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        검색결과 485

        61.
        2017.10 구독 인증기관·개인회원 무료
        서 론 빠른 경제성장과 함께 <2016년 국토교통부> 자동차 등록대수는 2180만을 돌파하였다. 이처럼 많은 차량들이 도로를 사용하게 됨에 따라 기존의 아스팔트도로와 콘크리트도로가 많이 노후와 되어있는 추세이며, 이에 도로의 유지.보수 관리의 중요성이 높아지게 되었으며, 유지.보수간에 가장 많이 사용되는 공법 중에 하나인 덧씌우기 공법에 사용하는 택코트의 성능을 검토하기 위해 수행되었다. 실험 방법 및 사용재료 2.1 사용재료 실험에 사용된 택코트는 일반적으로 사용되어지는 RSC-4와 택코트 필름을 사용하였으며, 부착강도를 측정하기 위해 양생시간을 동일하게 하여 Pull of test를 통해 부착강도를 측정하였다. 2.2 실험 방법 휨몰드와 마샬 몰드를 사용하여 각각 택코트 RSC-4와 필름을 사용하여 공시체를 제작하였다. 1층 다짐 후 24시간 양생 후 2차 다짐을 한 후에 48시간 부착강도를 측정하였다. 그림1은 본 실험에 사용된 시편의 제작과정이며, 그림2는 부착강도 테스트 후의 모습이다. 결과 및 고찰 3.1 동일한 양생조건에서 콘크리트 위에 부착한 택코트 종류에 따른 부착강도 그림4은 휠트래킹 몰드로 만든 콘크리트에 부착한 택코트 종류에 따른 부착강도를 나타낸 그래프이다. 3.2 동일한 양생조건에서 아스팔트 위에 부착한 택코트 종류에 따른 부착강도 그림 5는 마샬 몰드로 만든 아스팔트 공시체 위에 부착한 택코트 종류에 따른 부착강도를 나타낸 그래프이다. RSC-4의 경우에는 살포 후 30분간 상온양생을 실시하였다 결 론 일반적으로 사용되어지고 있는 택코트 인 RSC-4의 경우 유화아스팔트라는 성질 때문에 충분한 양생이 필요하여 공기가 늘어나게 되어 실제 현장에서 규정에 맞게 사용하기가 힘든 실정이다. 도로 유지.관리 공법중 하나인 덧씌우기 공법에 사용되는 택코트의 종류와 부착하는 재료에 따른 부착 강도평가 실험결과는 다음과 같다. 1) 콘크리트 위에 각각 RSC-4와 택코트 필름을 부착하여 Pull-off-test 장비를 이용하여 부착강도를 평가한 결과 각각 0.77, 0.76 으로 비슷한 결과를 나타냈다. 2) 아스팔트에 부착한 RSC-4와 택코트 필름을 부착하여 부착강도를 평가했을때와 비슷한 경향을 나타냈다. 각각 1.241, 1.304로 택코트 필름과 보호필름을 사용한 쪽이 더 높게 나타났다. 이는 공사기간을 단축시킬 수 있을 뿐만 아니라 트래피커빌리티를 고려하였을 때 택코트 필름과 보호 필름을 사용하여 더 효율적으로 유지.보수를 할 수 있을 것으로 판단된다
        62.
        2017.09 KCI 등재 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
        64.
        2017.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: This study investigates the effect on concrete pavement accordance with the curing methods in cool weather and supports the best method in the field. METHODS: Two field tests evaluated the curing methods of concrete pavement in cool weather. Firstly, five curing methods were tested, including normal curing compound, black curing compound, bubble sheet, curing mat, and curing mat covered with vinyl. Concrete maturity was compared from temperature data. Secondly, normal curing compound and curing mat with vinyl, which showed the best performance, were compared in terms of maturity and join condition index. RESULTS: From the field tests, it is an evident that curing mat with vinyl accelerated the concrete strength. Therefore, it is possible to conduct saw-cut works in cool weather, which minimizes damage on concrete at joint. CONCLUSIONS: For concrete pavement in cool weather, using curing mat with vinyl as the curing method could overcome the strength delay. Therefore, strength and durability problems on concrete at joint due to cool weather would be fewer in the future.
