최근 시멘트 콘크리트 포장의 아스팔트 덧씌우기 포장을 유지보수 공법으로 채택할 경우 반사균열이 다수 발생하여 유지보수 비용 증가로 이루어지고 있다. 반사균열 발생일 지연시키기 위하여 다양한 재료 및 공법을 사용하고 있으나 이에 대한 효과를 정확하게 평 가하는 시험방법 및 평가기준이 미비한 상태이다. 미국에서도 반사균열 문제로 인하여 유지보수 비용이 급격히 증가하고 있으며, 아스 팔트 함량을 높게 하고 개질제 및 그리드를 사용하여 반사균열 발생을 지연시키려는 노력을 하고 있다. 미국 및 선진국에서는 반사균열 평가 시험법으로 Texas Overlay Tester를 범용으로 사용하고 있으며, 반사균열 저항성 평가에 유일무 이한 장비로 알려져 있다. 최근 93%에 이르는 하중 감소율에 도달하는 하중 재하횟수 시험에 시간적 노력과 편차가 크다는 논란이 재 기되어 1000회 까지만 수행하여 균열발생(crack initiation)과 균열전파(crack propagation) 특성울 계산하여 보다 역학적인 방법에 의한 반 사균열 저항성 평가가 시도되고 있다. 밀입도, PSMA, 구스, 그리드 보강 아스팔트 혼합물에 대한 Overlay Tester를 이용하여 반사균열 수행을 수행하였으며, 이에 대한 균 열발생과 균열 전파 특서을 정량화 하여 비교 분석을 실시하였다.
Silver nanowire (AgNW) networks have been adopted as a front electrode in Cu(In,Ga)Se2 (CIGS) thin film solar cells due to their low cost and compatibility with the solution process. When an AgNW network is applied to a CIGS thin film solar cell, reflection loss can increase because the CdS layer, with a relatively high refractive index (n ~ 2.5 at 550 nm), is exposed to air. To resolve the issue, we apply solution-processed ZnO nanorods to the AgNW network as an anti-reflective coating. To obtain high performance of the optical and electrical properties of the ZnO nanorod and AgNW network composite, we optimize the process parameters – the spin coating of AgNWs and the concentration of zinc nitrate and hexamethylene tetramine (HMT – to fabricate ZnO nanorods. We verify that 10 mM of zinc nitrate and HMT show the lowest reflectance and 10% cell efficiency increase when applied to CIGS thin film solar cells.
In this study, the effects of powder size and composition on the reflectance of Al-Si based alloys are presented. First, the reflectance of Al-Si bulk and powder are analyzed to confirm the effect of powder size. Results show that the bulk has a higher reflectance than that of powder because the bulk has lower surface defects. In addition, the larger the particle size, the higher is the reflectance because the interparticle space decreases. Second, the effect of composition on the reflectance by the changing composition of Al-Si-Mg is confirmed. Consequently, the reflectance of the alloy decreases with the addition of Si and Mg because dendrite Si and Mg2Si are formed, and these have lower reflectance than pure Al. Finally, the reflectance of the alloy is due to the scattering of free electrons, which is closely related to electrical conductivity. Measurements of the electrical conductivity based on the composition of the Al-Si-Mg alloy confirm the same tendency as the reflectance.
함정에 있어서 레이더반사면적은 함정의 생존성과 직결되는 요소로써, 이에 대한 감소설계가 필요하다. 함정의 RCS에 영향을 주는 요소로써, 상부구조물, 함포, 레이더 등이 있다. 레이더의 경우 그 형상이 복잡하여 RCS 감소설계가 어려운 실정이다. 본 논문에서는 레이더의 RCS를 줄이기 위한 최신 기법 중의 하나인 폐위형 마스트에 대해 살펴보고 폐위형 마스트에 적용되는 주파수 선택 표면 (Frequency Selected Surface: FSS)의 특성을 파악하였다. FSS의 형상에 따른 가용 가능한 주파수에 대해 일반적인 레이더와 폐위형 마스트의 RCS 비교를 통해 폐위형 마스트의 RCS 감소 성능을 확인하였고, 해석 고각별, 구조물의 경사별 RCS 해석을 통해 특성을 파악하였다. 일반 적인 레이더의 경우 복잡한 형상으로 인하여 높은 RCS 값을 갖는 반면 폐위형 마스트의 경우 단순한 형상으로 인해 낮은 RCS 값을 갖는 것을 확인하였다.
