• 제목/요약/키워드: Surface Deformation

검색결과 1,969건 처리시간 0.025초

접착방지막과 접착막을 동시에 적용한 대면적 Au/Pd 트랜스퍼 프린팅 공정 개발 (Development of the Large-area Au/Pd Transfer-printing Process Applying Both the Anti-Adhesion and Adhesion Layers)

  • 차남구
    • 한국재료학회지
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    • 제19권8호
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    • pp.437-442
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    • 2009
  • This paper describes an improved strategy for controlling the adhesion force using both the antiadhesion and adhesion layers for a successful large-area transfer process. An MPTMS (3-mercaptopropyltrimethoxysilane) monolayer as an adhesion layer for Au/Pd thin films was deposited on Si substrates by vapor self assembly monolayer (VSAM) method. Contact angle, surface energy, film thickness, friction force, and roughness were considered for finding the optimized conditions. The sputtered Au/Pd ($\sim$17 nm) layer on the PDMS stamp without the anti-adhesion layer showed poor transfer results due to the high adhesion between sputtered Au/Pd and PDMS. In order to reduce the adhesion between Au/Pd and PDMS, an anti-adhesion monolayer was coated on the PDMS stamp using FOTS (perfluorooctyltrichlorosilane) after $O_2$ plasma treatment. The transfer process with the anti-adhesion layer gave good transfer results over a large area (20 mm $\times$ 20 mm) without pattern loss or distortion. To investigate the applied pressure effect, the PDMS stamp was sandwiched after 90$^{\circ}$ rotation on the MPTMS-coated patterned Si substrate with 1-${\mu}m$ depth. The sputtered Au/Pd was transferred onto the contact area, making square metal patterns on the top of the patterned Si structures. Applying low pressure helped to remove voids and to make conformal contact; however, high pressure yielded irregular transfer results due to PDMS stamp deformation. One of key parameters to success of this transfer process is the controllability of the adhesion force between the stamp and the target substrate. This technique offers high reliability during the transfer process, which suggests a potential building method for future functional structures.

CANDU형 핵연료봉의 정상상태 계산용 ELESTRES 코드내 간극 열전달 모델 평가 (Evaluation of Gap Heat Transfer Model in ELESTRES for CANDU Fuel Element Under Normal Operating Conditions)

  • Lee, Kang-Moon;Ohn, Myung-Yong;Lim, Hong-Sik;Park, Jong-Ho;Hwang, Son-Tae
    • Nuclear Engineering and Technology
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    • 제27권3호
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    • pp.344-357
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    • 1995
  • 핵연료 소결체와 피복관 사이의 간극 크기에 크게 좌우되는 간극 열전도도는 연료봉내 초기 저장에너지 양에 중요한 영향을 끼친다. 정상상태 계산용 ELESTRES 코드에서 사용 중인 수정된 Ross-Stoute 의 간극 열전도도 모델은 단순한 열적 변형 모델에 기초한다. 최근의 실험에서 핵연료 소결체가 연소됨에 따라서 균열, 소결체 재배열 등이 발생되고, 피복관 내부의 편심에 위치하게 된다는 것이 알려졌다. 본 논문에서는, 최근에 제안된 편심형 간극 모델과 소결체 재배열형 간극 모델 등이 기술되었고, 실험 조건과 중수로 핵연료봉의 운전조건 하에서의 소결체와 피복관 사이의 간극 열전도도를 계산하는데 이용되었다. 실험 치와 계산치가 잘 일치됨으로써, 수정된 Ross-Stoute 모델이 ELESTRES 코드 내에서 사용된 열전달 관련 가정들과 잘 부합됨을 보여 주었다. 출력 경계곡선을 따라서 수정된 Ross-Stoute 모델로 계산된 간극내 열전달과 핵연료 표면 온도 등이 편심형 간극 모델과 소결체 재배열형 간극모델에 의한 예측치보다 보수적이었다.

