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검색결과 900건 처리시간 0.026초

메종 마르지엘라의 디자인 코드 분석 -체크리스트법을 중심으로- (The Analysis of the Maison Margiela's Design Code -Focusing on the Checklist Method-)

  • 목소리;조진숙
    • 패션비즈니스
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    • 제19권4호
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    • pp.135-152
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    • 2015
  • The purpose of this study is to explore the role of deconstruction and creative destruction in Maison Margiela’s fashion design code, which has opened the door to a new wave of innovative design since 1988. Using a combination of theoretical analysis, precedent research, and a review of existing literature, five years of Maison Margiela's works (2010-2014) were evaluated. The analysis shows that Maison Margiela’s Design Code consists of the following key elements: Addition, Extension, Asymmetry, Elimination, Deconstruction, Complanation, and Inversion. Addition refers to act of attaching additional pieces of fabric or clothing on the existing piece. Extension refers to the act of extending the design elements, such as their position or features. Asymmetry means the irregular positioning of left-to right and front-to-back length and features. Deconstruction could be seen in intentionally frayed sleeves, open seams, and tears in the cloth. The element of Elimination was evident in the removal of key pieces of clothing such as a coat, pants, blouse, and a jacket. Complanation refers to the reversion to a two dimensional contemplation of the human form rather than the more obvious 3-dimensional form. Finally, Inversion was used by displaying an inner layer of clothing on the outside or exposing seams or zippers in a way that people are not accustomed to seeing. It also meant that the order of wearing clothes was sometimes inverted, so external layers would be worn within clothing that are traditionally underneath. Maison Margiela’s creations represented a break

Application and optimal design of the bionic guide vane to improve the safety serve performances of the reactor coolant pump

  • Liu, Haoran;Wang, Xiaofang;Lu, Yeming;Yan, Yongqi;Zhao, Wei;Wu, Xiaocui;Zhang, Zhigang
    • Nuclear Engineering and Technology
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    • 제54권7호
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    • pp.2491-2509
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    • 2022
  • As an important device in the nuclear island, the nuclear coolant pump can continuously provide power for medium circulation. The vane is one of the stationary parts in the nuclear coolant pump, which is installed between the impeller and the casing. The shape of the vane plays a significant role in the pump's overall performance and stability which are the important indicators during the safety serve process. Hence, the bionic concept is firstly applied into the design process of the vane to improve the performance of the nuclear coolant pump. Taking the scaled high-performance hydraulic model (on a scale of 1:2.5) of the coolant pump as the reference, a united bionic design approach is proposed for the unique structure of the guide vane of the nuclear coolant pump. Then, a new optimization design platform is established to output the optimal bionic vane. Finally, the comparative results and the corresponding mechanism are analyzed. The conclusions can be gotten as: (1) four parameters are introduced to configure the shape of the bionic blade, the significance of each parameter is herein demonstrated; (2) the optimal bionic vane is successfully obtained by the optimization design platform, the efficiency performance and the head performance of which can be improved by 1.6% and 1.27% respectively; (3) when compared to the original vane, the optimized bionic vane can improve the inner flow characteristics, namely, it can reduce the flow loss and decrease the pressure pulsation amplitude; (4) through the mechanism analysis, it can be found out that the bionic structure can induce the spanwise velocity and the vortices, which can reduce drag and suppress the boundary layer separation.

PIV study of the flow around a 5:1 rectangular cylinder at moderate Reynolds numbers and small incidence angles

  • Guissart, Amandine;Elbaek, Erik;Hussong, Jeanette
    • Wind and Structures
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    • 제34권1호
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    • pp.15-27
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    • 2022
  • This work comes within the framework of the "Benchmark on the Aerodynamics of a Rectangular Cylinder" that investigates a rectangular cylinder of length-to-depth ratio equal to 5. The present study reports and discusses velocity fields acquired using planar Particle Image Velocitmetry for several angles of attack and Reynolds numbers. In particular, for a cylinder depth-based Reynolds number of 2 × 104 and zero incidence angle, the flow features along the lateral (parallel to the freestream) upper and lower surfaces of the cylinder are reported. Using first and second order statistics of the velocity field, the main flow features are discussed, especially the size and location of the time-averaged flow structures and the distribution of the Reynolds stresses. The variation of the flow features with the incidence is also studied considering angles of attack up to 6°. It is shown that the time-averaged flow is fully detached for incidence higher than 2°. For an angle of attack of 0°, the effects of the Reynolds number varying between 5 × 103 and 2 × 104 are investigated looking at flow statistics. It is shown that the time-averaged location of the reattachment point and the shape and position of the time-averaged main vortex are mostly constant with the Reynolds number. However, the size of the inner region located below the time-averaged shear layer and just downstream the leading edge corner appears to be strongly dependent on the Reynolds number.

