cylinderical Shells)

  • 조효남;신재철;이승재;최영민
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1992년도 봄 학술발표회 논문집
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    • pp.85-88
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    • 1992
  • In general, the strength and stiffness of laminated composite cylinderical shells are very sensitive to the variation of slenderness parameters, some coupling-stiffness parameters, lamination angles, stacking sequence and number of layers. In the paper, the effects of these factors on the strength and buckling reliabilities of GFRP laminated cyclinderical shells are investigated based on the proposed strength and buckling limit state models. It may be concluded that the applicable ranges of the slenderness limits of the strength and buckling failure criteria for laminated composite cylinderical shells should be indentified and incorporated into the design formula with appropriate safety factors which provide uniform consistent reliability for balanced design in practice.

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비탄성 국부좌굴을 고려한 철골 모멘트 접합부의 회전능력에 대한 변수 연구 (Evaluation of Rotation Capacity of Steel Moment Connections ConsideringInelastic Local Buckling - Parametric Studies)

  • 이경구
    • 한국강구조학회 논문집
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    • 제20권5호
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    • pp.625-632
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    • 2008
  • 동반논문(모델개발)에서는 특별철골모멘트골조의 강접합 보-기둥 접합부의 회전능력을 예측하기 위한 해석모델을 제안하였다. 본 논문에서는 접합부 회전능력 기준으로 두 개의 극한상태를 고려하였다. 첫째, 보 단면의 국부좌굴로 인해 공칭소성강도까지 강도저하가 발생하였을 때를 회전능력으로 보는 강도저하 극한상태를 고려하였다. 둘째, 큰 진폭의 변형이 몇 번 반복 후에 좌굴된 플랜지에서 소성변형률 축적으로 야기 되는 저주기 피로 파단을 극한상태로 고려하였다. 두 극한상태까지 제안한 모델을 이용하여 단조증가하중 및 반복하중하에 일련의 해석을 수행하였다. 실무설계에서 사용되는 범위안의 다양한 H-형강 보를 모델링한 후, 플랜지 및 웨브 폭-두께비와 같은 보 단면의 기하학적 변수가 WUF-W 접합부의 회전능력과 저주기 피로수명에 미치는 영향을 관찰하였다.

Probabilistic Strength at Serviceability Limit State for Normal and SBHS Slender Stiffened Plates Under Uniaxial Compression

  • Rahman, Mahmudur;Okui, Yoshiaki;Anwer, Muhammad Atif
    • 국제강구조저널
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    • 제18권4호
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    • pp.1397-1409
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    • 2018
  • Stiffened plates with high slenderness parameters show large out-of-plane deflections, due to elastic buckling, which may occur before the plates reach their ultimate strength. From a serviceability point of view, restriction of out-of-plane deflections exceeding the fabrication tolerance is of primary importance. Compressive strength at the serviceability limit state (SLS) for slender stiffened plates under uniaxial stress was investigated through nonlinear elasto-plastic finite element analysis, considering both geometric and material nonlinearity. Both normal and high-performance steel were considered in the study. The SLS was defined based on a deflection limit and an elastic buckling strength. Probabilistic distributions of the SLS strengths were obtained through Monte Carlo simulations, in association with the response surface method. On the basis of the obtained statistical distributions, partial safety factors were proposed for SLS. Comparisons with the ultimate strength of different design codes e.g. Japanese Code, AASHTO, and Canadian Code indicate that AASHTO and Canadian Code provide significantly conservative design, while Japanese Code matches well with a 5% non-exceedance probability for compressive strength at SLS.

중심압축력을 받는 내진 건축구조용 각형강관 CFT 부재의 구조성능평가 (Structural Performance Evaluation to Centrally Compressed CFT Columns Using Seismic Rectangular Steel Tube)

  • 심현주;최병정;이은택
    • 한국강구조학회 논문집
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    • 제24권4호
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    • pp.443-450
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    • 2012
  • 이 연구에서는 내진구조용 강재(SN)의 냉강롤성형된 각형강관을 사용한 CFT 부재의 중심축하중에 대한 구조성능을 평가한다. 일반적으로 냉간롤성형 및 냉간프레스형성으로 인하여 각형강관의 코너부와 평판부 모두 SN강재에 비해 재질변화가 발생하며, 항복강도와 인장강도 및 항복비의 상한치가 높아지는 경향을 나타낸다. 이러한 현상은 강관의 국부좌굴 이후의 비선형거동에 의해 영향을 주며, 이는 CFT 합성 부재와 같이 비선형해석모델에 대하여 영향을 미친다. 따라서 각형강관의 가공열화도를 평가하기 위하여 각형강관의 재료시험을 수행하였고, 세장비 및 판-폭두께비를 실험변수로 하여 일축 압축력을 받는 CFT부재의 구조성능을 평가하였다.