• 제목/요약/키워드: flexural load

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철근콘크리트 전단벽의 횡하중-횡변위 관계의 일반화 (Generalized Lateral Load-Displacement Relationship of Reinforced Concrete Shear Walls)

  • 문주현;양근혁
    • 콘크리트학회논문집
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    • 제26권2호
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    • pp.159-169
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    • 2014
  • 이 연구에서는 철근콘크리트 전단벽의 횡하중 거동과 연성을 합리적으로 평가하기 위해서 모멘트-곡률관계를 정립하고 이로부터 단순화된 횡하중-횡변위관계를 제시하였다. 최초 휨 균열, 인장철근 항복, 최대내력, 최대내력의 80% 및 인장철근파단시점에서 모멘트와 곡률은 힘의 평형조건과 변형적합조건으로부터 정립되었다. 최대내력 이후의 곡률평가를 위한 압축측연단 콘크리트 변형률은 Razvi and Saatcioglu의 구속된 콘크리트의 응력-변형률 관계를 이용하여 최대응력의 감소계수와 횡보강근 체적지수의 함수로 제시하였다. 모멘트 평가모델은 변수연구를 통하여 인장철근지수, 수직철근지수 및 축력지수의 함수로 일반화하였다. 횡변위는 전단벽의 높이에 따라 분포된 이상화된 곡률로부터 모멘트 면적법을 이용하여 환산하였다. 제시된 횡하중-횡변위관계는 기존 실험 결과와 잘 일치하였으며, 특히 최대내력 이후의 거동을 잘 평가하였다.

알루미나 세라믹스의 기계적 특성 평가 (The Evaluation of Mechanical Properties for Alumina Ceramics)

  • 임헌진;조덕호;김무경;한상미;이와사미키오
    • 한국세라믹학회지
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    • 제33권3호
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    • pp.339-347
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    • 1996
  • 알루미나를 대상소재로 하여 국산 3종 및 일산 1종의 고순도 알루미나 제품을 구입하여 꺾임강도, 비커스 경도, 압자압입법 및 압입강도법에 의한 파괴인성 등의 기계적 물성을 평가하였다. 꺾임강도 및 와이블 계수는 제조회사에 따라 각각 약 300~400MPa, 5~15의 범위에서 큰 편차를 나타내었다. 압입하중 변화에 따른 경도시험시 탄성회복의 영향을 무시할 수 있는 임계하중은 약 9.8N이었으며, 압입하중 98N에서의 알루미나의 경도는 약 15GPa이었다. 파괴인성은 한 압입하중에서의 측정한 평균값으로 파괴인성을 구하는 것보다 압자압입법의 경우 압입하중과 균열길이, 압입강도법의 경우 압입하중과 꺾임강도와 관계식의 기울기로부터 각각 직선회기법으로 파괴인성을 구하는 것이 보다 신뢰성이 있으며, 알루미나의 파괴인성은 약 4 MPa·m1/2이었다.

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Prediction of post fire load deflection response of RC flexural members using simplistic numerical approach

  • Lakhani, Hitesh;Singh, Tarvinder;Sharma, Akanshu;Reddy, G.R.;Singh, R.K.
    • Structural Engineering and Mechanics
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    • 제50권6호
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    • pp.755-772
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    • 2014
  • A simplistic approach towards evaluation of complete load deflection response of Reinforced Concrete (RC) flexural members under post fire (residual) scenario is presented in this paper. The cross-section of the RC flexural member is divided into a number of sectors. Thermal analysis is performed to determine the temperature distribution across the section, for given fire duration. Temperature-dependent stress-strain curves for concrete and steel are then utilized to perform a moment-curvature analysis. The moment-curvature relationships are obtained for beams exposed to different fire durations. These are then utilized to obtain the load-deflection plots following pushover analysis. Moreover one of the important issues of modeling the initial stiffness giving due consideration to stiffness degradation due to material degradation and thermal cracking has also been addressed in a rational manner. The approach is straightforward and can be easily programmed in spreadsheets. The presented approach has been validated against the experiments, available in literature, on RC beam subjected to different fire durations viz. 1hr, 1.5hrs and 2hrs. Complete load-deflection curves have been obtained and compared with experimentally reported counterparts. The results also show a good match with the results obtained using more complicated approaches such as those involving Finite element (FE) modeling and conducting a transient thermal stress analysis. Further evaluation of the beams during fire (at elevated temperatures) was performed and a comparison of the mechanical behavior of RC beams under post fire and during fire scenarios is made. Detailed formulations, assumptions and step by step approach are reported in the paper. Due to the simplicity and ease of implementation, this approach can be used for evaluation of global performance of fire affected structures.

