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        검색결과 20

        1.
        2019.10 서비스 종료(열람 제한)
        최근 건설분야에서도 스마트(Smart)라는 개념을 도입한 재료 및 구조방식의 개발에 관한 관심이 고조되고 있다. 특히 기존 콘크리트와 같은 시멘트 복합체에 다양한 전도물질을 혼입하여 외력의 작용시 유발되는 변형을 시멘트 복합체의 저항변화로 평가하는 자기 감지형 건설재료 개발 연구가 활발히 진행되고 있다. 통상적으로 시멘트 복합체는 인장변형에 대한 저항능력이 낮기 때문에 주로 압축변형과 전기적인 저항특성의 상관성을 평가하는 연구 즉, 압축변형 감지능력을 갖는 시멘트 복합체 개발에 관한 연구가 대부분이었다. 본 연구에서는 직접인장하에서 0.5% 인장변형시까지 자기 감지능력을 갖는 변형 경화형 시멘트 복합체(SHCC)를 개발하고 또한 철근의 보강이 SHCC의 자기 감지능력에 끼치는 영향을 평가한다.
        2.
        2019.04 서비스 종료(열람 제한)
        In this paper, fracture behavior of high-strength SFRC with high tensile strength steel fiber was investigated. Two different steel fibers with tensile strength of 1,200 and 1,600 MPa was used in SFRC specimens. Tst results showed that fracture behavior was more ductile with increasing the steel fiber tensile strength.
        3.
        2019.04 서비스 종료(열람 제한)
        In this study, the effect of compressive loading of carbon nanotube (CNT) mixed cement composites was investigated. To evaluate the electrical resistivity variation of 30%∼60% of compressive load of cement composites containing 1.0% CNT, 1.0% CNT was added to cement composites and compressive strength was calculated. The greater the change in electrical resistance to compressive load, the more vulnerable to internal conductive networks. Also, as the amount of CNT mixed increases, the electrical resistance to the load is more sensitive and it is expected to be mixed more than 1.0%.
        4.
        2019.04 서비스 종료(열람 제한)
        This paper describes the mechanical properties of high strength concrete with 1,600 MPa strength steel fiber. The fiber aspect ratio and fiber volume fraction used in this study is 80 and 0.75%. The Cylindrical specimens with ∅150×300 mm and the prisms with 150×150×550 mm were mad and tested in accordance with KS F2403 and ASTM C1609. As the result, specimens with high strength fiber has superior performance then that with normal strength fiber.
        5.
        2019.04 서비스 종료(열람 제한)
        This study was conducted to evaluate the effect of self-sensing performance on strain-hardening cement composite containing CNT by curing age. The mixing amount of CNT was set at 1.0%, and SHCC fibers were mixed with PE 1.0% and steel fiber 0.5%. The electrical resistance measurement for the tensile strain sensing performance was based on AC method and 4 probe methods. Test results indicated that electrical sensitivity of SHCC decreased with an increase in curing age.
        6.
        2019.04 서비스 종료(열람 제한)
        In this paper, finite element analysis of high-strength SFRC with high tensile strength steel fiber was investigated. Compressive and flexural behavior was ductile when using steel fiber tensile strength 1,600 MPa. Thorenfeldt and Trilinear models were used to describe the compressive and tensile behavior. Inverse analysis was performed to construct tensile model by evaluating flexural behavior. The flexural behavior of test results were similar to analysis results.
        7.
        2019.04 서비스 종료(열람 제한)
        This research uses carbon nanotubes (CNTs) that are actively used to develop convenient and systematic management of building blocks and structural performance monitoring, away from the difficulties of structural health monitoring such as RC structures. The change in electrical resistance was evaluated according to the amount of load and compressive load. Experiments were carried out with 1.0% and 2.0% CNT, and 30% and 60% compressive strength, respectively. Experimental results show that the compressive strength of CNT 2.0% is lower than the compressive strength of CNT 1.0% but is more sensitive to changes in electrical resistance due to compressive load.
        8.
        2019.04 서비스 종료(열람 제한)
        This study investigates the mechanical properties of SFRC reinforced by mixing different steel fibers with compressive strength of 70 MPa. In this study, The fiber aspect ratio consist of 60 and 80 and tensile strength is 1,100 MPa used. Cylindrical specimens with a ∅150×300 mm were made fo compression test, and prismatic specimens with a 150×150×550 mm were made fo flexural and direct shear tests. Test results show that the superior compression performance was observed in SFRC with Mixing different steel fibers.
        9.
        2019.04 서비스 종료(열람 제한)
        In this research, Sensing Performance in Tensile Strain of Strain-Hardening Cement Composites by Containing of Carbon nanotube have been studied. The ultimate strength and strain were improved with increasing in amounts of CNT, and fractional change in resistivity were improved when same tensile strain. and %LE were decreased with increasing in amounts of CNT.
        10.
