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        검색결과 484

        121.
        2017.04 구독 인증기관 무료, 개인회원 유료
        Recently, functionalization of construction materials using nano materials is being studied in domestic and overseas. In this study, functionalization of cement composites using excellent mechanical characteristics, electrical and thermal conductivity characteristics was carried out. The basic study on the heat characteristics of cement mortar containing Single-walled Carbon Nano Tube(SWCNT), one of the CNT types, has been carried out and this study is aimed to verify whether heat characteristics is effective at low content mixing. The experimental parameters were selected as CNT content, curing age, and supplied voltage. The size of specimens was 50 x 50 x 50mm3 and three specimens were fabricated. As a result, heat characteristics of the SWCNT cement mortar was confirmed even at a low CNT content. As the curing progressed, it was confirmed that heat generation effect was low. But it was confirmed that the heat characteristics were sufficiently exhibited when 100V or more voltage was supplied.
        3,000원
        123.
        2016.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        OBJECTIVES: This study is to develop the optimum mixing proportions for cement concrete pavement with using recycled aggregates. METHODS: The mixture varied recycled coarse aggregates content from 50 % to 100 % to replace the natural coarse aggregates by weight. Tests for fundamental properties as a cement concrete pavement were conducted before and after hardening of the concrete. RESULTS: It was found that the variation in the amount of the recycled aggregate affected the compressive and flexural strength development, as well as the chloride ion penetration resistance. As the amount of the recycled aggregate content increased the compressive and flexural strength and the resistance to chloride ion penetration decreased. However, the resistance to freeze-thaw reaction was affected significantly. In addition, the gradation of the aggregate became worse and hence so did the coarseness factor as the recycled aggregate amount increased. CONCLUSIONS : The fundamental properties of the concrete with recycled aggregate does not seem to be appropriate when the recycled aggregate quality is not guaranteed up to a some level and its replacement ratio is over 50%. The optimized gradation of the aggregates should also be sought when the recycled aggregate is used for the cement concrete pavement materials.
        4,000원
        124.
        2016.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        A huge amount of waste oyster shells are being produced in the southern coast of South Korea. In order to find the possibility to recycle the waste as construction materials, mechanical characteristics of oyster-shell such as compressive strength and modulus of elasticity, were investigated. Compressive strength tests for mortar specimen with varying blending ratio of cement, water, fine aggregate, and oyster-shell were compared with normal cement mortar. There was continuous decreasing tendency in compressive strength as increasing dosages of oyster-shell when used as a replacement of cement, however strength and stiffness were increased around 10% of dosages of oyster-shell when used as a replacement of fine aggregate. The experiment results demonstrate that oyster-shells can be recycled and effective in replacement of not only cement but also fine aggregates.
        4,000원
        125.
        2016.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 논문에서는 저차원 확률 함수를 사용하여 연속적인 선형 공극비 기울기를 갖는 기능경사재료 형태의 가상 시편을 제작 하였다. 실제 물 시멘트 비가 다른 두 종류 시멘트 풀 시편의 X-선 CT 단면 이미지를 통해 3차원 공극 분포 모델을 제작하 여 이를 기반으로 가상 시편을 제작하였다. 가상 시편이 두 실제 시편 사이에 위치하도록 공극 분포 특성을 저차원 확률 함 수와 공극비 기울기로 구성하였다. 공극 분포의 기울기는 연속적인 형태의 수직 방향의 선형 공극비 기울기로 구현하며, 이 를 위해 확률적 최적화의 목적 함수로 저차원 확률 함수와 공극비 기울기에 관한 함수를 사용하였다. 가상 시편 내 공극 분 포 특성 확인을 위해 본 연구에서는 투기율 분석을 유한요소해석을 통해 수행하였다. 공극 분포 특성과 투기율 해석 결과를 비교하여 가상 시편이 갖는 공극 분포 특성이 투기율에 미치는 영향을 확인하고, 투기율의 실제 실험 결과와 해석 결과의 비 교를 통해 해석 결과의 타당성을 입증하였다.
