• 제목/요약/키워드: concrete reduction factor

검색결과 155건 처리시간 0.025초

철근콘크리트 휨부재 및 압축부재의 재료조항계수 적용에 관한 연구 (Material Resistance Factors for Reinforced Concrete Flexural and Compression Members)

  • 김재홍;이재훈
    • 콘크리트학회논문집
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    • 제12권2호
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    • pp.21-30
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    • 2000
  • In the Ultimate Strength Design, the design strength of a member is determined by multiplying the strength reduction factor to the nominal strength. This concept may be a reasonable approach, however it can not consider failure modes appropriately. Moreover, column design strength diagram show an abrupt change at a low level of axial load, which does not seem to be reasonable. This research compares the design strength determined by the strength resistance factors. As the material resistance factors for flexure and compression, 0.65 and 0.90 are proposed for concrete and steel, respectively. The design strength calculation process by applying material resistance factors addresses failure modes more effectively than by applying member strength reduction factor, and provides more resnable design strength for reinforced concrete flexural and compression members.

탄소섬유시트 보강보 휨해석에 영향을 미치는 섬유시트 인장강도 감소계수 평가 (Evaluation of CFS Tensile Strength Reduction Factor for Bending Analysis of RC Beams Strengthened with Carbon Fiber Sheets)

  • 윤진섭;이우철;정진환;김성도;조백순
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 가을 학술발표회 논문집
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    • pp.359-362
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    • 2003
  • Carbon fiber sheet is attractive due to its good tensile strength, resistance to corrosion, and low weight. The strengthening of concrete structures with externally bonded carbon fiber sheets is increasingly being used for repair and rehabilitation of existing structures. However CFS strengthened beams break down under the service loads. As rupture strain is not reached ultimate value, reduction of the tensile strength is recommended. This study evaluate CFS tensile strength reduction factor which is required to analyze bending moment.

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연성을 고려한 철근콘크리트 기둥의 강도감소계수 적용에 관한 연구 (An Application of Strength Reduction Factors to Reinforced Concrete Columns considering Ductility)

  • 손혁수;이재훈
    • 콘크리트학회논문집
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    • 제11권4호
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    • pp.147-156
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    • 1999
  • Current design code states that the strength reduction factor shall be permitted to be increased linearly from that for axial compression to that for flexure as the design axial load strength $\Phi$cPn decrease from 0.1fckAg to zero. Since this empirically adopted axial load level of $\Phi$cPn=0.1fckAg considers only sectional area and concrete strength, the other variables such as steel ratio, steel yielding strength, and steel arrangement can not be considered. This research is performed to investigate the consistency and the rationality of the code requirement for determination of column design strength. A nonlinear axial force-moment-curvature analysis was conducted in order to investigate the ductility of reinforced concrete column sections. As the result of ductility analysis, it was found that the ductility at the axial force of $\Phi$cPn=0.1fckAg represented a lock of consistency for the various variable contained sections. Therefore, a more reasonable application method of strength reduction factor is proposed, that is based on the strain ductility index.

Evaluation of seismic reliability and multi level response reduction factor (R factor) for eccentric braced frames with vertical links

  • Mohsenian, Vahid;Mortezaei, Alireza
    • Earthquakes and Structures
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    • 제14권6호
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    • pp.537-549
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    • 2018
  • Using vertical links in eccentric braced frames is one of the best passive structural control approaches due to its effectiveness and practicality advantages. However, in spite of the subject importance there are limited studies which evaluate the seismic reliability and response reduction factor (R-factor) in this system. Therefore, the present study has been conducted to improve the current understanding about failure mechanism in the structural systems equipped with vertical links. For this purpose, following definition of demand and capacity response reduction factors, these parameters are computed for three different buildings (4, 8 and 12 stories) equipped with this system. In this regards, pushover and incremental dynamic analysis have been employed, and seismic reliability as well as multi-level response reduction factor according to the seismic demand and capacity of the frames have been derived. Based on the results, this system demonstrates high ductility and seismic energy dissipation capacity, and using the response reduction factor as high as 8 also provides acceptable reliability for the frame in the moderate and high earthquake intensities. This system can be used in original buildings as lateral load resisting system in addition to seismic rehabilitation of the existing buildings.