        4,000원
        65.
        2017.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : This paper focuses on strength development according to the mix design with cement type and mineral admixture from laboratory and field tests in cool weather. METHODS : Two methods evaluated the mix design of concrete pavement in cool weather. Firstly, laboratory tests including slump, air contents, setting time, strength, maturity, and freezing-thawing test were conducted. Three alternatives were selected based on the tests. Secondly, a field test was conducted and the optimum mix design in cool weather was suggested . RESULTS : It is an evident from the laboratory test that a mix with type Ⅲ cement showed better performance than the one with type Ⅰ cement. There was a delay in strength development of a mix with mineral admixture compared to mix design without any mineral admixture. In the field test, type Ⅲ cement+flyash 20% mix design proved the best performance. CONCLUSIONS : For concrete pavement in cool weather, mix design using type Ⅲ cement could overcome the strength delay due to mineral admixture. Moreover, it is possible to make sure of durability of pavement. Therefore, strength and durability problems due to cool weather would decrease.
        4,000원
        66.
        2017.04 구독 인증기관·개인회원 무료
        This study investigates the flexural shear strength of ultra high performance concrete I-girder. The effect of aspect ratio on the flexural - shear strength of UHPC was analyzed using finite element analysis. The UHPC I-type girder was modeled using 3D shell elements and analyzed using geometric and material nonlinear analysis. The boundary condition is simple support condition and a displacement load is applied to the center of the upper flange. The results shows that shear strength decreased as the aspect ratio increased and the bending-shear failure of UHPC I-girder does not occur even at larger moment than ordinary concrete due to the cross-linking action of steel fiber.
        67.
        2016.12 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        일반골재인 자갈, 모래와 중량골재인 산화 슬래그 및 자철광을 이용하여 5 종류의 콘크리트를 제작하여 감마선 차폐특성과 압축강도를 살펴보았다. 골재는 평균적인 크기에 따라 비교적 작은 크기의 잔골재와 큰 크기의 굵은 골재로 구분하여 사용하였다. 실험 결과 산화 슬래그 잔골재와 굵은 골재를 사용한 콘크리트가 일반 골재만을 이용하여 배합한 콘크리트 시 편보다 137Cs 감마선에 대해 2% 향상된 감쇠계수인 0.371 cm-1을 기록하였다. 각 시편들의 단위중량을 측정한 결과 자철광 잔골재와 산화 슬래그 굵은 골재로 배합한 조건의 단위중량이 가장 높은 3,175 kg·m-3이었다. 산화슬래그를 잔골재와 굵은 골재로 배합한 조건의 단위중량은 3,052 kg·m-3으로 최대 단위중량 조건보다 123 kg·m-3 낮았지만 감쇠계수는 오히려 0.012 cm-1 향상되었다. 골재들의 화학성분 분석결과 산화 슬래그는 자철광에 비해 마그네슘의 비율은 낮고 칼슘의 비율은 높아 구성에 있어서 차이를 보였다. 따라서 산화슬래그만을 골재로 사용한 경우 자철광을 잔골재로 사용한 경우보다 단위 중량은 낮았지만 마그네슘과 비교하여 원자번호가 큰 칼슘의 비율이 높아서 감마선 차폐성능이 향상된 것으로 생각된다. 중량골재가 배합된 모든 시편들은 일반 골재를 이용한 콘크리트보다 압축강도가 높았고, 산화슬래그와 자철광의 잔골재만을 사용한 경우 4주 양생 후 압축강도가 일반 콘크리트에 비해 45% 향상된 50.2 MPa을 기록하였다.
        4,000원
        68.