그래뉼 타입 활성탄 필터의 100 나노 미만 다분산 초미세먼지 표면흡착 제거 효율 연구 (Filtration Efficiency of Granular Activated Carbons to Polydisperse Ultrafine Particles through the Surface Adsoprtion)

  • 조경일;강기원;신지윤;김창혁
    • 한국입자에어로졸학회지
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    • 제18권3호
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    • pp.79-86
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    • 2022
  • Many commercial air purifiers currently have deployed granular activated carbon (GAC) filters for removing volatile organic compounds in the indoor air. GACs are generally used to remove gaseous contaminants in the air through adsorption by the inner surfaces of pores. In addition, airborne particles can be also filtered by the surface adsorption of the GACs, which can improve the life-time of the particulate filters. In this study, the filtration efficiency of GACs to ultrafine particles through surface adsorption was investigated at different volume flow rates by deploying a continuous particle filtration system. The polydisperse sodium chloride (NaCl) particles were generated by a set of an atomizer and a diffusion dryer, and then mixed with particle-free air at different volume flow rates. The penetration of ultrafine particles and pressure drop for each experimental condition were measured to figure out the effect of the volume flow rate on the surface adsoprtion of the GACs to particles, ~ 2 mm. The particle filtration efficiency of the GACs decreased as the volume flow rate increased from 4 to 14 lpm. However, the 5 times thicker GAC filter layer decreased the penetration of ultraparticles than a preious study. The filtration efficiency of the single granule was also higher than the previous result in the literature with smaller granule filter materials.

Numerical analysis of the combined aging and fillet effect of the adhesive on the mechanical behavior of a single lap joint of type Aluminum/Aluminum

  • Medjdoub, S.M.;Madani, K.;Rezgani, L.;Mallarino, S.;Touzain, S.;Campilho, R.D.S.G.
    • Structural Engineering and Mechanics
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    • 제83권5호
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    • pp.693-707
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    • 2022
  • Bonded joints have proven their performance against conventional joining processes such as welding, riveting and bolting. The single-lap joint is the most widely used to characterize adhesive joints in tensile-shear loadings. However, the high stress concentrations in the adhesive joint due to the non-linearity of the applied loads generate a bending moment in the joint, resulting in high stresses at the adhesive edges. Geometric optimization of the bonded joint to reduce this high stress concentration prompted various researchers to perform geometric modifications of the adhesive and adherends at their free edges. Modifying both edges of the adhesive (spew) and the adherends (bevel) has proven to be an effective solution to reduce stresses at both edges and improve stress transfer at the inner part of the adhesive layer. The majority of research aimed at improving the geometry of the plate and adhesive edges has not considered the effect of temperature and water absorption in evaluating the strength of the joint. The objective of this work is to analyze, by the finite element method, the stress distribution in an adhesive joint between two 2024-T3 aluminum plates. The effects of the adhesive fillet and adherend bevel on the bonded joint stresses were taken into account. On the other hand, degradation of the mechanical properties of the adhesive following its exposure to moisture and temperature was found. The results clearly showed that the modification of the edges of the adhesive and of the bonding agent have an important role in the durability of the bond. Although the modification of the adhesive and bonding edges significantly improves the joint strength, the simultaneous exposure of the joint to temperature and moisture generates high stress concentrations in the adhesive joint that, in most cases, can easily reach the failure point of the material even at low applied stresses.

