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        검색결과 392

        101.
        2015.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Carbon fibers (CFs) have a unique combination of properties which allow them to be widely used as reinforcing materials in advanced polymer composites. The mechanical properties of CF-reinforced polymer composites are governed mainly by the quality of interfacial adhesion between the CFs and the polymer matrix. Surface treatments of CFs are generally carried out to introduce chemical functional groups on the fiber surfaces, which provide the ability to control the surface characteristics of CFs. In this study, we review recent experimental studies concerning various surface treatment methods for CFs. In addition, direct examples of the preparation and properties of CF-reinforced thermosetting composites are discussed.
        4,200원
        102.
        2015.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        CFRP composites have high specific strength, specific stiffness, long fatigue life, light weight environmental safety characteristics. In this study, the mechanical properties are investigated through the compressive simulation analysis on the carbon fiber reinforced plastic sandwich. The experiment is carried out with the same condition as the analysis to verify the analysis result. One sandwich plate is composed with four layers. From the upper, this plate has the first, second, third and fourth layers due to the arrangement of angle direction. A plate has the symbol of [0/30/30/0] as the first, second, third and fourth layers due to the angle directions of 0°, 30°, 30° and 0°. There are the plates of [0/30/30/0], [0/60/60/0] and [0/90/90/0] in this study. The maximum compressive load becomes 53.139kN during the compression time of 12 sec in case of the plate of [0/30/30/0]. The maximum compressive load becomes 61.826kN during the compression time of 12 sec in case of the plate of [0/60/60/0]. The maximum compressive load becomes 53.002kN during the compression time of 12 sec in case of the plate of [0/90/90/0]. So, the plate of [0/60/60/0] endures the most load among three plates. The result of this study can be applied practically through the validation of experimental data on the simulation data. In this study, the mechanical characteristics are examined systematically through the impact analysis on the composite material of the carbon fiber reinforced plastic with aluminum foam by using the impact absorption due to CFRP plate.
        4,000원
        103.
        2015.04 구독 인증기관 무료, 개인회원 유료
        In constructing the cast-in-place concrete track system, the installation of reinforcing bars to a TCL is one of the main causes of consuming construction time. In this study, to eliminate the reinforcing bar installation process, the applicability of the fiber reinforced concrete to the TCL is studied using the numerical analysis. The analysis is performed using the commercial finite element program, ABAQUS, and, in the analysis, the effect of the variations in fiber content rate and the surrounding temperature is considered. From the analysis, it is found that the fiber reinforced concrete has better applicability than the existing reinforced concrete with steel bar.
        3,000원
        104.
        2015.04 구독 인증기관·개인회원 무료
        This paper deals with the strengthening effect of reinforced concrete beams strengthened with carbon fiber sheets (CFSs). Fifteen strengthened reinforced concrete (RC) beams were experimentally evaluated to determine improvements in structural performance. Test parameters in this experimental study are strengthening ratios and strengthening methods of CFSs (I-S, I-W, U-S, U-W type). RC beams strengthened with CFSs were tested under sustaining load. Considering strengthening ratios and strengthening methods of carbon fiber sheets, structural performance and failure mode of test specimens were evaluated. The results show that maximum capacity of beams strengthened with CFSs is about 28.8% in I-S type, 20.5% in I-W type, 26.0% in U-S type, 28.7% in U-W type higher than that of control beam.
        106.
        2015.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Shear wall systems behave as individual wall because of openings like window and elevator cage. When coupling beams are installed in shear walls, they will have high strength and stiffness so that be less damaged by lateral loads like earthquake. However, coupling beam is difficult construction method. And arranging reinforcement of slender coupling beams are especially hard. It is because the details of coupling beam provided by ACI 318 are complex. In this paper, experiments were conducted using coupling beams with 3.5 aspect ratio to improve the details of slender coupling beams provided by ACI 318. Two specimens were proposed for this study. One specimen applied with bundled diagonally reinforcement only. Another specimen applied both bundled diagonally reinforcement and High-Performance Fiber Reinforced Cementitious Composite (HPFRCC) so that coupling beams have half of transverse reinforcement. All specimen were compared with a coupling beam designed according to ACI 318 and were evaluated with hysteretic behaviors. Test results showed that the performance of two specimen suggested in this study were similar to that of coupling beam designed according to current criteria. And it was considered that simplification of the details of reinforcement would be available if transverse reinforcement was reduced by using bundled diagonally reinforcement and HPFRCC.
