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        검색결과 10

        1.
        2018.05 구독 인증기관·개인회원 무료
        One major concern of Seoul City is the premature failure occurrence such as fatigue cracking and rutting in the pavement. Due to the acceleration at intersections and low vehicle speed at bus stops that cause higher shear and critical strain on the pavement. Because of this, there is a need to develop a new mixture that can withstand bus stop and intersection traffic while preventing premature failure. In this study, a high modulus asphalt mixture was adapted and developed to address the cracking and rutting concerns at bus stops and intersections of Seoul City. Indirect tensile (IDT) and beam fatigue testing were conducted to determine the fatigue performance of the high modulus asphalt mixture (HMB). In addition, the behaviour of the HMB considering loading speed and temperature were investigated using the IDT dynamic modulus test. It was found that the HMB performs 3 and 1.5 times better compared to conventional asphalt using IDT and beam fatigue test respectively. Moreover, it was observed that modulus value of HMB is two times better at low frequency (high temperature) compared to conventional asphalt. The dynamic modulus value of the HMB was then used as input for bus stop and intersection scenario analyses. It was found that HMB can reduce the total thickness of the pavement around 4 to 6cm compared to the conventional asphalt. It can be concluded that because of the better fatigue and rutting performance and high modulus value of HMB at low frequency, it can perform better in bus stops and intersections. It is recommended to conduct field construction to further evaluate the performance of HMB asphalt mixtures in the field.
        2.
        2017.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: The main purpose of this study is to develop a high elastic modulus and low-shrinkage roller-compacted concrete base (RCCB) in order to prevent fatigue cracking and reflective cracking in the asphalt surface layer of composite pavement. Using a rigid base material with low shrinkage can be a solution to this problem. Moreover, a strong rigid base with high elastic modulus is able to shift the location of critical tensile strain from the bottom of the asphalt layer to the bottom of the rigid base layer, which can prevent fatigue cracking in the asphalt layer. METHODS: Sensitivity analysis of composite pavement via numerical methods is implemented to determine an appropriate range of elastic modulus of the rigid base that would eliminate fatigue cracking. Various asphalt thicknesses and elastic moduli of the rigid base are used in the analysis to study their respective influences on fatigue cracking. Low-shrinkage RCC mixture, as determined via laboratory testing with various amounts of a CSA expansion agent (0%, 7%, and 10%), is found to achieve an appropriate low-shrinkage level. Shrinkage of RCC is measured according to KS F 2424. RESULTS : This study shows that composite pavements comprising asphalt thicknesses of (h1) 2 in. with E2 > 19 GPa, 4 in. with E2 > 15 GPa, and 6 in. with E2 > 11 GPa are able to eliminate tensile strain in the asphalt layer, which is the cause of fatigue cracking in this layer. Shrinkage test results demonstrate that a 10% CSA RCC mixture can reduce shrinkage by 84% and 93% as compared to conventional RCC and PCC, respectively. CONCLUSIONS: According to the results of numerical analyses using various design inputs, composite pavements are shown to be able to eliminate fatigue cracking in composite pavement. Additionally, an RCC mixture with 10% CSA admixture is able to reduce or eliminate reflective cracking in asphalt surfaces as a result of the significant shrinkage reduction in the RCC base. Thus, this low-shrinkage base material can be used as an alternative solution to distresses in composite pavement.
        4,000원
        3.
        2009.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This study aims to find a correlation between XRD and Raman result of the oxidized high modulus carbon fibers as a function of its oxidation degrees, and compare with the isotropic carbon fiber reported early. La of the high modulus carbon fiber prepared by oxidation in carbon dioxide gas have been observed using laser Raman spectroscopy. The basic structural parameters of the fibers were evaluated by XRD as well. The La of the original high modulus carbon fibers were measured to be 144 a from Raman analysis and 135 a from XRD analysis. La of the 92% oxidized fiber were 168 a by using Raman and 182 a by using XRD. There was some correlation between the La value obtained from Raman and XRD. However the La value changes of the high modulus carbon fiber through whole oxidation process showed opposite tendency compare with the isotropic carbon fiber because of the fiber structure basically.
        4,000원
        4.
        2006.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 포장의 설계수명과 공용년수를 증대시켜 아스팔트 포장의 유지보수비용을 감소시킬 수 있는 장수명 아스팔트 포장 공법을 제안하였다. 이를 위한 고강성 바인더를 개발하여 다양한 실내 물성시험을 수행하였으며 고강성 기층재의 평가를 위해 실내 공용성시험 및 포장가속시험을 실시하여 기존의 일반아스팔트 혼합물과 비교 평가하였다. 그 결과 고강성 기층재는 일반 아스팔트 혼합물에 비해 강성이 증가하였고 수분손상 피로균열 및 소성변형 저항성 등에서 우수한 것으로 평가되었다. 또한, 장수명 아스팔트 포장의 설계를 위해 구조해석을 실시하여 DB를 구축하였으며 이 자료를 이용해 다중회귀분석 프로그램인 SPSS로 포장체 거동모형을 개발하였다. 여기서 개발된 포장체 거동모형과 실내 외 시험결과를 기초로 장수명 아스팔트 포장 설계를 위한 소프트웨어를 개발하였으며 포장의 최적단면 및 구성을 설정하였다. 이렇게 설정된 장수명 포장의 아스팔트 층 단면 두께는 29cm로 이 단면의 경제성을 확인하기 위하여 생애주기 비용분석을 실시하였다. 그 결과 장수명포장이 기존 고속도로(경부)와 초기시공비용이 동일하면서 생애주기 비용측면에서 유리한 것으로 확인되었다.
        4,500원
        6.
        2004.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Structural changes of high modulus carbon fiber by oxidation in carbon dioxide gas using SEM, TEM, and XRD have been observed. It was shown that the originally high modulus carbon fiber is composed of highly ordered graphitic crystalline area and non-crystalline area. It was observed that the La increases during the whole oxidation process. It was shown that the oxidation of high modulus carbon fiber initiates at the non-crystalline area and at the ends of fiber. The large pores developed in fiber by direction of fiber length at high temperature (1,100℃), and the small pores developed on the fiber surface at low temperature (900℃). In conclusion, it is found that the oxidation of the carbon fiber was progressed through the imperfection.
        4,000원
        7.
        2016.04 서비스 종료(열람 제한)
        The elastic modulus of high-strength steel fiber reinforced concrete was measured 37 GPa to 41.98 GPa. Comparing the difference value of the measured stress and the stress calculated by the regression analysis results were within ± 1 MPa. Measured data acorrding to applied LPF was more stable than unapplied LPF data. but, it was slightly different.
        9.
        2012.11 서비스 종료(열람 제한)
        The objective of this study is to investigate the elasticity of high performance concrete replacement blast furnace slag. Experimental variables of this study are modulus(100×100mm, 150×150mm). And test results were compared with existing equations.
        10.
        2012.11 서비스 종료(열람 제한)
        In this study, KS F 2438 was used to investigated the modulus of elasticity of high performance concrete (HPC) of replacement fly ash, and test results were compared with existing equations. Korea, America and Japan have to use cylinder specimens by KCI(2011). However, in this study was used cubic specimens and the experimental variable of this study is size of cubic specimens.