        4,000원
        126.
        2016.08 구독 인증기관·개인회원 무료
        3D 프린틴 공법은 설계 데이터 및 제품의 특성에 따라 액체 또는 분말가루 형태의 폴리머, 금속 등의 재료를 가공하여 적층방식으로 층층이 쌓아올려 3차원으로 입체구조물을 제조하는 방식을 말한다. 3D 프린팅 기술은 1980년대에 개발된 기술이지만 최근 몇 년 사이에 업계의 관심이 집중되고 있다. 3D 프린팅 기술의 적용범위는 기계산업분야에서 의료분야, 항공 분야, 건설 및 토목분야 등으로 그 범위가 점점 확대되어가고 있다 컨투어크래프팅(Contour Crafting)은 미국 남가주대학에서 개발되고 있는 3D 프린팅공법으로 시멘트를 이용하여 구조물의 부가구성물뿐만이 아니라 전체구조물을 자동화로 만드는 것을 목적으로 한다. 3D 프린팅공법의 핵심적인 단점인 외부표면의 정도를 매끄럽게 하기 위하여 Trowel 메커니즘을 도입하여 3D 자유형상을 만드는 것이다. 또한 건설 및 토목분야의 적용을 목적으로 함으로 각층의 두께 및 폭이 일반 3D프린팅공법과 비교할 수 없이 크고 넓다. 이 논문은 선회하는 Side towel을 사용하여 3D 자유곡면의 제작에 대한 기초적인 조사 및 개념을 보여준다. 특히, 세라믹재료를 이용하여 실험과 개발과정 및 장래의 적용범위가 상세히 설명 된다.
        127.
        2016.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This study was performed in order to obtain the effect of the compressive strength of the cured product with manufacturing conditions (amounts of fine aggregate and different types of alkali activator). Material which is the basis of the cured product was used for the blast furnace slag, which has a latent hydraulic activity. Consequently, when using sodium hydroxide as the alkali activator, it is possible to obtain a higher compressive strength than using the calcium hydroxide. And also, it can be added a 10% of fine aggregate with blast furnace slag to improve the compressive strength.
        4,000원
        128.
        2016.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : In this paper, the analytical solutions suggested to simulate the behavior of rheological fluids were rigorously re-derived and investigated for fixed conditions to evaluate the applicability for the solutions on a mini-cone slump test of cement paste. The selected solutions with proper boundary conditions can be used as reference solutions to evaluate the performance of numerical simulation approaches, such as the discrete element method. METHODS: The slump, height, and spread radius for the given boundary and yield stress conditions that are determined by five different analytical solutions are compared. RESULTS: The analytical solution based on fluid mechanics for pure shear flow shows similar results to that for intermediate flow at low yield stresses. The fluid mechanics-based analytical solution resulted in a very similar trend to the geometry-based analytical solution. However, it showed a higher slump at high yield stress and lower slump at low yield stress ranges than the geometry-based analytical model. The analytical solution based on the mini-cone geometry was not significantly affected by the yield criteria, such as von Mises and Tresca. CONCLUSIONS: Even though differences among the analytical solutions in terms of slump and spread radius existed, the difference can be considered insignificant when the solutions were used as reference to evaluate the appropriateness of numerical approaches, such as the discrete element method.
        4,300원
        129.
        2015.08 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: This study investigates the mechanical performance of carbon-capturing concrete that mainly contains blast furnace slag. METHODS: The mixture variables were considered; these included Portland cement content, which was varied from 10% to 40% of the blast furnace slag by weight. The specimens were exposed to different conditions such as high N2 and O2 concentrations, laboratory conditions and high CO2 conditions. Mechanical performances, including compressive and flexural strengths and carbon-capturing depth, were evaluated. RESULTS : The slump, air content and unit weight were not affected significantly by the variation in cement content. The strength development when the specimens were exposed to high purity air was slightly greater than that when exposed to high CO2. As the cement content increased the compressive and flexural strength increased but not considerably. The carbon-capturing capacity decreased as the cement content increased. The specimens exposed in the field for 70 days had flexural strength greater than 3 MPa. CONCLUSIONS : The results indicate that cement content is not an important parameter in the development of compressive and flexural strengths. However, the carbon-capturing depth was higher for less cement content. Even after field exposure for 70 days, neither any significant damage on the surface nor any decrease in strength was observed.