        4,000원
        107.
        2015.03 구독 인증기관 무료, 개인회원 유료
        기계의 무게를 대폭 줄이는 것을 목적으로 복합재료에 대해서 많은 연구를 진행하고 있다. 본 연구에서 탄소 섬유 강화 플라스틱과 알루미늄 폼으로 조합해서 만든 샌드위치에 대해서 압축 시뮬레이션 해석을 하였다. 또한 탄소 섬유 강화 플라스틱의 섬유의 배열방식은 [0/90/90/0]이다. 시뮬레이션 해석 방법은 ANSYS를 이용하여 실제와 같은 경계조건을 주고 유한요소해석을 진행하였다. 시편을 압축하는 동안에 탄소 섬유 강화 플라스틱과 알루미늄 폼이 그 접착력보다 크게 발생되어 떨어지는 형상이 일어났다. 또한 2438.3MPa의 최대 등가응력이 발생된 것을 확인하였다. 본 연구에서 나온 해석결과는 안전설계 및 복합재료의 개발에 필요한 자료를 제공할 수 있을 것으로 사료된다.
        3,000원
        108.
        2015.01 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The prime objective of this research was to study the influence of hot-pressing pressure and matrix-to-reinforcement ratio on the densification of short-carbon-fiber-reinforced, randomly oriented carbon/carbon-composite. Secondary objectives included determination of the physical and mechanical properties of the resulting composite. The ‘hybrid carbon-fiberreinforced mesophase-pitch-derived carbon-matrix’ composite was fabricated by hot pressing. During hot pressing, pressure was varied from 5 to 20 MPa, and reinforcement wt% from 30 to 70. Densification of all the compacts was carried at low impregnation pressure with phenolic resin. The effect of the impregnation cycles was determined using measurements of microstructure and density. The results showed that effective densification strongly depended on the hot-pressing pressure and reinforcement wt%. Furthermore, results showed that compacts processed at lower hot-pressing pressure, and at higher reinforcement wt%, gained density gradually during three densification cycles and showed the symptoms of further gains with additional densification cycles. In contrast, samples that were hot-pressed at moderate pressure and at moderate reinforcement wt%, achieved maximum density within three densification cycles. Furthermore, examination of microstructure revealed the formation of cracks in samples processed at lower pressure and with low reinforcement wt%.
        4,000원
        109.
        2014.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: To evaluate the feasibility of cut waste fishing net as a reinforced fiber for concrete. METHODS: Strength characteristics of fiber reinforced concrete using waste fishing net were investigated. The cut waste fishing nets with 4~5cm length were putted into the soil-cement and cement concrete for pavement slab. RESULTS: Compression and tensile strength of fiber reinforced concrete using waste fishing net were increased. CONCLUSIONS: It was concluded that cut waste fishing net can be used as a reinforced fiber for cement concrete. However, sometimes using cut waste fishing net leads to decrease the strength; therefore, further researches are needed for real project.
        4,000원
        110.
        2014.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Recently, methods that usea carbon-based filler, a conductive nanomaterial, have been investigated to develop composite fillers containing dielectric materials. In this study, we added geometric changes to a carbon fiber, a typical carbon-based filler material, by differentiating the orientation angle and the number of plies of the fiber. We also studied the electrical and electromagnetic shield characteristics. Based on the orientation angle of 0˚, the orientation angle of the carbon fiber was changed between 0, 15, 30, 45, and 90˚, and 2, 4, and 6 plies were stacked for each orientation angle. The maximum effect was found when the orientation angle was 90˚, which was perpendicular to the electromagnetic wave flow, as compared to 0˚, in which case the electrical resistance was small. Therefore, it is verified that the orientation angle has more of an effect on the electromagnetic interference shield performance than the number of plies.