Silicon nitride (SiNx:H) films made by plasma enhanced chemical vapor deposition (PECVD) are generally used as antireflection layers and passivation layers on solar cells. In this study, we investigated the properties of silicon nitride (SiNx:H) films made by PECVD. The passivation properties of SiNx:H are focused on by making the antireflection properties identical. To make equivalent optical properties of silicon nitride films, the refractive index and thickness of the films are fixed at 2.0 and 90 nm, respectively. This limit makes it easier to evaluate silicon nitride film as a passivation layer in realistic application situations. Next, the effects of the mixture ratio of the process gases with silane (SiH4) and ammonia (NH3) on the passivation qualities of silicon nitride film are evaluated. The absorption coefficient of each film was evaluated by spectrometric ellipsometry, the minority carrier lifetimes were evaluated by quasi-steady-state photo-conductance (QSSPC) measurement. The optical properties were obtained using a UV-visible spectrophotometer. The interface properties were determined by capacitancevoltage (C-V) measurement and the film components were identified by Fourier transform infrared spectroscopy (FT-IR) and Rutherford backscattering spectroscopy detection (RBS) - elastic recoil detection (ERD). In hydrogen passivation, gas ratios of 1:1 and 1:3 show the best surface passivation property among the samples.
Acoustic target strength (TS) measurement and theoretical acoustic scattering models were applied to estimate the TS for assessing the fish biomass. TS measurement was made of ex situ sailfin sandfish Arctoscopus japonicus at 70 and 120 kHz, and then compared to backscatter model prediction. The live sandfish was tethered in seawater using monofilament lines. Measurements were made versus incidence angle, −50° to 50° relative to dorsal aspect directions. Distorted wave Born approximation (DWBA) model was used to calculated TS pattern. The TS values of sandfish (body length: 16.2 cm) at 70 and 120 kHz were ‒66.94 dB and ‒64.45 dB, respectively, and were about 20 dB lower than TS of other fishes in Korea waters. These TS levels were distributed within the range of the theoretical TS. Ex situ measurement and theoretical TS may be applied to improve acoustical detection and biomass estimation of the sandfish, and is necessary to measure with various lengths.
Morphological properties of dark banded rockfish (Sebastes inermis) were analysed to investigate its acoustic scattering characteristics. Total of 18 live samples was prepared for X-ray photos and collected morphological coordinates of their body and swim bladder shapes. Kirchhoff-ray mode model was used to calculate acoustic scattering pattern for broad-band frequency range. Inclination of swim bladder ranged from 17 to 30 and the averaged value was about 25.2° (S.D.(standard deviation)=3.15). There were no any tendency of increase or decrease in volume and area ratio of swim bladder to fish body and ranged from 2.2 % to 4.43 % and 14.85 % to 21.31 %, respectively. The averaged value of volume and area ratio was 3.13 % (S.D.=0.52) and 17.6 % (S.D.=1.5). b20 values were –69.01 for 38 kHz, –69.83 for 70 kHz, –70.17 for 120 kHz and -70.93 for 200 kHz, recpectively. Broadband acoustic patterns of dark banded rockfish for 20 ~ 200 kHz were similar among samples and they reflected size and morphological properties of fish species.