자연 노화에 따른 카본 에폭시 압력용기의 섬유 인장 강도 변화 (Natural Aging Effect on the Fiber Tensile Strength of Carbon Epoxy Pressure Vessel)

  • 황태경;박재범;김형근;도영대
    • Composites Research
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    • 제20권2호
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    • pp.1-9
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    • 2007
  • 카본 에폭시로 제작된 복합재 압력용기의 노화 특성과 구조 사용 수명 평가를 위해 실내와 실외에서 10년과 15년간 자연노화 시켰다. 노화 특성의 통계적 분포를 구하기 위해 노화된 압력용기로부터 링 시편을 채취하여 수압 파괴 시험을 실시하였다. 그리고 섬유와 수지 계면의 노화 특성 확인을 위해 시험 파편 계면을 SEM을 이용하여 관찰하였다. 섬유 인장 파손 변형률의 와이블 파라미터 값 기준으로 실내에서 10년, 15년 노화되었을 경우 각각 19%와 23% 저하되었으나, 실내와 실외의 노화 특성 차이는 크지 않았다. 그러나 압력용기 외면에 적용한 표면 페인트는 노화 방지에 큰 효과를 나타내었다.

Interaction study of molten uranium with multilayer SiC/Y2O3 and Mo/Y2O3 coated graphite

  • S.K. Sharma;M.T. Saify;Sanjib Majumdar;Palash K. Mollick
    • Nuclear Engineering and Technology
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    • 제55권5호
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    • pp.1855-1862
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    • 2023
  • Graphite crucibles are used for melting uranium and its alloys in VIM furnace. Various coating materials namely Al2O3, ZrO2, MgO etc. are applied on the inner surface of the crucibles using paint brush or thermal spray technique to mitigate U-C interaction. These leads to significant amount of carbon pick-up in uranium. In this study, the attempts are made to develop multilayer coatings comprising of SiC/Y2O3 and Mo/Y2O3 on graphite to study the feasibility of minimizing U-C interaction. The parameters are optimized to prepare SiC coating of about 70㎛ thickness using CVD technique on graphite coupons and subsequently Y2O3 coating of about 250㎛ thickness using plasma spray technique. Molybdenum and Y2O3 layers were deposited using plasma spray technique with 70㎛ and 250㎛ thickness, respectively. Interaction studies of the coated graphite with molten uranium at 1450℃ for 20 min revealed that Y2O3 coating with SiC interlayer provides physical barrier for uranium-graphite interaction, however, this led to the physical separation of coating layer. Y2O3 coating with Mo interlayer provided superior barrier effect showing no degradation and the coatings remained intact after interaction tests. Therefore, the Mo/Y2O3 coating was found to be a promising solution for minimizing carbon pick-up during uranium/uranium alloy melting.

해수배관 내부 에폭시 코팅재의 캐비테이션 및 침지 열화에 따른 압입인장특성 (Indentation Tensile Properties of Seawater Piping with Cavitation and Immersion Degradation)

  • 정민재;김수현;전종모;김영식;김영천
    • Corrosion Science and Technology
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    • 제22권6호
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    • pp.419-428
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    • 2023
  • Seawater has been used to cool devices in nuclear power plants. However, the pipes used to transport seawater are vulnerable to corrosion; hence, the inner side of pipelines is coated with an epoxy layer as prevention. Upon coating damage, the pipe becomes exposed, and corrosion progresses. The major cause is widely known as cavitation corrosion, causing the degradation of mechanical properties. In this study, corroded specimens were prepared using cavitation and immersion methods to clarify the degradation trend of mechanical properties with corrosion. Three different types of epoxy coatings were used, and accelerated cavitation procedures were composed of amplitudes of 15 ㎛, 50 ㎛, and 85 ㎛ for 2 h, 4 h, and 6 h. The immersion periods were 3 and 6 weeks. We conducted instrumented indentation tests on all degradation samples to measure mechanical properties. The results showed that higher cavitation amplitudes and longer cavitation or immersion times led to more degradation in the samples, which, in turn, decreased the yield strength. Of the three samples, the C coating had the highest resistance to cavitation and immersion degradation.