Flexural behavior of RC beams retrofitted by ultra-high performance fiber-reinforced concrete

  • Meraji, Leila;Afshin, Hasan;Abedi, Karim
    • Computers and Concrete
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    • 제24권2호
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    • pp.159-172
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    • 2019
  • This paper presents an investigation into the flexural behavior of reinforced concrete (RC) beams retrofitted by ultra-high performance fiber-reinforced concrete (UHPFRC) layers. The experimental study has been conducted in two parts. In the first part, four methods of retrofitting with UHPFRC layers in both the up and down sides of the beams have been proposed and their efficiency in the bonding of the normal concrete and ultra-high performance fiber-reinforced concrete has been discussed. The results showed that using the grooving method and the pre-casted UHPFRC layers in comparison with the sandblasting method and the cast-in-place UHPFRC layers leads to increase the load carrying capacity and the energy absorption capacity and causes high bond strength between two concretes. In the second part of the experimental study, the tests have been conducted on the beams with single UHPFRC layer in the down side and in the up side, using the effective retrofitting method chosen from the first part. The results are compared with those of non-retrofitted beam and the results of the first part of experimental study. The results showed that the retrofitted beam with two UHPFRC layers in the up and down sides has the highest energy absorption and load carrying capacity. A finite element analysis was applied to prediction the flexural behavior of the composite beams. A good agreement was achieved between the finite element and experimental results. Finally, a parametric study was carried out on full-scale retrofitted beams. The results indicated that in all retrofitted beams with UHPFRC in single and two sides, increasing of the UHPFRC layer thickness causes the load carrying capacity to be increased. Also, increases of the normal concrete compressive strength improved the cracking load of the beams.

철근콘크리트 기둥의 휨 연성에 대한 V-타이 보조띠철근의 효율성 평가 (Evaluation on the Effectiveness of Supplementary V-ties on Flexural Ductility of Reinforced Concrete Columns)

  • 이혜진;양근혁;곽민경
    • 콘크리트학회논문집
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    • 제29권4호
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    • pp.345-351
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    • 2017
  • 이 연구에서는 철근콘크리트 기둥의 휨 연성에 대한 보조 띠철근으로서 ACI 318-14에서 제시하는 크로스타이의 대체로서 V-타이 보조 띠철근의 효율성을 평가하였다. 작용 축하중비를 주요 변수로 일정 축하중과 반복 횡하중을 받는 기둥에서 파괴모드 및 횡하중-횡변위 관계를 측정하였다. 기둥의 최대 휨 내력 이후, 크로스타이의 $90^{\circ}$ 갈고리가 서서히 열리면서 주철근의 조기 좌굴 및 코어 콘크리트의 심각한 손상을 동반한 반면, V-타이의 뽑힘 현상은 기둥의 파괴 시까지 나타나지 않았다. 최대 내력의 80% 시점에서 V-타이 기둥의 일손상 지수 값은 크로스타이 기둥에 비해 축력비가 0.25, 0.4 및 0.55일 때 각각 2.4배, 2.3배 및 5.2배 높았다. 즉, 기둥의 휨 연성에 대한 기존 크로스타이 대비 V-타이의 효율성은 축력비가 높을수록 현저하였다.

Flexural behavior model for post-tensioned concrete members with unbonded tendons

  • Kim, Kang Su;Lee, Deuck Hang
    • Computers and Concrete
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    • 제10권3호
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    • pp.241-258
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    • 2012
  • The need for long-span members increases gradually in recent years, which makes issues not only on ultimate strength but also on excessive deflection of horizontal members important. In building structures, the post-tension methods with unbonded tendons are often used for long-span members to solve deflection problems. Previous studies on prestressed flexural members with unbonded tendons, however, were mostly focused on the ultimate strength. For this reason, their approaches are either impossible or very difficult to be implemented for serviceability check such as deflection, tendons stress, etc. Therefore, this study proposed a flexural behavior model for post-tensioned members with unbonded tendons that can predict the initial behavior, before and after cracking, service load behavior and ultimate strength. The applicability and accuracy of the proposed model were also verified by comparing with various types of test results including internally and externally post-tensioned members, a wide range of reinforcement ratios and different loading patterns. The comparison showed that the proposed model very accurately estimated both the flexural behavior and strength for these members. Particularly, the proposed model well reflected the effect of various loading patterns, and also provided good estimation on the flexural behavior of excessively reinforced members that could often occur during reinforcing work.