Fe2O3 coated plate mica(Fe2O3/mica) for infrared reflectance red pigment was prepared under hydrothermal treatment. Fe2O3 was perfectly coated on mica via the difference of surface charge between Fe2O3 and mica particles at pH 3. Fe2O3/mica was then calcined at 800 oC to stabilize the coated layer on mica. The infrare (IR) reflectance pigments were characterized by X-ray diffraction, FE-SEM, zeta potential, and a UV-Vis-NIR spectrophotometer. In particular, the CIE color coordinate and IR reflectance properties of Fe2O3/mica pigments were investigated in relation to the thickness variation of the Fe2O3 layer coated on mica of various lateral sizes. The isolation-heat red paints containing the pigments were prepared and optimized with a thinner, settling agent, and dispersant. Then, the films were made. The thermal property of isolation-heat on these films was observed through the relationship of the IR reflectance value, which was based on the variation of the Fe2O3 layer’s thickness coated on mica and mica’s lateral size as IR reflectance pigment. With an increase in IR reflectance on these films, the thermal property of isolation-heat was effectively enhanced.
Fe4[Fe(CN)6]3 coated on a mica or TiO2/mica surface as infrared reflective blue pigment was prepared by a hydrothermal method. Fe4[Fe(CN)6]3, used as coloring agent, was uniformly coated on mica or TiO2/mica under the optimized condition of a 1.2 : 1 weight ratio between iron(III) chloride hexahydrate and potassium ferrocyanidetrihydrate at the initial pH level of 4.5 at 70˚C. The infrared (IR)-reflective pigments were characterized by SEM, Zeta-potenial, FT-IR, and UV-VIS NIR spectrophotometry. Especially the CIE color coordinate and total solar reflectance(TSR) properties of the pigments were investigated in relation to variation of the coating and coated substrate thicknesses. Isolation-heat paint was prepared with 20 wt% blue pigments fully dispersed in acryl-urethane resin and several additives to coat the film uniformly. The films were also measured with CIE color coordinate, TSR, and the surface temperature was recorded by an isolation-heat measuring system. The pigments and films of Fe4[Fe(CN)6]3 coated on mica and TiO2/mica showed high TSR values compared with the TSR value of Fe4[Fe(CN)6]3 itself. According to the increase of TSR value, the property of isolation-heat is effective. To realize the optimal blue color, we applied the the pigment to TiO2 coated mica(TM(b)) which has blueish interference color. The pigment of Fe4[Fe(CN)6]3 coated on TM(b) shows a strong blue color compared with that of Fe4[Fe(CN)6]3 coated on TiO2/Mmca(TM(w)), which has a whitish interference color.
For fabricating silicon solar cells with high conversion efficiency, texturing is one of the most effective techniques to increase short circuit current by enhancing light trapping. In this study, four different types of textures, large V-groove, large U-groove, small V-groove, and small U-groove, were prepared by a wet etching process. Silicon substrates with V-grooves were fabricated by an anisotropic etching process using a KOH solution mixed with isopropyl alcohol (IPA), and the size of the V-grooves was controlled by varying the concentration of IPA. The isotropic etching process following anisotropic etching resulted in U-grooves and the isotropic etching time was determined to obtain U-grooves with an opening angle of approximately 60˚. The results indicated that U-grooves had a larger diffuse reflectance than V-grooves and the reflectances of small grooves was slightly higher than those of large grooves depending on the size of the grooves. Then amorphous Si:H thin film solar cells were fabricated on textured substrates to investigate the light trapping effect of textures with different shapes and sizes. Among the textures fabricated in this work, the solar cells on the substrate with small U-grooves had the largest short circuit current, 19.20 mA/cm2. External quantum efficiency data also demonstrated that the small, U-shape textures are more effective for light trapping than large, V-shape textures.