전기로 환원 슬래그 미분말의 콘크리트용 혼화재 적용성에 관한 실험적 연구 (Experimental Study on the Application of Concrete Admixture using the EAF Reduction Slag)

  • 최재석;장필성;조영진
    • 한국산학기술학회논문지
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    • 제15권11호
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    • pp.6890-6897
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    • 2014
  • 본 전기로 환원슬래그는 팽창성 물질이 함유되어 불안정한 상태이므로 건설용 재료로 그대로 사용하기에는 다소 무리가 있다. 그러나 전기로 환원슬래그에는 $11CaO{\cdot}7Al_2O_3{\cdot}CaF_2$${\beta}-C_2S$ (calcium aluminate compounds) 물질이 함유되어 있으므로 적절한 성분 보조제를 혼합하여 사용한다면 콘크리트용 혼화재료로서 사용이 가능할 것으로 판단된다. 이에 본 연구에서는 콘크리트 혼화재료서 전기로환원슬래그 미분말의 사용 가능성을 검토하고자 한다. 전기로 환원슬래그 미분말의 치환율별 모르타르 강도특성과 응결특성을 검토 결과, 최적 치환율은 30% 수준으로 나타났다. 최적 치환율에 석고 첨가에 따른 응결시간 및 강도특성을 파악한 결과, 전기로환원슬래그 미분말 치환율 30%인 배합에 이수석고를 8% 혼입하였을 경우 압축강도 발현 성상 및 응결특성이 OPC와 유사한 결과를 나타내었다.

인장지배영역에서의 철근콘크리드 기둥의 연성에 관한 해석적 연구 (An Analytical Study on Ductility of Reinforced Concrete Columns under Tension Controlled Region)

  • 손혁수;김준범;이재훈
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.527-532
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    • 1997
  • Design strength of structural members could be determined by applying a strength reduction factor to nominal strength. At the beginning point of the transition region for the strength reduction factor, P=0.1$\sigma$$_{ck}A_g$, only sectional area and concrete strength are adopted as the variables of P=0.1$\sigma$$_{ck}A_g$. Therefore, P=0.1$\sigma$$_{ck}A_g$ is the empirically adopted which does not consider steel ratio, steel yielding stress, and steel arrangement. So, this research was perpormed the computer program for the analysis of axial force-moment-curvature relationship of reinforced concrete columns by sectional behaviour nonlinear analysis using a concrete compressive stress-strain curve, in order to investigate the ductility of reinforced concrete columns. As a result, ductility indicies of axial force, P=0.1$\sigma$$_{ck}A_g$, represented the lack of consistency of the indicies value for the various sections.

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Estimation of response reduction factor of RC frame staging in elevated water tanks using nonlinear static procedure

  • Lakhade, Suraj O.;Kumar, Ratnesh;Jaiswal, Omprakash R.
    • Structural Engineering and Mechanics
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    • 제62권2호
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    • pp.209-224
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    • 2017
  • Elevated water tanks are considered as important structures due to its post-earthquake requirements. Elevated water tank on reinforced concrete frame staging is widely used in India. Different response reduction factors depending on ductility of frame members are used in seismic design of frame staging. The study on appropriateness of response reduction factor for reinforced concrete tank staging is sparse in literature. In the present paper a systematic study on estimation of key components of response reduction factors is presented. By considering the various combinations of tank capacity, height of staging, seismic design level and design response reduction factors, forty-eight analytical models are developed and designed using relevant Indian codes. The minimum specified design cross section of column as per Indian code is found to be sufficient to accommodate the design steel. The strength factor and ductility factor are estimated using results of nonlinear static pushover analysis. It was observed that for seismic design category 'high' the strength factor has lesser contribution than ductility factor, whereas, opposite trend is observed for seismic design category 'low'. Further, the effects of staging height and tank capacity on strength and ductility factors for two different seismic design categories are studied. For both seismic design categories, the response reduction factors obtained from the nonlinear static analysis is higher than the code specified response reduction factors. The minimum dimension restriction of column is observed as key parameter in achieving the desired performance of the elevated water tank on frame staging.