        4,000원
        113.
        2014.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In this study, carbon fiber reinforced plastic and aluminum foam used in impact absorber are assembled and modelled. These models are investigated by impact simulation and verified by experimental data. Impact energies of 30 J, 60 J and 100 J are applied on these specimens by striker. For example the experiment for impact energy of 30 J is done and verified by referring to analysis result. As the structural safeties of these assembled composite materials can be anticipated through this study result, these simulation analysis results can be applied into real field.
        4,000원
        114.
        2014.04 구독 인증기관 무료, 개인회원 유료
        An orthotropic plastic constitutive model for fiber-reinforced composite material, is developed, which is simple and efficient to be implemented into computer program for a predictive analysis procedure of composite laminates. An orthotropic initial yield criterion, as well as work-hardening model and subsequent yield surface are established that includes the effects of different yield strengths in each material direction, and between tension and compression. The current model is implemented into a computer code, which is Predictive Analysis for Composite Structures (PACS). The accuracy and efficiency of the anisotropic plastic constitutive model and the computer program PACS are verified by solving a number of various fiber-reinforced composite laminates. The comparisons of the numerical results to the experimental and other numerical results available in the literature indicate the validity and efficiency of the developed model.
        3,000원
        115.
        2014.02 구독 인증기관·개인회원 무료
        본 논문에서는 탄소 섬유 강화 플라스틱 샌드위치 복합재료의 시뮬레이션 해석을 통해 기계적 충격특 성에 대해 연구를 하였다. 스트라이커에 30 J, 60 J, 100 J의 충격에너지를 부여하여 고정 된 시험편에 충격을 가했다. 시뮬레이션 해석 방법은 ANSYS를 이용하여 실제와 같은 경계조건을 주며 유한요소해 석을 진행하였다. 그 결과는 100J의 충격에 에너지를 가해졌을 때 스트라이커가 시험편을 완전히 관통하는 모습이 보이고 충격에너지 30J과 60J일 때는 스트라이커가 시험편을 관통하지 않았다. 본 연구의 결과로 탄소 섬유 강화 플라스틱과 알루미늄 폼으로 조립한 복합재료의 구조적 안전성을 예측과 구조적 안전성이 높이는 사료가 된다.
        116.
        2013.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        For the artistic column used by Glass Fiber Reinforced Plastic(GFRP), the connection of steel with GFRP were needed. Due to the fabricating characteristics of hand laminating, GFRP surfaces had to be connected. Because there were no existed data of these connection, experimental study has to be followed so that the structural strength and buckling mode could be investigated. In this paper, therefore, the axial tests of steel with GFRP were performed. The connection of GFRP's surfaces could be also tested as well. As a result, it could be figured out that the strength of these connections were determined by the adhesive strength.
        4,000원
        117.
        2013.11 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The hysteretic behavior of diagonal reinforced coupling beams is excellent during earthquakes. However, construction of the diagonal reinforced coupling beams is difficult due to complex reinforcement details required by current code procedures (ACI 318-11). Due to the detail requirement, reinforcement congestion and interference among transverse reinforcement always occur during construction field. When the aspect ratio of the beam is large, the interference of reinforcement becomes more serious. The objective of this paper is to simplify the reinforcement details of slender coupling beams by reducing transverse reinforcement around the beam perimeter. For this purpose, high- performance fiber reinforced cementitious composites are used for making coupling beams. Experiments were conducted using three specimens having aspect ratio 3.5. Test results showed that HPFRCC coupling beams with half the transverse reinforcement required by ACI 318-11 provided identical seismic capacities to the corresponding coupling beams having requirement satisfying the requirement specified in ACI 318-11.