생체의학에 적용 가능한 테이퍼형태의 금속성 마이코로니들 어레이의 개발 (A Development of Tapered Metallic Microneedle Array for Bio-medical Application)

  • 제우성;이정봉;김갑석;김경환;진병욱
    • 마이크로전자및패키징학회지
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    • 제11권2호
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    • pp.59-66
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    • 2004
  • 본 연구에서는 유리기판을 통한 SU-8의 이중층을 후면 노광을 통하여 테이퍼지고 속이 빈 형태의 마이크로니들 배열구조물을 만드는 새로운 방법을 제안하였으며 테이퍼지고 속이 빈 형태의 원형축의 Buckling현상에 관한 해석해를 구하였다. Pyrex 7740을 유리기판으로 사용하고 이중층 구조의 SU-8 막을 후면 노광으로 금형 구조물을 제작하는 공정을 개발하였다. $200\;{\mu}m$ 높이의 SU-8기둥들에서 $4.37{\sim}5^{\circ}$범위의 테이퍼 각도를 $400\;{\mu}m$ 높이의 SU-8기둥에서는 $3.08{\sim}4.48^{\circ}$범위 내의 테이퍼 각을 보여주고 있다. 후면 유체저장소와 가로세로 각각 10개의 테이퍼 형태로 전기도금된 니켈 마이크로니들 어레이를 유리 기판을 통해 이중층 구조의 SU-8막을 후면 노광하고. 니켈을 전기도금 함으로서 실현시켰다. $200\;{\mu}m$$400\;{\mu}m$ 높이의 벽두께 $10{\mu}m-20{\mu}m$ 및 내경 $33.6{\mu}m-101{\mu}m$인 마이크로니들 어레이를 제작하였다. 또한 $400\;{\mu}m$ 높이의 벽두께 $20\;{\mu}m$ 및 내경 $33.6\;{\mu}m$$3.08^{\circ}$의 테이퍼 각 마이크로니들의 임계 버클링힘은 1.8N이었다. 이 해는 차후의 테이퍼 형태의 마이크로니들의 설계시 많은 도움을 주리라 생각한다.

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중심부 시야결손을 보이는 초기 녹내장 환자의 진단에서 자동시야계 C10-2의 유용성 (The Effectiveness of Visual Field C10-2 in the Early Detection of Glaucoma with Parafoveal Scotoma)

  • 황보인;박혜영;박찬기
    • 대한안과학회지
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    • 제58권3호
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    • pp.321-326
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    • 2017
  • 목적: 중심부 시야결손을 보이는 초기녹내장 환자를 진단하는 데 가장 효과적인 시야검사에 대한 방향성을 제시하고자 한다. 대상과 방법: 중심부 시야결손을 가진 초기 녹내장 환자의 총 57안을 대상으로 Humphrey 자동시야계 C24-2, C10-2, 주파수배가시야검사(frequency doubling technology perimetry, FDT) C24-2를 시행하여 이를 황반부의 신경절세포내망상층(the ganglion cell-inner plexiform layer, GC-IPL)의 평균두께와 구조기능적으로 비교분석하였다. 결과: Central sensitivity는 자동시야계 C24-2, 자동시야계 C10-2, FDT C24-2 순으로 각각 $27.51{\pm}5.43dB$, $27.39{\pm}5.05dB$, $22.09{\pm}5.08dB$ 순이었으며, 평균 GC-IPL thickness는 $70.2{\pm}8.5{\mu}m$였다. 각각의 시야검사의 central sensitivity와 optical coherence tomography에서의 평균 GC-IPL의 두께를 평가한 회귀분석에서는 자동시야계 C10-2만이 유의한 p-value를 보였으며 (p<0.05), logarithmic scale에서는 $logR^2$ 값이 0.498, antilogarithmic scale에서는 linear $R^2$ 값이 0.486을 보이며, FDT C24-2와 자동 시야계 C24-2에 비해 높은 값을 보였다. 초기 녹내장에서 이러한 관계가 더욱 뚜렷하였다. 결론: 중심부 시야결손을 보이는 초기 녹내장 환자에서 GC-IPL thickness와 중심부 시야 감도 사이의 구조-기능 관계는 Humphrey C10-2 자동시야계가 다른 시야 검사법에 비해 더 잘 반영하였다.