        2016.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In korea, only small amount of nonstructural lightweight concrete is being used through indirect effects such as heat insulation property and soundproofing rather than structural elements due to lack of structural lightweight aggregates and lack of understanding about lightweight concrete development, etc. That`s why structural lightweight concrete to reduce weight has not been put to practical use. This study is a part of high strength lightweight aggregate concrete researches using lightweight aggregates and the purpose of this study is to find out the basic physical characteristics and tension cracking fracture characteristics of lightweight concrete. Crack Mouth Opening Displacement is measured through 3 point flexure experiment about notch beam. Load-CMOD characteristics are examined through rules of countries, characteristics of lightweight concrete and tension cracking fracture experiments. The degree of tensile characteristic alteration according to size changes of specimen and the characteristics about crack surface are analyzed. The changes of softening curve are analyzed and fracture energy is drawn through inverse analysis by the obtained Load-CMOD curve. To decide fracture energy and analysis parametric, inverse analysis is conducted and Ant Colony Method is conducted for optimization and then a way to find out optimal parameterization fracture energy is suggested.
        4,000원
        69.
        2016.05 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Small-size buildings are not designed by professional structural engineers in Korea. Therefore, their seismic performance can not be exactly estimated because their member sizes and reinforcement may be over- or under-designed. A prescriptive design criteria for the small-size buildings exists, but it also provides over-designed structural members since structural analysis is not incorporated, so it is necessary to revise the prescriptive criteria. The goal of this study was to provide an information for the revision, which is seismic performance and capability of small-size reinforced concrete moment frame buildings. For the study, the state of existing small-size reinforce-concrete buildings such as member size and reinforcement was identified by investigating their structural drawings. Then, over-strength, ductility and response modification factor of the small-size reinforced concrete moment frame buildings were estimated by analytical approach along with seismic performance check. The result showed that they possess moderate over-strength and ductility, and may use slightly increased response modification factor.
        4,000원
        70.
        2016.04 구독 인증기관·개인회원 무료
        This research presents assessmental FRP plate, one of materials used for reinforcing damage of RC structure caused by deterioration. in order to investigate effective bonding length and bonding strength according to material property of epoxy used for bonding between FRP-Concrete, experimental tests for 3 specimens with each bonding length of 50,100,150,200and 250mm respectively are performed. test results indicate frat material property of epoxy can affect effective bonding length of FRP-Concrete.
        71.
        2016.04 구독 인증기관 무료, 개인회원 유료
        Grouted connections have been widely used for offshore structures such as connection method of jacket and mono-pile structures. It is recommended high strength concrete for grouting between pile and sleeve because it is so rapidly hardening that helpful to fatigue strength. This study investigates axial strength of pile to sleeve grouted connections made by 130MPa of high strength concrete. Push-out test were performed to evaluate the axial strength of the grouted connections with different shear-key spacing.
        3,000원
        72.
        2015.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The purpose of this experimental research is to evaluate the workability and strength properties of hybrid fiber reinforced concrete containing amorphous steel fiber and organic fiber. For this purpose, the hybrid fiber reinforced concrete containing amorphous steel fiber(ASF) with polyamide(PA) and polyvinyl alcohol(PVA) fiber, respectively were made according to their total volume fraction of 0.5% for water-binder ratio of 33%, and then the characteristics such as the workability, compressive strength, and flexural strength of those were investigated. It was observed from the test results that the workability and compressive strength at 7 and 28 days were decreased and the flexural strength at 7 and 28 days was increased with increasing ASF and decreasing organic fiber.
        4,000원
        73.
        2015.11 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In the moment frame subjected to earthquake loads, beam-column joint is structurally important for ductile behavior of a system. ACI Committee 352 proposed guidelines for designing beam-column joint details. The guidelines, however, need to be updated because of the lack of data regarding several factors that may improve the performance of joints. The purpose of this study is to investigate the seismic performance of reinforced concrete exterior joints with high-strength materials and unbonded tendons. Three specimens with different joint shear demand-to-strength ratios were constructed and tested, where headed bars were used to anchor the beam bars into the joint. All specimens showed satisfactory seismic behavior including moment strength of 1.3 times the nominal moment, ductile performance (ductility factor = at least 2.4), and sufficiently large dissipated energy.