        4,200원
        130.
        2015.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: As a part of our research into repair techniques for roads that have collapsed as a result of a natural disaster, this study set out to find the optimum mix proportion for gravels to be used to restore a damaged area. METHODS: This study considered flow and strength-development characteristics. The experimental variables were the W/C ratio, the usage of the admixture, the types of cement, and the quantity of fine aggregate over three different experimental stages. The compressive strength was measured at 12 hours, one day, three days, and seven days. RESULTS : The flow varied with the amount of fine aggregate and the use of a high-range water-reducing (HRWR) admixture. The compressive strength also varied with respect to the type of cement and the W/C ratios. The strength satisfied the expected requirement of 21 MPa after one day, provided the mix proportion was appropriate. CONCLUSIONS: A gravel-filling high-flow cement-based mortar exhibited strength and consistency with a W/C ratio in the range of 0.40 to 0.45, assuming the use of HRWR at 0.5 to 0.7% and a fine aggregate/cement ratio of 1.0 to 1.5.
        4,000원
        131.
        2015.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: The scaling of a concrete surface caused by the combined effects of frost and de-icing salts is one of the main reasons for the need to repair transportation infrastructures in cold-climate regions. This study describes the results of attempts to determine the scaling resistance of concrete incorporating mineral admixtures such as fly ash, GGBFS, and silica fume, and subjected to the actions of frost and salt. METHODS : Conventionally, to evaluate the fundamental properties of concrete, flexural and compressive strength measurements are regularly performed. Based on the ASTM C 672 standard, concrete is subjected to 2%, 4%, and 8% CaCl2 salt solutions along with repeated sets of 50 freeze/thaw cycles,and the scaling resistance was evaluated based on the mass of the scale and a visual examination. RESULTS : It was observed that silica fume is very effective in enhancing the scaling resistance of concrete. Meanwhile, concrete incorporating GGBFS exhibited poor resistance to scaling, especially in the first ten freeze/thaw cycles. However, fly ash concrete generally exhibited the maximum amount of damage as a result of the frost-salt attack, regardless of the concentrations of the solutions. CONCLUSIONS: It can be concluded that the scaling resistance of concrete is highly dependent on the type of the mineral admixture used in the concrete. Therefore, to provide a durable concrete pavement for use in cold-climate regions, the selection of a suitable binder is essential.
        4,000원
        132.
        2015.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES: This paper describes the expansion caused by the alkali-aggregate reaction (AAR) in concrete pavement currently in service. It also discusses the effects of joints installed to release the stress induced by the AAR expansion. METHODS: The expansion effect on concrete pavement was verified by a visual inspection and long-term measurement of the joint width of a cut-section. The behaviors of 16 newly installed joints were monitored as part of the investigation and long-term monitoring was carried out for three years after cutting. RESULTS: The behavior of a bridge was affected when AAR occurred in the connected pavement. The newly installed joints shrank in the longitudinal direction of the bridge after cutting. The width of the joints decreased over the six months after cutting. A large portion of the joint width (8.5cm) was found to have closed nine months after cutting. It had ultimately shrunk by about 92 percent when the final measurement was taken. CONCLUSIONS : The expansion of the pavement due to AAR was quantitatively described by visual inspection and the long-term monitoring of the newly cut joints. However, the width of the new joints decreased over the six to nine months after cutting. Additional research should be conducted to determine a means of controlling the expansion due to AAR in the pavement.
        4,000원
        133.