콘크리트 보강용 FRP 보강근의 내구성 설계를 위한 환경영향계수의 제안 (Recommendations of Environmental Reduction Factor of FRP Rebar for Durability Design of Concrete Structure)

  • 박찬기;원종필;강주원
    • 콘크리트학회논문집
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    • 제16권4호
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    • pp.529-539
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    • 2004
  • 철근콘크리트 구조물의 주요 파괴 원인은 철근의 부식에 의한 것으로 철근의 부식에 대한 문제점을 해결할 가능성이 있는 재료 중 FRP 보강근은 그 가능성이 높다. 그렇지만 이와 같은 FRP 보강근은 보강철근과 다른 파괴 메카니즘에 의하여 현저하게 성능이 저하될 가능성을 가지고 있다. 이와 같은 환경에는 알칼리 환경 등이 있다. 따라서 미국, 일본 캐나다 등 많은 나라에서는 환경영향계수를 사용하고 있다. 그렇지만 환경영향계수는 각 나라마다 다르게 적용되고 있는데 이는 FRP 보강근에 대한 장기거동에 대하여 명확한 기준이 제시되어 있지 않기 때문이다. 본 연구에서는 FRP 보강근의 환경영향계수를 제안하는데 그 목표를 두고 있다. 환경영향계수는 내구성 시험결과를 기본으로 하여 결정하였다. FRP 보강근은 알칼리 산 염해 등을 포함한 환경조건에 노출하였다. FRP 보강근은 간단한 질량변화를 측정하여 수분흡수 거동을 평가하였으며 역학적 특성의 변화는 인장, 압축 및 전단시험을 통하여 평가하였다. 시험결과를 기본으로하여 하이브리드 FRP 보강근(A)와 (C) 및 CFRP 보강근은 환경영향계수를 0.85로 결정하였고 하이브리드 FRP 보강근(B) 및 GFRP 보강근은 0.70으로 결정하였다.

섬유보강 고강도 콘크리트 구조설계지침(안)의 저감계수에 대한 신뢰도 분석 (Reliability Analysis of Reduction Factor for Structural Design Guideline(draft) of Fiber Reinforced High Strength Concrete)

  • 김아량;최정욱;백인열
    • 한국건설순환자원학회논문집
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    • 제9권1호
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    • pp.100-108
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    • 2021
  • 이 연구의 목적은 최근 국내에서 개발된 섬유보강 고강도 콘크리트 설계지침(안)의 저감계수를 적용하여 확보하는 설계의 신뢰도지수를 분석하는 것이다. 설계지침(안) 개발을 위하여 수행된 재료실험 및 부재실험 데이터를 수집하여 재료강도 통계특성 및 부재강도 해석식에 대한 통계특성을 구한다. 재료통계특성과 설계지침(안)의 부재 해석식을 적용한 시뮬레이션을 수행하고 해석식의 통계특성과 종합하여 단면강도에 대한 통계특성을 산출한다. 국내 도로교설계기준과 콘크리트구조기준의 하중조합을 적용한 신뢰도분석을 수행하였으며, 설계지침(안)에서 제시한 재료 및 부재에 대한 저감계수를 적용한 설계는 목표신뢰도 지수를 만족함을 확인하였다.

Shear capacity of stud shear connectors with initial damage: Experiment, FEM model and theoretical formulation

  • Qi, Jianan;Wang, Jingquan;Li, Ming;Chen, Leilei
    • Steel and Composite Structures
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    • 제25권1호
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    • pp.79-92
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    • 2017
  • Initial damage to a stud due to corrosion, fatigue, unexpected overloading, a weld defect or other factors could degrade the shear capacity of the stud. Based on typical push-out tests, a FEM model and theoretical formulations were proposed in this study. Six specimens with the same geometric dimensions were tested to investigate the effect of the damage degree and location on the static behavior and shear capacity of stud shear connectors. The test results indicated that a reduction of up to 36.6% and 62.9% of the section area of the shank could result in a dropping rate of 7.9% and 57.2%, respectively, compared to the standard specimen shear capacity. Numerical analysis was performed to simulate the push-out test and validated against test results. A parametrical study was performed to further investigate the damage degree and location on the shear capacity of studs based on the proposed numerical model. It was demonstrated that the shear capacity was not sensitive to the damage degree when the damage section was located at 0.5d, where d is the shank diameter, from the stud root, even if the stud had a significant reduction in area. Finally, a theoretical formula with a reduction factor K was proposed to consider the reduction of the shear capacity due to the presence of initial damage. Calculating K was accomplished in two ways: a linear relationship and a square relationship with the damage degree corresponding to the shear capacity dominated by the section area and the nominal diameter of the damaged stud. This coefficient was applied using Eurocode 4, AASHTO LRFD (2014) and GB50017-2003 (2003) and compared with the test results found in the literature. It was found that the proposed method produced good predictions of the shear capacity of stud shear connectors with initial damage.