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      • KCI등재

        항만건설을 위한 케이슨 들고리의 안전성에 관한 연구

        곽계환,장기웅,김종효,Kwak, Kae Hwan,Jang, Ki Woong,Kim, Jong Hyo 한국강구조학회 1998 韓國鋼構造學會 論文集 Vol.10 No.1

        본 논문은 케이슨의 인양작업중 Fitting Anchor의 취성파괴로 인한 들고리의 붕괴원인을 조사하기 위한 실험적 연구이다. 또한, 본 연구에서는 응력해석을 통하여 들고리의 붕괴메카니즘을 분석하고 이를 실제 붕괴과정과 비교한다. 본 연구에서는 파괴된 강재에 대한 파면해석 뿐만아니라 화학성분시험, 인장시험 및 샤르피 V-노치 충격시험을 실시한다. 그리고 이의 시험 결과를 정상적인 강재에 대한 시험결과와 비교한다. 본 연구의 거시적, 미시적인 방법으로 결함을 관찰한 결과, Fitting Anchor 내부에 원주방향으로 나타난 표면결함은 케이슨의 진수시 발생하는 들고리의 인장응력이 작용하기 전에 발생한 것임을 확인할 수 있었다. 이는 균열선단의 응력집중이 발생하여 작용응력보다 큰 응력이 결함에 발생한 것임을 알 수 있다. 또한, 잠재한 결함의 크기가 임계값 이상으로 증가하여 본 연구대상 강재의 응력확대계수가 증가하였을 것으로 판단된다. 그래서 균열선단의 응력확대계수가 본 강재의 파괴인성보다 크게 되어 케이슨의 인양작업중에 취성파괴를 일으킨 것으로 사료된다. 본 연구결과에 따르면 케이슨 들고리의 붕괴는 Fitting Anchor의 취성파괴로 발생한 것으로 사료된다. This paper describes an experimental study to examine collapse causes of the lifting cable due to brittle failure of an fitting anchor under the lifting works. Also, in this study an collapse mechanism that was obtained from stress analysis was compared with an actual collapse procedure. Fractographical analysis as well as chemical component test, tension test and Charpy V-Notch impact test for the fractured steel members were carried out. And then, its results were compared with that of normal steel members. Circumferential surface flaws were developed at internal facets of the fitting anchor before tensile stress occurred. Hence, a higher stress than nominal stress was occurred at flaws by stress concentration at the crack tip. Also, stress intensity factor of members increased by crack size of the potential flaws. Because the stress intensity factor at the crack tip was greater than critical values(fracture toughness), brittle fracture occurred under the lifting works. It is judged that the main collapse of the lifting cable is due to brittle fracture of the fitting anchor.

      • KCI우수등재

        강섬유(鋼纖維)를 혼입(混入)한 철근(鐵筋)콘크리트 보의 전단학동(剪斷學動)에 관(關)한 연구(硏究)

        곽계환,이광명,Kwak, Kae Hwan,Lee, Kwang Myong 대한토목학회 1991 대한토목학회논문집 Vol.11 No.4

        최근에 피로하중을 받는 보나 기둥 구조물에 강섬유의 사용이 증가하는 추세이다. 예로서 교량, 고속도로, 비행장 그리고 빌딩 등이다. 본 연구에서는 강섬유를 혼입한 철근 콘크리트 보에 대하여 정적실험과 피로실험을 중점적으로 실시했다. 본 연구의 대상모형은 강섬유를 1% 또는 2% 포함한 경우, 스터럽이 있는 경우와 없는 경우로 구별하였다. 피로실험에 있어서 보의 파괴는 강섬유의 뽑힘이 아니라 절단에 있다는 사실을 확인할 수 있었으며, 강섬유 보강 콘크리트보의 해석적 적용성을 검토하기 위하여 실험의 결과치와 수치해석을 비교했는데 수치해석은 비선형 유한요소 프로그램(ADINA)을 사용했다. Recently the use of steel fibers has been increased in flexural members and columns of concrete structures subjected to cyclic loadings; such as bridge decks, highway roads, runway of airport, buildings, etc.. However only a few experimental tests have been carried out under fatigue loading. In the present study, the reinforced concrete beams with 1% and 2% steel fiber volume fraction are investigated with and without stirrups. It has been found that in fatigue tests, the failure of the beam is usually due to breaking of fibers rather than fiber pull-out. A comparison of experiments and numerical analysis using the nonlinear F.E.M. program (ADINA) is also presented herein.