멀티미디어의 개발에 따라 가상 영상에 대한 실사적인 색 표현이 가능해졌다. 이로 인해 영상에서 물체를 표현하기 위해 빛과 표면의 특성을 기반으로 색을 표현하는 렌더링 기법들이 개발되고 있다. 빛과 표면의 물리적인 상호작용을 모델링하는 과정에서 각각에 대한 분광 특성에 대한 정보가 정확하다면 결과영상은 정확하게 표현할 수 있다. 그러나 기존의 렌더링 응용은 단순한 RGB 기반 3차원을 이용하여 벡터의 성분별 합과 곱으로 빛과 표면의 분광 특성을 표현하고 상호작용을 모델링하기 때문에 실제적인빛-표면 상호 작용과 수학적인 연산이 일치하지 않는다. 이를 해결하기 위해 본 논문에서는 새로운 특성함수 기반의 기저함수를 이용하여 단순한 연산으로 빛-표면 상호작용을 계산할 수 있는 표면 반사율 모 델 기법을 제안한다.
고속도로에서 재령이 20년이 넘는 노후 콘크리트가 늘어남에 따라 콘크리트 포장의 보수/보강이 중요한 이슈로 대두되고 있다. 노후 콘크리트 포장의 보강 대안으로서 아스팔트 덧씌우기가 많이 사용되고 있으나 반사균열 및 포트홀 등 체류수로 인한 문제가 심각하게 대두되고 있다. 본 연구는 반사균열 및 체류수의 문제를 최소화하기 위해 고안된 접착식 방수층을 소개하였으며 포장가속시험을 통해 일반 택코팅을 적용한 합성단면포장과 비교평가를 실시하였다. 실험은 강우를 모사하기 위해 물을 뿌리면서 진행하였고 덧씌우기 포장체의 거동 및 수분 저항 특성을 분석하였다. 연구결과 접착식 방수층은 아스팔트 포장과 콘크리트 포장이 일체로 거동하는 것을 도와주기 때문에 아스팔트 포장체에 발생하는 거동이 일반 택코팅 구간과 완전히 다른 것으로 나타났다. 또 수분의 유입을 최소화하므로 결과적으로 반사균열의 발생을 약 70% 지연시키는 것으로 나타났으며, 체류수로 인한 손상도 줄여주는 것으로 나타났다.
In this study, optical emission spectroscopy was used to monitor the plasma produced during the RF magnetron sputtering of a BaTiO3 target. The intensities of chemical species were measured by real time monitoring with various discharge parameters such as RF power, pressure, and discharge gas. The emission lines of elemental and ionized species from BaTiO3 and Ti targets were analyzed to evaluate the film composition and the optimized growth conditions for BaTiO3 films. The emissions from Ar(I, II), Ba(I, II) and Ti(I) were found during sputtering of the BaTiO3 target in Ar atmosphere. With increasing RF power, all the line intensities increased because the electron density increased with increasing RF power. When the Ar pressure increased, the Ba(II) and Ti(I) line intensity increased, but the Ar+ line intensity decreased with increasing pressure. This result shows that high pressure is of greater benefit for the ionization of Ba than for that of Ar. Oxygen depressed the intensity of the plasma more than Ar did. When the Ar/O2 ratio decreased, the intensity of Ba decreased more sharply than that of Ti. This result indicates that the plasma composition strongly depends on the discharge gas atmosphere. When the oxygen increased, the Ba/Ti ratio and the thickness of the films decreased. The emission spectra showed consistent variation with applied power to the Ti target during co-sputtering of the BaTiO3 and Ti targets. The co-sputtered films showed a Ba/Ti ratio of 1.05 to 0.73 with applied power to the Ti target. The films with different Ba/Ti ratios showed changes in grain size. Ti excess films annealed at 600˚C did not show the second phase such as BaTi2O5 and TiO2.
Acoustic side-aspect target strength (TS) of living Japanese anchovy (Engraulis japonicus) was measured at 120kHz during in situ experiments. The data were collected by lowering and horizontally projecting the splitbeam transducer into the anchovy school. For analysis and interpretation of the side-aspect TS data, acoustic theoretical model, based on the fish morphology, and dorsal-aspect TS data were used. Total length of the anchovy ranged from 6.6 to 12.8cm (mean length 9.3cm). The side-aspect TS distributed between -40 and -55dB, has an obvious length dependency. The mean side-aspect TS of the anchovy was -47.8dB, and the TS was about 2dB higher than mean TS generated from dorsal-aspect measurements. With reference to maximum TS, the results of the side-aspect TS were distributed within the range of the theoretical and dorsal-aspect TS. Apparently these tendency indicates that side-aspect TS measured from the study is useful data. These in situ measurements of side-aspect TS can be applied to improve acoustic detection and estimates of the anchovy, and is necessary to measure with a various frequency and length for making enhance data.