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극저온 $CO_2$ 세정과정 시 미세오염물의 탈착 메커니즘 연구 (A dynamic analysis on minute particles' detachment mechanism in a cryogenic $CO_2$ cleaning process)

  • 석종원;이성훈;김필기;이주홍
    • 반도체디스플레이기술학회지
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    • 제7권4호
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    • pp.29-33
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    • 2008
  • Rapid increase of integrity for recent semiconductor industry highly demands the development of removal technology of contaminated particles in the scale of a few microns or even smaller. It is known that the surface cleaning technology using $CO_2$ snow has its own merits of high efficiency. However, the detailed removal mechanism of particles using this technology is not yet fully understood due to the lack of sophisticated research endeavors. The detachment mechanism of particles from the substrates is known to be belonged in four types; rebounding, sliding, rolling and lifting. In this study, a modeling effort is performed to explain the detachment mechanism of a contaminant particle due to the rebounding caused by the vertical collision of the $CO_2$ snow. The Hertz and Johnson-Kendall-Roberts(JKR) theories are employed to describe the contact, adhesion and deformation mechanisms of the particles on a substrate. Numerical simulations are followed for several representative cases, which provide the perspective views on the dynamic characteristics of the particles as functions of the material properties and the initial inter-particle collision velocity.

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창평쌀엿의 저장온도에 따른 품질특성의 변화 (Changes in Quality Attributes of Chang-pyung Yeot (taffy-like foods) with Storage Temperature)

  • 이종욱;박근형;석호문
    • 한국식품과학회지
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    • 제24권5호
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    • pp.515-518
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    • 1992
  • 창평쌀엿의 최적 품질유지 조건을 찾고저 저장온도에 따른 관능검사, puncture force의 측정, 단면의 모양 변화 및 색도의 변화 등을 실험하고 종합 분석하여 본 결과 저장온도 $10^{\circ}C$까지는 품질의 변화를 찾기 어려웠다. $15^{\circ}C$ 이상에서는 품질특성이 나빠지기 시작하며 1주일 후에는 엿끼리 서로 들어붙기 시작하였다. 저장온도 $15^{\circ}C$ 이상에서는 각각의 엿이 서로 들어붙고, 먹을 때의 느낌도 좋지 못하며 치아에 들어붙어서 창평 쌀엿의 고유한 품질특성을 상실하였다. 따라서 창평쌀엿 고유의 품질을 최적상태로 유지하기 위한 한계 온도는 $12{\sim}13^{\circ}C$로 추정되었다.

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Alloy 600 노즐관통부의 이종금속용접 잔류응력에 따른 응력부식균열 거동 분석 (Analysis of SCC Behavior of Alloy 600 Nozzle Penetration According to Residual Stress Induced by Dissimilar Metal Welding)

  • 김성우;김홍표;김동진;정재욱;장윤석
    • 한국압력기기공학회 논문집
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    • 제6권2호
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    • pp.34-41
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    • 2010
  • This work is concerned with the analysis of stress corrosion cracking(SCC) behavior of Alloy 600 nozzle penetration mock-up according to a residual stress induced by a dissimilar metal welding(DMW) in a nuclear reactor pressure vessel. The effects of the dimension and materials of the nozzle penetration on the deformation and the residual stress induced by DMW were investigated using a finite element analysis(FEA). The inner diameter(ID) change of the nozzle by DMW and its dependance on the design variables, calculated by FEA, were well consistent with those measured from the mock-up. Accelerated SCC tests were performed for three mock-ups with different wall thicknesses in a highly acidic solution to investigate mainly the effect of the residual stress on the SCC behavior of Alloy 600 nozzle. From a destructive examination of the mock-up after the tests, the SCC behavior of the nozzle was fairly related with the residual stress induced by DMW : axial cracks were found in the ID surface of the nozzle within the J-weld region where the highest tensile hoop stress was predicted by FEA, while circumferential cracks were observed beyond both J-weld root and toe where the highest tensile axial stress was expected.