      • KCI등재

        반복하중하에서 강섬유보강 철근콘크리트 연속보의 피로거동

        곽계환,박종건,장화섭,Kwak, Kae-Hwan,Park, Jong-Gun,Jang, Hwa-Sup 한국농공학회 2004 한국농공학회논문집 Vol.46 No.6

        As concrete structures are getting larger, higher, longer and more specialized, it is more required to develop steel fiber concrete and apply to the real world. In this research, it is aimed to have fatigue strength examined, varying the steel fiber content of 0%, 0.75%, 1.00%, 1.25% by experimental study of fatigue behavior of the steel fiber reinforced concrete continuous beams under cyclic loading. The ultimate load and initial load of flexural cracking were measured by static test. In addition, the load versus strain relation, load versus deflection relation, crack pattern and fracture mode by increasing weight were observed. On the other hand, the crack propagation and the modes of fracture according to cycle number and the relation of cyclic loading to deflection relation and strain relation were investigated by fatigue test. As the result of fatigue test, continuous beam without steel fiber was failed at 60 ~ 70% of The static ultimate strength and it could be concluded that fatigue strength to two million cyclic loading was arround 67.2% by S-N curve. On the other hand, that with steel fiber was failed at 65 ~ 85% of the static ultimate strength and it could be concluded fatigue strength to two million cyclic loading around 71.7%.

      • KCI등재

        FRP 박스부재의 결함평가를 위한 위상배열초음파 적용성 평가

        곽계환,양동운,김호선,이호현,윤국현,Kwak, Kae-Hwan,Yang, Dong-Woon,Kim, Ho-Sun,Lee, Ho-Hyun,Yun, Kuk-Hyun 한국농공학회 2010 한국농공학회논문집 Vol.52 No.5

        The structural material with the highest possibility of new materials that will be used in the future construction field is fiber reinforced polymer. The current studies on FRP members by using such excellent material characteristics mostly focused on stability, composite problem, and durability of FRP members. The initially constructed FRP members secure excellent stability and durability compared to reinforced concrete and steel materials, but measures for defections during the periodical inspection, methods for detecting breakages, and maintenance and reinforcement are not insufficient. Accordingly, this study proposed a measurement system using the FRP sensor to evaluate the safety of the FRP modular box member, and applied the phased array ultrasonic technique to detect the defects and damage likely to occur during the performance period.

      • KCI등재

        강섬유의 형상비와 혼입률에 따른 강섬유 보강 콘크리트 보의 역학적 특성 추정 모형 개발

        곽계환,황해성,성배경,장화섭,Kwak, Kae-Hwan,Hwang, Hae-Sung,Sung, Bai-Kyung,Jang, Hwa-Sup 한국농공학회 2006 한국농공학회논문집 Vol.48 No.3

        Practially useful method of steel fiber for construction work is presented in this study. The most important purpose of this study is to develop a model which can predict mechanical behavior of the structure according to aspect ratio and volume fraction of steel fiber. Experiments on compressive strength, elastic modulus, and splitting strength were performed with self-made cylindrical specimens of variable aspect ratios and volume fractions. The experiment showed that compressive strength was not in direct proportion to volume fraction which doesn't seem to have great influence over compressive strength. However, splitting strength showed almost direct proportion to aspect ratio and volume fraction. Improvement of optimal efficiency was confirmed when the aspect ratio was 70. Experiments on flexural strength, fracture energy, and characteristic length were carried out with self-manufactured beams with notch. As a result, increases of flexural strength, fracture energy, and characteristic length according to increase of volume fraction tend to be prominent when aspect ratio is 70. The steel fiber improves concrete to be more ductile and tough. Moreover, regression analysis was the performed and predictable model was developed after determining variables. With comparison and analysis of suggested estimated values and measured data, reliance of the model was verified.

      • KCI우수등재

        신(新)폴리머 철근(鐵筋)콘크리트보의 전단피로(剪斷疲勞) 거동(擧動)에 관(關)한 연구(?究)

        곽계환,박종건,장기웅,Kwak, Kae Hwan,Park, Jong Gun,Jang, Ki Woong 대한토목학회 1993 대한토목학회논문집 Vol.13 No.3

        저렴한 가격이면서 새로운 PVDC Latex의 제조, 이것을 활용한 다양한 색채의 고강도 폴리머콘크리트의 생산, 그리고 이것의 전단거동에 관한 이론을 정립하여 건설공사에 활용토록 하는 것을 목적으로 한다. 본 연구의 내용으로서는 이것을 사용한 신폴리머 콘크리트의 설계에 있어서 혼합특성, 물리적 특성을 연구한다. 이 중에서 가장 중요한 것은 압축강도, 휨강도, 정적극한강도, 피로강도 등이다. 이것을 이용한 보에 있어서는 중앙처짐, 반복횟수와 변형률관계, 파괴양식 등을 연구하여 본 목적의 활용성을 검증토록 한다. 그래서 콘크리트의 단점인 취성파괴를 보완하고 화학적인 성질로 일어날 수 있는 콘크리트의 부식이나 파손을 방지하도록 한다. 연구결과 피로실험에서 이형철근이나 스터럽의 파단은 순간적으로 일어나며 파단된 단면은 매끄러웠다. 또한 이러한 부분의 재질분석을 통하여 피로하중이 작용할 때 미세균열이 일어나고 있었다는 사실을 확인 할 수 있었다. The objective of this study is aimed at developing a new class of polymer concrete, in which hydration of cement and curing of a thermosetting resin can take place simultaneously during the mixing of concrete components. For the selected mix-proportion of the new polymer, the physical and mechanical properties needed for designs are presented. These important properties are compressive strength, flexural strength, split tensile strength, direct strength, fatigue characteristics and fracture parameters. The observed properties are always compared with conventional concrete to serve as reference for engineer in deciding or selecting the proper materials for their projects, and shore protecting structure.