장스팬 및 층고저감형 와이드 복합보의 휨성능에 관한 연구 (Study on Flexural Strength of Wide Composite Beam for Long Span and Saving Story height)

  • 최윤철;박금성;이상섭;최현기
    • 한국구조물진단유지관리공학회 논문집
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    • 제21권6호
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    • pp.44-51
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    • 2017
  • 최근 국내 자동차 보유대수의 급격한 증가로 도심지 주차문제가 복잡해지고 있다. 도심지 주차문제 해결에 있어 공작물 주차장이 주목을 받고 있다. 그러나 공작물 주차장은 전체 높이 8 m 이하로 건설되도록 규정되어 있다. 이에 본 연구에서는 층고절감 및 장스팬화가 가능한 와이드 합성보를 개발하여 휨성능을 평가하였다. 휨 성능 실험 결과, 강재보의 두께가 3 mm 증가($6mm{\rightarrow}9mm$)함에 따라 휨강도는 약 20%가 증가하였다. 보 보강철근(트러스철근)의 형태(삼각형, 사각형)은 휨강도에 영향을 미치지 않았다. 보 보강철근(트러스철근)이 없는 경우는 있는 경우보다 약 10%가량 휨강도가 저하되었다. 또한 하중이 증가할수록 중립축은 상부로 이동하지만 일정하중을 넘어가면 중립축이 다시 하부로 이동하는 결과를 나타내었다.

Conceptual design of prestressed slab bridges through one-way flexural load balancing

  • Arici, Marcello;Granata, Michele Fabio
    • Structural Engineering and Mechanics
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    • 제48권5호
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    • pp.615-642
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    • 2013
  • In this paper a study on prestressed concrete slab bridges is presented. A design philosophy based on the concept of load balancing through prestressing is proposed in order to minimize the effects of delayed deformations due to creep. Aspects related to the stress redistribution inside these bridges for time-dependent phenomena are analyzed and discussed, by applying the principles of aging linear visco-elasticity. Prestressing is seen as an equivalent external load which counterbalances the permanent loads applied to the bridge, nullifying the elastic deflections due to sustained loads, and thus avoiding the related delayed deformations. An optimization of the structural behavior through the use of one-way prestressing is achieved. The determination of a convenient variable depth of slab bridges and the correspondent layout of tendons is considered as a useful means for applying the load balancing concept in actual cases of structures like long cantilevers or bridge decks. A case-study related to the slab bridges built 30 years ago at Jeddah in Saudi Arabia is presented and discussed, in order to show the effectiveness of the proposed approach to the conceptual design of prestressed concrete bridges.

Effects of Transverse Reinforcement on Strength and Ductility of High-Strength Concrete Columns

  • Hwang, Sun Kyoung;Lim, Byung Hoon;Kim, Chang Gyo;Yun, Hyun Do;Park, Wan Shin
    • Architectural research
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    • 제7권1호
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    • pp.39-48
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    • 2005
  • Main objective of this research is to evaluate performance of high-strength concrete (HSC) columns for ductility and strength. Eight one-third scale columns with compressive strength of 69 MPa were subjected to a constant axial load corresponding to 30 % of the column axial load capacity and a cyclic horizontal load-inducing reversed bending moment. The variables studied in this research are the volumetric ratio of transverse reinforcement (${\rho}_s=1.58$, 2.25 %), tie configuration (Type H, Type C and Type D) and tie yield strength ($f_{yh}=549$ and 779 MPa). Test results show that the flexural strength of every column exceeds the calculated flexural capacity based on the equivalent concrete stress block used in the current design code. Columns with 42 % higher amounts of transverse reinforcement than that required by seismic provisions of ACI 318-02 showed ductile behaviour, showing a displacement ductility factor (${\mu}_{{\Delta}u}$) of 3.69 to 4.85, and a curvature ductility factor (${\mu}_{{\varphi}u}$) of over 10.0. With an axial load of 30 % of the axial load capacity, it is recommended that the yield strength of transverse reinforcement be held equal to or below 549 MPa.

비닐하우스의 풍하중 구조안전성 검토에 관한 연구 (A Study on the Structural Safety Analysis for Vinyl House at Wind Load)

  • 백신원
    • 한국안전학회지
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    • 제34권5호
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    • pp.72-77
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    • 2019
  • Vinyl house consists of main rafter, lateral member, clamps and polyethylene film. Many vinyl houses are used to grow fruits, flowers and vegetables in the countryside. Due to climate change, vinyl houses are often destroyed by strong winds or typhoons in summer. Many farmers suffer great economic damage from the collapse of vinyl houses. So it is very important to build a safe vinyl house and find a method to withstand this heavy wind load. In this study, a structural analysis was performed on four types of vinyl houses(10-single-4, 10-single-6, 10-single-7, 10-single-10). In addition, axial force and flexural moment are obtained from the structural analysis of four types of vinyl house. For these four types of vinyl house, structural safety was reviewed by obtaining the combined stress ratio by the strength design method. This structural review showed that the specifications for the vinyl house proposed in the design are not safe. Especially, the result of structural analysis for four types of vinyl house showed that the vinyl house structure constructed as a standard was a very dangerous structure. Therefore, it is necessary to devise diverse methods in order to make vinyl houses structurally safe for heavy wind load in the future. Also a variety of manual development is needed to prevent the collapse of vinyl houses at heavy wind load.