간행물

복합신소재구조학회 논문집 KCI 등재 Journal of the Korean Society for Advanced Composite Structures

권호리스트/논문검색
이 간행물 논문 검색

권호

Vol. 8 No. 3 (2017년 9월) 7

1.
2017.09 구독 인증기관 무료, 개인회원 유료
Experimental evaluation of torsional behavior, which is possible behavior of seismic beams of RC structures, was carried out. Concrete strength and stirrup spacing were set as experimental variables to investigate the torsional strength of RC beams. Based on the experimental results, the torsional strength of RC beams was compared and analyzed. From the experimental results, the concrete strength was caused a difference of about 30% in the torsional strength of the maximum torque of the RC beam specimen, and the stirrup spacing was found to be about 2.8 times and 5 times that of the peak torque. Therefore, this study will be an important study to understand the effect of both concrete strength and stirrup spacing for the torsional strength or torsional behavior of RC beams.
4,000원
2.
2017.09 구독 인증기관 무료, 개인회원 유료
Recently, a new long span composite rahmen bridge has been developed to complement the short span concrete rahmen bridges. In this study, a static bending test was carried out for steel composite rahmen bridges developed for the purpose of decreasing negative moment at the end of steel girder and positive moment at the center of steel girder by introducing a horizontal prestress to the upper flange of the steel girder end. From this, the reinforcement effect of the introduction to the horizontal prestress was verified and the structural safety for the steel composite rahmen bridges was evaluated. As a result, the maximum tensile strain and the maximum compressive strain of the DL specimen at 800 kN were 16% and 12% smaller than those of the CR specimen, respectively. From this, the DL specimen decreased compressive strain due to the tensile strain of the upper flange caused by introducing the horizontal prestress at the end of the steel girder, and the tensile strain of the lower flange also decreased.
4,000원
3.
2017.09 구독 인증기관 무료, 개인회원 유료
This study investigates the torsional behavior within the geometric range of the curved PSC bridge designed and constructed in the recent work. Compared with the design specifications for torsion on the Korean Highway Bridge Design Specification(2010), the reasonable torsional reinforcement design criteria are reviewed and proposed for curved PSC girder. A numerical study investigates the torsional behavior of a curved PSC box girder. From the study on the geometrical shape of the curved beam and the torsion caused by the eccentric load of the vehicle load in this study, the following results were derived: the design criteria for diaphragm and crossbeam as presented in the current Korean Highway Bridge Design Specifications (2010 & 2015) are based on the single PC box bridge applied by the FCM or ILM method, therefore the criteria is very conservative about the multi-box girder bridge type bridge in this study.
4,000원
4.
2017.09 구독 인증기관 무료, 개인회원 유료
ber reinforced polymer (FRP) reinforcing bars for concrete structure have been extensively investigated and a number of FRP bars are commercially available. However, major shortcoming of the existing FRP bars is low elastic modulus compared to conventional steel bars. Because of these reasons, FRP Hybrid Bar which have the concept of material hybridization(synthetic resins, deformed bar, glass fiber etc) for concrete structures have been developed. One of main features of this bar is corrosion resistance and this is important to confirm this anti-corrosion capacity of FRP Hybrid Bar. In this study, galvanic corrosion current behavior of 3 types of specimens, including two types of FRP Hybrid Bars and one conventional steel rebar, was investigated under the 0%, 1.5%, 3% and 6% salt water ratio condition. The result of this study can be used to evaluate the applicability of FRP Hybrid Bar to concrete structures.
4,000원
5.
2017.09 구독 인증기관 무료, 개인회원 유료
The pultruded fiber reinforced polymer plastic (PFRP) is one of the most actively studied composite materials for the structural member in construction industries. In domestic design process, the PFRP member is designed as an isotropic material having only longitudinal material properties for simplicity, because it is too complex to consider orthotrophy of PFRP perfectly. In this study, three cases of buckling analysis of PFRP plate is conducted theoretically and numerically. First, the PFRP plate is considered as an orthotropic material. Second, the PFRP plate is considered as an isotropic plate having only longitudinal material properties. Third, the PFRP plate is considered as an isotropic plate having geometric mean of longitudinal and transverse material properties. As a result of buckling analysis, a buckling strength of PFRP plate as an isotropic plate having only longitudinal material properties is about 2.21 times larger than that of PFRP plate analyzed as an orthotropic plate. On the other hand, a buckling strength of PFRP plate as an isotropic plate having geometric mean material properties is about 1.19 times larger than that of PFRP plate analyzed as an orthotropic plate. In conclusion, the safety factor of 3 used in domestic design process of PFRP member is no longer applicable due to overestimation of buckling strength of PFRP member which leads to nonconservative design.
4,000원
6.
2017.09 구독 인증기관 무료, 개인회원 유료
In the sewer pipes, reinforced concrete pipes and concrete pipes are mostly used. However, it is difficult to ensure the long-term durability of the pipe due to the corrosion of the rebar which is used for the reinforcement of the concrete. Also, reinforced concrete pipes are difficult to secure watertightness due to deterioration and corrosion by hydrogen sulfide. In order to solve such problems, research on using sewer pipes made of plastic materials is being actively conducted. When soil pressure and live load act on the buried flexible pipe, the load acting on the pipe is transferred to the surrounding soil. So, the flexible pipe will support the load with the surrounding soil together. It is difficult to predict these behaviors theoretically and clearly. Therefore, the design equation for the buried flexible pipe is analyzed by adopting theoretically idealized assumptions and it is estimated through experimental studies that it is similar to the actual structural behavior. In this paper, the mechanical properties of the soil and the polyethylene pipe were considered in application of the method proposed in ASTM D 2412 to design the buried polyethylene pipe. Also, structural behavior of the pipe resisting external loads such as soil pressure was investigated to use a polyethylene pipe as the buried pipe and the long-term behavior of the polyethylene pipe was predicted by the compaction rate of surrounding backfill soil through the field test.
4,000원
7.
2017.09 구독 인증기관 무료, 개인회원 유료
This study performs finite Element stress analysis of flange connections at noise barriers with circular steel tubes, which have a light weight. Subsequent numerical simulation results for three types of models (standard, double, and standard models strengthen by ribs) present that the applied connections for target noise barriers constructed show suitable structural performance. In this paper, the existing finite element stress analysis using the ABAQUS program is further extended to study the local stress distribution of the noise barriers with new type circular steel tubes. The numerical results for various parameters are verified by comparing different types with stresses occurred in the noise barrier from the numerical simulation.
4,000원