검색결과

검색조건
좁혀보기
검색필터
결과 내 재검색

간행물

    분야

      발행연도

      -

        검색결과 16

        3.
        2015.12 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        A new method is proposed for the calculation of the unrelaxed surface energy of spinel ferrite. The surface energy calculation consists of (1) setting the central and computational domains in the semi-infinite real lattice, having a specific surface, and having an infinite real lattice; (2) calculation of the lattice energies produced by the associated portion of each ion in the relative domain; and (3) dividing the difference between the semi-infinite lattice energy and the infinite lattice energy on the exposed surface area in the central domain. The surface energy was found to converge with a slight expansion of the domain in the real lattice. This method is superior to any other so far reported due to its simple concept and reduced computing burden. The unrelaxed surface energies of the (100), (110), and (111) of ZnFe2O4 and Fe3O4 were evaluated by using in the semi-infinite real lattices containing only one surface. For the normal spinel ZnFe2O4, the(100), which consisted of tetrahedral coordinated Zn2+ was electrostatically the most stable surface. But, for the inverses pinel Fe3O4, the(111), which consisted of tetrahedral coordinated Fe3+and octahedral coordinated Fe2+ was electrostatically the most stable surface.
        4,000원
        4.
        2015.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : The objective of this study is to evaluate the early adhesive characteristic of asphalt emulsions, including polymer-modified emulsions, for chip seals using the surface energy concept, the bitumen bond strength (BBS) test, and the Vialit test. METHODS : Two general methods, the BBS test and Vialit test, were applied to investigate the bond strength and the aggregate loss, respectively. A new theory, the surface free energy (SFE) theory, was used to evaluate the adhesive characteristic between the emulsion and the aggregate. Based on the theory, the contact angles were measured, and then the surface energy components were calculated. Using those components, the work of adhesion (Wa) was calculated for each emulsion. To ensure reliable results, all the tests were performed under the same conditions, i.e., at 25 ℃ for 240 minutes of curing time. For the materials, three emulsions (CRS-2, CRS-2L, and CRS-2P) and one aggregate type (granite) were employed. RESULTS AND CONCLUSIONS : Under the same conditions, the modified emulsions showed better adhesive characteristics and curing behaviors than the unmodified emulsions. In addition, there was no significant difference between the various modified emulsions. One of the important findings is that the analysis by Wa presents more sensitive results than other methods. The results of the Wa showed that the CRS-2P emulsion has the best adhesive characteristics. Consequently, the use of modified emulsions for chip seals could prevent aggregate loss and allow open traffic earlier.
        4,000원
        5.
        2011.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        유비쿼터스 헬스케어 기술 및 휴대용 전자기기의 발전은 지속적으로 전원을 공급하기 위한 새로운 에너지원을 요구하고 있으며, 이러한 점에서 의류를 통한 인체 에너지 수확 시스템의 연구가 요청되고 있다. 인체에너지를 수확하는 방식의 하나인 열전은 인체와 주위 환경간의 온도차이로부터 에너지를 수확하는 방식으로, 본 연구에서 의복을 통한 열전에너지 수확의 기초자료를 확보하기 위하여 인체표면 온도의 분포를 실증적으로 고찰하였다. 이를 위해 체표 구간을 설정하고 구간별 온도분포를 분석하였다. 분석 결과, 상체의 체표온도가 하체에 비해 높았고 특히 심장과 가깝고 혈류량이 많은 몸통 부위의 체표온도가 높았다. 뒷목과 등, 허리의 후면 부위 체표온도가 앞면에 비해 높았으며, 팔 부위의 경우 위쪽 부위의 체표온도가 아래쪽 부위보다 높고 팔 후면이 정면과 측면에 비해 온도가 낮게 나타났다. 체표 구간별 평균 온도와 환경온 간의 차이값이 가장 높아 열전 수확 기능구조 설치에 가장 적합한 위치는 뒷목 부위로 나타났고, 등과 허리 부위, 측면 어깨부위, 가슴 부위, 정면 위팔 부위, 배 부위가 그 뒤를 이었다. 이러한 인체표면 온도분포 결과를 토대로, 본 연구에서는 열에너지 수확의류 개발을 위한 기본 지침을 도출하였다.
        4,000원
        6.
        2009.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Mechanical coating process was applied to form 89 %-hydrolyzed poly vinyl alcohol (PVA) onto boron carbide (B4C) nanopowder using one step high energy ball mill method. The polymer layer coated on the surface of B4C was changed to glass-like phase. The average particle size of core/shell structured B4C/PVA was about 50 nm. The core/shell structured B4C/PVA was formed by dry milling. However, the hydrolyzed PVA of 98~99% with high glass transition temperature (Tg) was rarely coated on the powder. The Tg of polymer materials was one of keys for guest polymer coating on to the host powder by solvent free milling.
        4,000원
        15.
        2017.01 KCI 등재 서비스 종료(열람 제한)
        High temperature corrosion is a major issue in waste-to-energy (WTE) facilities because it effects running cost and energy utilization efficiency. Corrosion of heating surfaces in WTE boilers is a complex phenomenon. The purpose of this study was to analyze the high temperature corrosion characteristics of WTE boiler tubes and to determine the influences of high temperature corrosion on heat exchange. Heating surface corrosion samples for this research were obtained from a superheater tube in municipal solid refuse fuel-fired power plant. Surface morphology, microstructure and phase composition were characterized by scanning electron microscopy, energy-dispersive X-ray spectroscopy, and X-ray diffraction analysis. The morphology of the heating surface was rough and had porous structures. The chlorine content of the surface was 7.4wt.% and the samples were mainly composed of hematite (Fe2O3) and magnetite (Fe3O4). The thermal conductivity of the corrosion samples was characterized using thermal conductivity measurements and was found to be 2.33 W/mK at 500oC. This result, which is 17 times less than that of boiler tube carbon steel (40.40 W/mK), indicates that corrosion of WTE boiler tubes is closely related to a decrease in boiler heat exchange efficiency.