        4,000원
        119.
        2013.09 구독 인증기관 무료, 개인회원 유료
        Ultra high performance concrete which has recently been studied was developed to complement the brittle behaviour and dynamic uppermost limit of high strength concrete. Fiber reinforced concrete which mixed steel fiber is receiving attention as an alternative about this and is being developed to complement the disadvantages of high strength concrete including lower toughness coefficients and crack resistance and spalling in fires. Review about fiber reinforced ultra high strength concrete that this study tries to treat includes reduction of self shrinkage generated by high cement content per unit volume of concrete, evaluation of compression and tension strength to lower internal and external spalling resistance and fragility factors of member of framework, and flow characteristics of concrete which doesn't harden according to steel fiber amounts and used materials. As the result, the more fiber reinforcement increases, the more compression and tensile strength increase and deformation control of cement matrix and improvement of energy absorption ability showed the great effect in shrinkage reduction.
        4,000원
        120.
        2013.09 구독 인증기관·개인회원 무료
        본 연구는 다기능 복합 도로포장의 기층인 섬유보강 아스팔트 혼합물의 물성 정량화를 위한 동탄성계수 (Dynamic Modulus)평가이다. 아스팔트 혼합물의 동탄성계수는 포장체의 내구성 및 공용성을 평가하는데 매우 중요한 지표이다. 미국의 AASHTO 2002 설계법(Design Guide2002) 및 한국형 포장설계법(KPRP)에서도 아스팔트 포장체의 가장 중요한 물성중 하나를 동탄성계수로 정의하였고, 이를 아스팔트 포장의 설계 및 해석에 이용하고 있다. 동탄성계수는 다양한 온도 조건, 하중재하주기를 이용하여 다양한 교통조건을 구현할 수 있으며, 특히 아스팔트 혼합물의 점탄성적인 특성을 잘 묘사할 수 있는 물성치 평가 방법이다. 본 연구를 통해 얻어진 섬유보강 아스팔트 혼합물의 동탄성계수 값은 복합 도로포장 시스템 개발의 현장 적용을 위한 설계 프로그램의 입력 변수로 사용하는 것에 목적이 있다. 동탄성계수의 평가를 위해 기층용 Corse입도를 사용하였고, 실험장비는 EN Standards Tester를 이용하였다. 기층용 Coarse입도에 보강섬유 의 양을 0%~0.5%까지 0.1%씩 혼입하여 실험을 진행하였으며, 실험 온도는 –5℃, 5℃, 10℃, 20℃, 30℃, 40℃의 6개 온도에서 각각 진행하였으며, 공시체의 파손가능성을 줄이기 위하여 낮은 온도부터 높은 온도 순서로 실험을 수행하였다. 또한 각 온도별 25Hz, 10Hz, 5Hz, 1Hz, 0.5Hz, 0.1Hz의 하중재하 주기에서 동탄성계수를 측정하였으며, 실험을 통해 얻어진 동탄성계수의 값을 설계의 입력 변수로 사용하기 위해서는 마스터곡선(Master Curve)을 작성해야하는데, 실험으로 결정된 동탄성계수는 실험온도 및 주파수의 조합에 따라 각각 얻을 수 있었으며, 이것을 하중시간과 온도의 중첩(Time-Temperature Superposition Principle)원리를 적용하기 위해 각각의 실험에서 측정된 값을 이용하여 Sigmoidal Function 방정식을 만족하는 입력변수를 결정하였고, 전이함수(Shift factor)를 이용하여 마스터곡선을 작성하였다. FRA혼합물의 동탄성계수 평가 시험 결과, 각각의 온도와 재하하중별로 작성된 마스터곡선을 통해 기층용 Coarse입도에서 0%의 보강섬유 함유량과 0.1~0.5%까지의 보강섬유 함유량에 대한 고온영역과 저 온영역에서의 FRA혼합물의 특성을 확인할 수 있었다.