UV 경화형 수지를 바인더로 활용하고 다양한 크기, 형태, 재질의 입자를 첨가하여 분산시킨 분
산액을 TAC(triacetylcellulose) 필름에 코팅한 후 경화시켜 난반사필름을 제조 하는데 이때 투입된 입
자들이 필름의 물성에 미치는 영향을 분석하였다. 그 결과 입자의 형태가 구형 일 때 표면요철 형성에
유리하며 크기가 작은 입자보다는 큰 입자를 사용할 때 표면요철 형성이 용이하다는 것을 확인할 수
있었다. 입자의 재질이 표면요철에 미치는 영향은 입자의 크기나 형태에 의한 영향보다는 상대적으로
작았다. 입자와 바인더 수지는 각각 굴절율이 다르며 이에 따라서 바인더수지와 입자의 굴절율 차가
달라지게 된다. 따라서 입자의 재질에 따라 PS(polystyrene), silica, PMMA(poly(methyl
methacrylate)) 순서로 total haze 변화율에 영향을 미치는 것을 확인할 수 있었다.
Assessment and management of fisheries abundance in fresh water like a river or a lake is very important to maintain fisheries itself as well as tourist industry even if their scale is not much large. The species for catch in fresh water are mainly a mandarin fish, a carp, an eel, and others. Because oriental river prawn is a main prey of these species and the change in its abundance is directly related to their abundance change in fresh water, information on the abundance and distribution of the species are necessary. Hydroacoustic survey is known to one of the efficient method among several methodology. Information on acoustic target strength is key parameter to estimate abundance for acoustic survey. In this study, measurements on oriental river prawn, Macrobrachium koreana, were conducted for two high frequencies(200kHz and 420kHz) with tilt angle using automatic rotating system. The results of acoustic target strength obtained from the experiment were compared with those of acoustic scattering model, Distorted Wave Born Approximation(DWBA) model. For 200kHz, the result of acoustic target strength experiments was expressed in terms of the averaged target strength dependence on the body langth(BL, cm) as a following relationship; 〈 TS200kHz 〉 = 45.9log(BL) - 107.4. These results provide basic information for studying acoustic target strength and conducting acoustic survey of oriental river prawn.
본 연구는 아스팔트 덧씌우기 포장에 나타나는 반사균열을 제어하기 위하여 노후된 시멘트 콘크리트 포장과 아스팔트 덧씌우기 포장 경계면에 보강재의 효과적인 부착 방법을 찾기 위하여 수행하였다. 이를 위한 부착재로는 RSC-4 유화아스팔트, 컴파운드, 불포화 폴리에스터 수지 (UPR) 등 3종류를 사용하였다. 또한 아스팔트 혼합물은 3종류의 밀입도 혼합물(AC 60-80, RLDPE 8%, PG 76-22)을 사용하였다. 보강 재료로서 유리섬유 그리드 하부에 직포가 부착된 것을 사용하였다. 복합모드 파괴(mode II)의 모사를 위한 촉진시험은 휠트랙킹 장비를 이용하여 수행하였다. 반사균열의 진전은 피로수명으로서 하중 사이클 수에 따라 측정하였고, 공시체의 변위는 각각 시험 공시체에 대하여 demec 게이지를 이용하여 측정하였다. 본 연구 결과, UPR 부착이 가장 효과적이었으며 다음은 RSC-4의 순이었다. 그러나 현장 적용성을 고려할 때 , RSC-4 유제가 보강 재료의 부착을 위해 적절한 선택으로 판단된다.