        4,000원
        74.
        2015.10 구독 인증기관·개인회원 무료
        More Roller-compacted concrete (RCC) is a dry concrete consisted of same materials as conventional concrete with different proportioning which requires compaction effort in order to reach its final form. Thus, both hydration and aggregate interlock play important roles in its strength augmentation. Flexural strength, an important factor in pavement design and fatigue cracking resistance, can be difficult to be obtained at in-situ and may be subjected to high variability. Even though its compressive strength is relatively high compared to conventional concrete with similar binder content, the relationship between compressive strength and flexural or tensile strength were not well defined. The goal of this research is to compare the relationship between compressive strength and flexural strength as well as the relationship between compressive strength and splitting tensile strength of RCC with those of conventional concrete using various equations suggested in other researches and also to determine new regression equations for estimating RCC’s flexural and splitting tensile strength. The positive result of RCC’s flexural strength was found; it was higher than majority of predicted values from conventional concrete for the same compressive strength. In contrast, RCC’s splitting tensile strength was relatively low compared to that of conventional concrete for the same compressive strength. Power equations were learned to be suitable for relationship between compressive and flexural strengths as well as relationship between compressive and splitting tensile strengths.
        75.
        2015.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        UHPC(Ultra High Performance Concrete) is used widely with its remarkable performance, such as strength, ductility and durability. Since the fibers in the UHPC can control the tensile crack, the punching shear capacity of UHPC is higher than that of the conventional concrete. In this paper, seven slabs with different thickness and fiber volume ratio were tested. The ultimate punching shear strength was increased with the fiber volume ratio up to 1%. The shear capacity of specimens with the fiber content 1% and 1.5% do not have big differences. The thicker slab has higher punching shear strength and lower deformation capacity. The critical sections of punching shear failure were similar regardless of the fiber volume ratio, but it were larger in thicker slab.
        4,000원
        76.
        2015.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Ultra High Performance Fiber Reinforced Concrete (UHPFRC) has a outstanding tensile hardening behaviour after a crack develops, which gives ductility to structures. Existing shear strength model for fiber reinforced concrete is entirely based on crack opening behavior(mode I) which comes from flexural-shear failure, not considering shear-slip behavior(mode II). To find out the mode I and mode II behavior on a crack in UHPFRC simultaneously, maximum shear strength of cracked UHPFRC is investigated from twenty-four push-off test results. The shear stress on a crack is derived as variable of initial crack width and fiber volume ratio. Test results show that shear slippage is proportional to crack opening, which leads to relationship between shear transfer strength and crack width. Based on the test results a hypothesis is proposed for the physical mechanics of shear transfer in UHPFRC by tensile hardening behavior in stead of aggregate interlocking in reinforced concrete. Shear transfer strength based on tensile hardening behavior in UHPFRC is suggested and this suggestion was verified by comparing direct tensile test results and push-off test results.
        4,000원
        77.
        2015.04 구독 인증기관·개인회원 무료
        This study is a part of high strength lightweight aggregate concrete researches using lightweight aggregates and the purpose of this study is to find out the basic physical characteristics and tension cracking fracture characteristics of lightweight concrete. Crack Mouth Opening Displacement is measured through three point flexure experiment about embellish notch beam. Load-CMOD characteristics are examined through rules of countries, characteristics of lightweight concrete and tension cracking fracture experiments. The degree of tensile characteristic alteration according to size changes of specimen and the characteristics about crack surface are analyzed. The changes of softening curve are analyzed and fracture energy is drawn through inverse analysis by the obtained Load-CMOD curve. To decide fracture energy and analysis parametric, inverse analysis is conducted and Ant Colony Method is conducted for optimization and then a way to find out optimal parameterization fracture energy is suggested.