        2015.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구는 시멘트 노출에 따른 어류 조직의 형태 생리적 변화를 분석하여 용해된 시멘트 분말이 어류에 미치는 영향을 조사하고자 하였다. 용해된 시멘트 분말에 노출된 아가미는 일차새변의 두께가 두꺼워지고, 염세포와 점액세포도 두드러지게 활성이 증가되고 있으며, 이차새변의 새엽에서는 상피세포의 증식과 박리 및 곤봉화 현상도 관찰되었다. 신장 조직에서는 보우만 주머니 공간이 넓게 관찰되었고, 표피 조직은 표피층의 두께가 감소하며 진피층의 배열이 불규칙해지는 것으로 관찰되었다. 항산화효소와 LDH의 활성은 조직 및 노출 기간에 따라 활성에 차이가 있는 것으로 나타났다. 표피 조직에서 용해된 시멘트 분말에 의해 발현이 증가되는 단백질은 해당과정과 에너지 대사과정에 관여하는 단백질로 확인되었고 발현이 저하된 단백질들은 근수축에 관여하는 근섬유 구성 단백질로 조사되었다. 이러한 결과로 보아 용해된 시멘트 분말은 붕어 조직의 형태적 변형과 생리적 기능의 약화를 초래하여 어류의 생존에 커다란 위협이 될 요인으로 작용할 수 있을 것으로 사료된다.
        4,300원
        134.
        2015.02 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        The carbon dioxide(CO2) released while producing building materials is substantial and has been targeted as a leading contributor to global climate change. One of the most typical method to reducing CO2 for building materials is the addition of slag and fly ash, like pozzolan material, while another method is reducing CO2 production by carbon negative cement development. The MgO-based cement was from the low-temperature calcination of magnesite required less energy and emitted less CO2 than the manufacturing of Portland cements. It is also believed that adding reactive MgO to Portland-pozzolan cements could improve their performance and also increase their capacity to absorb atmospheric CO2. In this study, the basic research for magnesia cement using MgCO3 and magnesium silicate ore (serpentine) as main starting materials, as well as silica fume, fly ash and blast furnace slag for the mineral admixture, were carried out for industrial waste material recycling. In order to increase the hydration activity, MgCl2 was also added. To improve hydration activity, MgCO3 and serpentinite were fired at 700 oC and autoclave treatment was conducted. In the case of MgCO3 as starting material, hydration activity was the highest at firing temperature of 700 oC. This MgCO3 was completely transferred to MgO after firing. This occurred after the hydration reaction with water MgO was transferred completely to Mg(OH)2 as a hydration product. In the case of using only MgCO3, the compressive strength was 3.5MPa at 28 days. The addition of silica fume enhanced compressive strength to 5.5 MPa. In the composition of MgCO3-serpentine, the addition of pozzolanic materials such as silica fume increased the compression strength. In particular, the addition of MgCl2 compressive strength was increased to 80 MPa.
        4,000원
        135.
        2014.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : In this study, wasted vinyl aggregate, which possesses better thermal properties than natural aggregate, was used in cement concrete mixture to develop more economical concrete with thermal insulation and freeze prevention effects. METHODS : Slump and air content of the fresh concrete, which substituted its 0%, 5%, and 10% of coarse aggregate with wasted vinyl aggregate, were measured. Compressive strength, Poisson’s ratio, elastic modulus, and splitting tensile strength of hardened concrete were measured by laboratory tests. Thermal properties of concrete such as coefficient of thermal expansion, thermal conductivity, and specific heat were also measured according to replacement ratio of wasted vinyl aggregate. Finally, the thermal insulation and freeze prevention effectiveness of the concrete mixed with wasted vinyl aggregate was confirmed through finite element analysis of road pavement crossing above concrete box culvert made from wasted vinyl aggregate. RESULTS: Even though the physical properties of wasted-vinyl-aggregate concrete such as compressive strength, Poisson°Øs ratio, elastic modulus, and splitting tensile strength were inferior to those of ordinary concrete, they met requirements for structural concrete. The thermal properties of concrete were improved by wasted vinyl aggregate because it decreased thermal conductivity and increased specific heat of the concrete. According to the result of finite element analysis, temperature variation in pavement subgrade was mitigated by box culvert made from wasted-vinyl-aggregate concrete. CONCLUSIONS: Through the laboratory test and finite element analysis of this study, it was concluded that the concrete structures made from wasted vinyl aggregate showed thermal insulation and freeze prevention effects.