      • KCI등재

        휨을 받는 조립형 FRP 박스부재의 최적단면검토

        곽계환,김경숙,김호선,Kwak, Kae-Hwan,Kim, Kyung-Suk,Kim, Ho-Sun 한국농공학회 2011 한국농공학회논문집 Vol.53 No.3

        Fiber Reinforced Polymer (FRP)s have various advantages for construction material in that they are noncorrosive and very strong. FRPs are economical and effective for management and maintenance when applied to footbridge, beam or deck of the bridge, girder, and marine structure. For safety, optimal design for standard modulation of the cross section is necessary. Conditions of optimum are possibilities of domestic production, modular assembly, and structure materials cast in compressed area.

      • KCI등재

        콘크리트 충진 FRP 거더의 전단재하 실험에 관한 연구

        곽계환,장화섭,김우종,김회옥,Kwak, Kae-Hwan,Jang, Hwa-Sup,Kim, Woo-Jong,Kim, Hoi-Ok 한국전산구조공학회 2008 한국전산구조공학회논문집 Vol.21 No.4

        섬유복합재료(Fiber Reinforced Polymer, FRP)는 경량성, 높은 설계기준강도, 비전기 비자성 및 내부식성의 특징 등으로 인하여 최근 건설분야에서 많은 연구가 진행되고 있다. 그 중 GFRP(Glass Fiber Reinforced Polymer)는 가격 경쟁성에서 우수하여 일반적으로 많이 사용되고 있다. 그러나 GFRP는 상대적으로 낮은 탄성계수를 가지고 있어 처짐이 과대하게 발생함으로 구조부재 단면으로서 활용되기 위해서는 단면이 커야하며, 설계시 사용하중에 의한 처짐 제한에 대한 검토를 실시해야 한다. 이에 본 연구에서는 언급된 기술적인 문제점을 해결하기 위하여 대형 단면의 적용이 가능하도록 모듈형식의 단면을 제안하였다. 그리고 FRP의 낮은 강성을 확보하군 위하여 콘크리트를 충진하는 새로운 FRP+콘크리트 합성 거더 형상을 개발하였다. 개발된 FRP)콘크리트 합성 거더의 전단지간비와 콘크리트 충진 여부에 따른 전단강도 및 처짐, 중립축 변화를 확인하고자 전단실험을 실시하였다. Fiber Reinforced Polymer, FRP has a light weight, a high tensile strength based on design, non-electronic, non-magnetic, and rust-resistant feature, etc and many researches are being conducted recently on FRP in the construction area. Among them, GFRP (Glass Fiber Reinforced Polymer) is excellent in price competitiveness and is widely being used. However, since GFRP has a relative low modulus of elasticity and causes excessive deflection, the section must be large to be used as a structural component and an investigative review must be carried out in design to set the limit for deflection by the use load. Therefore, in order to solve the mentioned technical problems, this study suggested a section of a module form such that application of a large-scale section is possible. Also, to secure the low rigidity of FRP, this study developed a new FRP+ concrete composite girder form that confined the concrete. To identify the structural movement of the developed FRP+ concrete composite girder, shear strength test was carried out.

      • KCI등재

        신경망 기법을 이용한 강섬유 혼입 콘크리트의 전단강도 추정 모형 개발

        곽계환,황해성,김우종,장화섭,강신묵,Kwak, Kae-Hwan,Hwang, Hae-Sung,Kim, Woo-Jong,Jang, Hwa-Sup,Kang, Shin-Muk 한국농공학회 2007 한국농공학회논문집 Vol.49 No.2

        This study, the present study wishes to develop a model that estimates shear strength characteristics of steel fiber reinforced concrete using artifical neural network models. Neural network models, developed as mathematical models, are being widely used not only in its original purpose of pattern recognition, but also in application fields by the function's nonlinear loaming and interpolar ability Neural network has a repetitive rotation algorithm that can cyclically and repeatedly estimate system conditions and parameter ideal values, and it can be used in the modeling of the nonlinear system by nonlinear characteristic functions that construct the system.

      • KCI등재

        FRP 모듈형 박스 부재의 연결 시스템에 관한 실험적 연구

        곽계환,장화섭,양동운,김호선,Kwak, Kae-Hwan,Jang, Hwa-Sup,Yang, Dong-Woon,Kim, Ho-Sun 한국농공학회 2009 한국농공학회논문집 Vol.51 No.4

        This is a basic experimental study to apply FRP modular box member to a variety of construction structures exposed to flexural strength, such as a slab and a girder. Applying FRP modular box member to a real structure requires a large section. FRP box member was made into modular systems. Tests were conducted under various conditions in order to analyze jointing performance of the developed FRP modular box member as a large section. For the methods of jointing FRP modular box member, synthetic resins connection, mechanical connection, and a combination of both were used to test both length and breadth connection. As a result of the test, using urethane + two bolts + sheets was the most efficient method of connecting FRP modular box member. It is expected that the proposed joint system in this study will contribute to the increase of failure load and synthesis behavior of FRP modular box member.

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