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하단힌지 강합성 라멘교의 구조적 거동에 대한 실험적 연구
최진우,장민준,천진욱,윤순종,Choi, Jin Woo,Jang, Min Jun,Cheon, Jin Uk,Yoon, Soon Jong 한국강구조학회 2015 韓國鋼構造學會 論文集 Vol.27 No.2
라멘교는 모든 부재의 접합부가 강절점으로 구성되어 있는 잘 알려진 교량으로, 교량받침이 불필요하고, 유지관리가 용이하며, 상부구조의 단면을 감소시킬 수 있고, 기타 구조형식에 비해 상대적으로 건설비가 적다는 점 등 많은 장점을 가지고 있기 때문에 다양한 현장에서 시공되고 있다. 또한 최근 경간을 증가시키기 위해 강합성 부재를 상부구조로 사용한 강합성 라멘교의 적용 사례가 증가하고 있다. 그러나 강합성 라멘교는 교량의 경간이 증가하여 부재력이 증가하고, 그에 따라 하부구조가 비경제적으로 설계, 시공되고 있다. 이 연구에서는 교대벽체와 기초 사이에 힌지구조를 적용하여 기초의 모멘트를 감소시킨 신형식 강합성 라멘교를 제안하고, 구조적 성능 및 힌지구조의 성능을 검증하기 위한 실험적 연구를 수행하였다. The rahmen bridge is well known common type of bridge in which all members are connected rigidly. The rahmen bridge is built for several situations because it has many advantages such as no need of bridge bearing system, easy of maintenance, reduction of the cross-sectional area of superstructure, and relatively low construction cost compared with other bridge types. Recently, to lengthen the span of rahmen bridge system, steel-concrete composite beam is used for superstructure of rahmen bridge instead of normal concrete girder with slab. However, member forces are increased because of extension of span length of superstructure and substructure is designed and constructed inefficiently when steel-concrete composite rahmen bridge is designed. In this study, new-type steel-concrete composite bridge is suggested. New-type steel-concrete composite rahmen bridge is adopted hinge connection between abutment and foundation for the reduction of the bending momemt at the foundation. In this study, we present the results of experiment conducted to estimate the load carrying capacity of new-type steel-concrete composite rahmen bridge and the structural characteristics of hinge connection.
김선희 ( Sun Hee Kim ),천진욱 ( Jin Uk Cheon ),김응호 ( Eung Ho Kim ) 한국복합신소재구조학회 2015 복합신소재구조학회논문집 Vol.6 No.4
The industrialization and urbanization forced to increase the density of pipelines such as water supply, sewers, and gas pipelines. The materials used for the existing pipe lines are mostly composed of concretes and steels, but it is true that the development for more durable and efficient materials has been continued performed to produce long lasting pipe lines. Recently, underground pipes serve in diverse applications such as sewer lines, drain lines, water mains, gas lines, telephone and electrical conduits, culverts, oil lines, etc. In this paper, we present the result of investigation pertaining to the structural behavior of unplasticized polyvinyl chloride (PVC-U) flexible pipes buried underground. In the investigation of structural behavior such as a ring deflection, pipe stiffness, 4-point bending test, experimental and analytical studies are conducted. In addition, pipe stiffness is determined by the parallel plate loading tests and the finite element analysis. The difference between test and analysis is about 8% although there are significant variations in the mechanical properties of the pipe material. In addition, it was found by the 4-point bending test there is no problem in the connection between the pipes by coupler.
2개의 볼트를 가지는 PFRP 볼트연결부의 볼트배치에 따른 강도평가
이영근 ( Young Geun Lee ),김선희 ( Sun Hee Kim ),원용석 ( Yong Seok Won ),천진욱 ( Jin Uk Cheon ),신광열 ( Kwang Yeoul Shin ),윤순종 ( Soon Jong Yoon ) 한국복합신소재구조학회 2014 복합신소재구조학회논문집 Vol.5 No.3
Fiber reinforced plastic (FRP) structural shapes are readily available in civil engineering applications. Among many manufacturing techniques used for FRP structural shapes, pultrusion process is one of the most widely used techniques in civil engineering applications. Pultrusion is a manufacturing process for producing continuous lengths of reinforced polymeric plastic structural shapes with constant cross-section. Pultruded composites are attractive for structural applications because of their continuous mass production with excellent mechanical properties. This paper presents the results of investigations pertaining to the bolted connection with two bolts for the pultruded FRP (PFRP) structural members. PFRP bolted connection tests were conducted with end distance to bolt diameter ratio (e1/db) and two types of bolt pattern such as horizontal (Pattern A) and vertical arrangement (Pattern B). As a result, it is found that the e1/db is recommended as the ratio of 4. In addition, it is also found that the bearing strengths at failure of the Pattern A and Pattern B have a similar value.
I형 단면과 BOX형 단면을 갖는 프리캐스트 분절 PSC 거더의 실험적 연구
김선희 ( Sun Hee Kim ),이승후 ( Seng Hoo Lee ),박준석 ( Joon Seok Park ),천진욱 ( Jin Uk Cheon ),윤순종 ( Soon Jong Yoon ) 한국복합신소재구조학회 2015 복합신소재학회논문집 Vol.6 No.2
Prestressed concrete (PSC) is a method in which prestressed tendon is placed inside and/or outside the reinforced concrete member and the compressive force applied to the concrete in advance to enhance the engineering properties of concrete member which is weak under tension. In this paper we suggested the precast PSC girder assembled with segments of portable size and weight at the factory. The segments of precast PSC girder will be delivered and assembled as a unit of PSC girder at the site. Consequently, we suggested new-type of precast segmented PSC girder with different shapes of segment cross-section (i.e., I-shape, Box-shape). To mitigate the problems associated with the field splice between the segments of precast PSC girder anchor system is attached near the neutral axis of the girder and relatively uniform compression throughout the girder cross-section is applied. Prior to the experimental investigation, analytical investigation on the structural behavior of precast PSC girder was performed and the serviceability (deflection) and safety (strength) of the girder were confirmed. In addition, 4-point bending test on the girder was conducted to investigate the structural performance under bending. From the experimental investigation, it was found that the precast PSC girder spliced with 3 and 5 segments has sufficient in serviceability and safety conditions and it was also observed that the point where the segments spliced has no defects and the girder behaves as a unit.