        2019.04 서비스 종료(열람 제한)
        In this study, the seismic performance of RC frames reinforced with steel plate concrete was conducted by applying steel plate concrete into the existing RC frame and RC frame in order to evaluate the seismic reinforcement effect of steel plate concrete. The results showed that the reinforced specimen with steel plate concrete showed higher strength than the existing RC frame specimen, and the time of yield was also measured later. Therefore, sufficient seismic reinforcement effect can be expected through steel plate concrete.
        11.
        2019.04 서비스 종료(열람 제한)
        This paper describes the effect of tensile strength and aspect ratio of fiber on compressive and flexural toughness index of high- and normal-strength steel fiber-reinforced concrete(SFRC). For this purpose, eight types of SFRC mixtures were made and tested. Test results indicate that the compressive and flexural toughness index of SFRC increased with increasing in tensile strength and aspect ratio of steel fiber.
        12.
        2018.10 서비스 종료(열람 제한)
        In this study, the cement composites incorporating Carbon Nanotube(CNT), Carbon Black(CB), and Carbon Fiber(CF) of 0.5, 1.0, and 1.5% of binder weight were evaluated to provide conductivity. In order to achieve this, compressive strength and electrical resistance were measured. As a result, the conductivity of cement composites incorporating CNTs was more sensitive than that of cement composites containing CB and CF.
        13.
        2018.10 서비스 종료(열람 제한)
        The study was conducted to evaluate the penetration performance of Surface Protection Material(SPM) according to the particle size distribution of fine aggregate. The fine three types of aggregates were used, and the amounts of SPM were applied 0.13, 0.25, 0.36, and 0.51 kg/㎡. Test results indicated that the penetration depth of SPM were improved with increasing the amounts of application of SPM. And The penetration depth of SPM were improved with increasing the percentage of passing weight of size of sieve between 0 and 1.25mm.
        14.
        2018.10 서비스 종료(열람 제한)
        This study investigates the effects of compressive strengths on mechanical properties of concrete with compressive strengths of 40 and 80 MPa. In this study, The steel fiber an aspect ratio of 64 and a tensile strength of 1,600 MPa used. As the result, There are no significant effect of fiber tensile strength on mechanical properties of normal strength SFRC. For high strength SFRC, Specimen with high strength fiber have superior performance then that with normal strength fiber.
        15.
        2018.10 서비스 종료(열람 제한)
        This paper evaluates analytically the flexural behavior of steel fiber reinforced concrete (SFRC) notched beams according to the tensile strength of steel fiber. For this purpose, compressive strength and bending tests of SFRC applying steel fibers with tensil strength of 1,200 and 1,600 MPa was conducted. Strain hardening behavior was observed when using high tensile strength steel fiber. Compression and tensile models were established through test results. For the tensile model, hordijk model and trilinear model were analyzed and compared. The results of analysis showed good agreement when using trilinear model.
        16.
        2018.10 서비스 종료(열람 제한)
        This paper describes the effect of steel fiber volume fraction and aspect ratio on mechanical properties of SFRC with compressive strength of 40 MPa. In this study, The fiber volume fractions consist of 0.25%, 0.50% and 0.75% and aspect ratios are 64 and 80 used. The prisms with 150×150×550 mm were made and tested in accordance with EN-14651. Test results show that the superior flexural performance was observed in SFRC with higher fiber volume fraction and aspect ratio.
        17.
        2018.10 서비스 종료(열람 제한)
        This study was evaluated the chloride penetration resistance performance of Surface Protection Material(SPM). SPM was applied 0.25 and 0.51 kg/㎡ to the surface of the mortar and immersed aging of the chloride solution 7, 14, and 28 days. As a results, In the case of SPM was applied, chloride did not penetrate until the 28th day.
        18.
        2018.10 서비스 종료(열람 제한)
        In this study, the rate of change of electrical resistance with respect to the strength and load of cement composites was investigated by incorporating Carbon Nanotube(CNT) at 0.25, 0.5, 0.75, 1.0% of the binder weight. Compressive strength test It was shown that the load of 30% was repeatedly applied to impart conductivity through the rate of change of electrical resistance. The incorporation rate of CNT greatly affected the compressive strength and the rate of change of electrical resistance.
        19.
        2018.10 서비스 종료(열람 제한)
        This paper evaluates the seismic performance of reinforced concrete(RC) frame strengthed with expansive mortar and steel frame. For this purpose, cyclic loading test was conducted, load-displacement relationship and energy dissipation capacity were evaluated. As a results, RC frame retrofitted with steel frame was increased maximum strength and energy dissipation capacity than conventional RC frame.
        20.
        2018.10 서비스 종료(열람 제한)
        This paper was conducted to investigate analytically the non-ductile reinforced concrete frame and steel frame. The results of cyclic loading test and analysis was compared. The maximum strength and strength reduction point of test result were similar to analysis result.