        4,000원
        136.
        2014.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 중금속 오염토양 및 광미의 고형화 처리를 위한 보통 포틀랜드 시멘트의 혼화재로서 제강슬래그의 처리효과를 검토하였다. 대상시료는 충청남도 청양군 남양면 구룡리의 구봉광산 주변 하천퇴적토와 강원도 영월군 상동읍 내덕리의 상동광산에 위치한 광미를 채취하여 사용하였다. 경화제는 시멘트 95%에 제강슬래그 분말 5%를 혼합하여 제조하였으며, 하천퇴적토 및 광미오염토양에 5%, 10% 및 15%(w/w)의 경화제를 첨가하였다. 이때 이 결과들은 시멘트만을 사용한 것과 Ca 함량이 제강슬래그 보다 상대적으로 높은 굴폐각 분말을 사용하여 배합한 결과와 함께 비교하였다. 공시체는 지름 5cm, 높이 10 cm의 몰드를 이용하여 혼합토를 채워 넣은 후, 습윤양생기에서 1일간 양생시킨 다음 탈형 후, 수조에 수중양생을 실시하였다. 7일, 14일 및 28일 경과된 시료를 대상으로 강도시험 및 중금속 용출시험을 실시하여 처리효과를 비교·검토하였다. 광미시료의 경우, 시멘트, 제강슬래그 그리고 굴폐각 순으로 강도 개선의 효과가 큰 것으로 나타나 제강슬래그의 효과를 확인할 수 없었고, 하천퇴적토의 경우는 혼합비 15%에서 제강슬래그를 혼합한 경우에서 우수한 효과를 나타내 혼화재로서 적용을 기대할 수 있을 것으로 판단되었다. 폐기물용출시험 및 0.1 N 염산추출법 결과 경화제의 혼합비가 증가할수록 중금속 및 비소의 농도가 감소하는 경향이 나타났고 특히 비소에 있어서는 제강슬래그의 효과가 가장 좋게 나타났다. 산도가 가장 높은 1N 염산추출법의 결과에서는 광미의 경우 대조구 보다 제강슬래그로 처리한 시료에서 중금속 및 비소의 농도가 아주 낮게 나타났다. 그러나 하천퇴적토는 대조구와 큰 차이가 없이 중금속 및 비소가 용출되었다. 이는 하천퇴적토가 95%이상의 모래로 토양의 입경이 크기 때문에 상대적으로 중금속의 고정화율이 상대적으로 낮은 것으로 판단되었다.
        5,100원
        137.
        2014.04 구독 인증기관·개인회원 무료
        To inject CO2 in geological formations, deep wells that penetrate the formations need to be constructed. The seal integrity of deep wells for CO2 leakage are enhanced by annulus cements. By injecting CO2, brine in formations can be carbonated and the potential degradation of annulus cement in the carbonated brine has been brought up. In this paper, Type G oil well cement (OWC) pastes are hydrated for 28 days. Conditions of geosequestration in a sandstone formation at a depth of roughly 1 km, was simulated by bubbling CO2 into a heated vessel containing brine. The hydrated OWC cylindrical specimens were exposed to this environment. Slices of the cement specimen were taken periodically, during and after exposure to quantify degradation progression. The elastic modulus of the specimens was examined prior to and after exposure. After 28 days of exposure, the degraded depth of specimen was measured as 4.137 mm. The elastic modulus of the specimens was measured as 2.2 GPa and 3.2 GPa prior to and after exposure respectively. Considering a composite action in the partially degraded specimen, the elastic modulus of degraded part can be extracted. The results indicated that the difference of elastic modulus in the partially degraded annulus cements could occur a composite action of deep wells subject to axial load and shear cracks would be generated due to the composite action.