        78.
        2015.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This paper shows the test results of continuous reinforced concrete beams with external post-tensioning rods. Six three-span beams were prepared and tested to fail. Three beams were designed to have flexure-dominating behavior and the others to have shear-critical behavior. In each group, one beam without external post-tensioning rods was designated as a control beam and two beams had the external post-tensioning rods of 18 mm or 22 mm diameter. External post-tensioning rods were installed within an interior span of 6000 mm. They show V-shaped configuration because two anchorages were located at the top of interior supports and a saddle pin at mid-span was installed at the bottom of the beam. Test results show that the load and shear capacities of strengthened beams were increased when compared with the control beam. Additionally, the measured shear strength was compared with the strength predicted by ACI 318-11 code equations. The detailed ACI 318-11 equation predicted the measured shear strength and failure location of the continuous beam reasonably well.
        4,000원
        79.
        2015.03 구독 인증기관·개인회원 무료
        More than sixty percent of highways in Korea were constructed with concrete pavement to carry the heavy traffic loads due to the economic development of this country. The service life of some pavements are close to the end, therefore, they requires the maintenances, rehabilitations and reconstructions to improve their structural performances.According to the similarity of material properties to the concrete pavement, bonded concrete overlay isa good rehabilitation technique used steadily in Korea. However, it is recently reported that the bonded concrete overlays in some highways expose the early distresses and it is assumed that the poor bonding is a cause of this problem. Additionally, the poor bonding of bonded concrete overlay is caused by the bond strength that is less than the bond strength criterion. The pre-investigation of various concrete overlays is conducted in laboratory to determine the possible influence factors reducing the bond strength and it indicates that there are two possible factors affecting the bond strength: the concrete overlay types and the substrate conditions. The study investigates the vulnerable factor between the two factors based on theevaluation of the in-situ bond strength data of bonded concrete overlay gathered from some highways in Korea. The bond strength data is collected from two different application areas: the new constructionand the rehabilitation projects. The new construction and the rehabilitation projects used Latex-modified Concrete (LMC) and Ultra-rapid Hardening Latex-modified concrete (URH-LMC), respectively as the concrete overlay. The evaluation of in-situ bond strength is to determine the percentage of unacceptable bond strength in each projectto study the effect of different types of concrete overlay. Moreover, the percentage of bonding failure modes having the bond strengths less than the criterion is also measured to study the effect of substrate condition.As a result, substrate condition is the vulnerable factor affecting the poor bonding and causing the early distresses in bonded concrete overlay.
        80.
        2014.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: This study aims to develop a strength test method for irregularly shaped concrete block paver. METHODS : Ten (10) different types of concrete block pavers including porous and dense blocks were tested for strength capacities. Destructive and non-destructive methods were used to develop a strength test method for irregularly shaped concrete block paver. The flexural strength evaluation was conducted in accordance to KS F 4419, while compressive strength was conducted with a 45.7mm-diameter core specimen. The impact echo test method was used to evaluate the elastic modulus. Finally, regression analysis was used to investigate the relationship between flexural strength, compressive strength and elastic modulus based on their corresponding test results. RESULTS : The flexural strength of the tested block pavers ranged from 4MPa to 10MPa. At 95% confidence level, the coefficients of determination between compressive-flexural strength relationship and compressive strength-elastic modulus relationship were 0.94 and 0.84, respectively. These coefficients signified high correlation. CONCLUSIONS : Using the test method proposed in this study, it will be easier to evaluate the strength of irregularly shaped concrete block pavers through impact echo test and compressive test, instead of the flexural test. Relative to the flexural strength requirement of 5MPa, the minimum values of compressive strength and elastic modulus, as proposed, are 13.0MPa and 25.0GPa, respectively.
        4,000원
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