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Damage Mechanism of Drift Ice Impact

  • Gong, Li;Wang, Zhonghui;Li, Yaxian;Jin, Chunling;Wang, Jing
    • Journal of Information Processing Systems
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    • 제15권6호
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    • pp.1350-1364
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    • 2019
  • The ice damage occurs frequently in cold and dry region of western China in winter ice period and spring thaw period. In the drift ice condition, it is easy to form different extrusion force or impact force to damage tunnel lining, causing project failure. The failure project could not arrive the original planning and construction goal, giving rise to the water allocation pressure which influences diversion irrigation and farming production in spring. This study conducts the theoretical study on contact-impact algorithm of drift ices crashing diversion tunnel based on the symmetric penalty function in finite element theory. ANSYS/LS-DYNA is adopted as the platform to establish tunnel model and drift ice model. LS-DYNA SOLVER is used as the solver and LS-PREPOST is used to do post-processing, analyzing the damage degrees of drift ices on tunnel. Constructing physical model in the experiment to verify and reveal the impact damage mechanism of drift ices on diversion tunnel. The software simulation results and the experiment results show that tunnel lining surface will form varying degree deformation and failure when drift ices crash tunnel lining on different velocity, different plan size and different thickness of drift ice. The researches also show that there are damages of drift ice impact force on tunnel lining in the thawing period in cold and dry region. By long time water scouring, the tunnel lining surfaces are broken and falling off which breaks the strength and stability of the structure.

현장평판재하시험에 의한 현장타설형 팽이말뚝기초의 지지력산정 (Estimation of Bearing Capacity for In-Situ Top-Base Method by Field Experimental Plate Load Test)

  • 신은철;안민희
    • 한국지반신소재학회논문집
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    • 제10권1호
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    • pp.1-8
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    • 2011
  • 연약지반상에 구조물을 축조하게 되면 지반의 지지력 부족, 과대침하량 및 측방변형과 같은 문제점이 발생한다. 팽이말뚝기초공법은 지지력이 다소 부족한 지반에 팽이형 콘크리트 파일을 연약지반기초에 사용하여 지지력 증가와 침하억제, 부등침하방지 등의 효과를 도모하는 연약지반 표면 처리용 강성매트공법이며, 공사비 절감 등의 경제적인 효과와 공사기간 단축, 공사 중 소음 등으로 인한 민원 차단 등의 시공에 따른 편의성을 확보할 수 있다. 따라서 본 연구에서는 현장평판재하시험을 통하여 연약지반상의 현장타설형 팽이말뚝기초의 지지력을 산출하였다. 평판재하시험 분석결과를 통해 기존 연구 및 설계에서 적용하고 있는 제안식과 비교분석하여 현장타설형 팽이말뚝기초를 기초지반에 적용할 시 기초의 합리적인 범위를 산정하여 향후의 설계에 그 결과를 활용하고자 한다.

고인성 콘크리트를 사용한 연결조인트의 성능평가 (Performance Evaluation of a Connection Joint using a High-Ductility Concrete)

  • 김병기;김재환;양일승;이상수
    • 한국건축시공학회지
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    • 제15권2호
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    • pp.185-192
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    • 2015
  • 기존 교량의 신축이음장치는 각종 노후화로 인해 제설제를 포함한 노면수의 누수사례가 빈번히 발생하여 교량의 수명을 감소시켜 유지관리 비용을 가중시킨다. 이러한 문제점을 해결하기 위해 신축이음장치를 사용하지 않는 고인성 연결조인트 공법을 개발하였으며, 본 연구에서는 개발된 고인성 연결조인트공법의 균열제어성능 균열 후 누수방지성능 및 염해저항성을 실험적으로 검토하였다. 그 결과, 연결조인트 소재에서 PCM, FRC를 사용한 경우에는 균열 분산성이 불량해서 누수 및 염해가 쉽게 발생하였다. 반면, 고인성 콘크리트를 사용한 연결조인트는 인장변형량이 최대 7.5mm까지 균열을 무해한 마이크로 크랙으로 안정적으로 분산시켰으며, 가혹한 조건에서도 누수를 방지할 수 있었다. 또한, 균열 후에도 염화물 이온의 침투를 방지하여 염해저항성을 확보할 수 있었다.

현대 니트 패션에 나타난 과장성 (Exaggeration Shown in Contemporary Knit Fashion)

  • 유진희;이연희
    • 복식
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    • 제64권8호
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    • pp.67-82
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    • 2014
  • This research aims to explicate how we reveal our identity and emphasize beauty in our passion for beauty. It also attempts to find out our sense of beauty in exaggeration of visual expressions. The purpose is to represent how the contemporary knit fashion is various and exaggerated in our modern fashion world, and also to give the direction of new knitwear designs through the visual analysis of exaggerated knit fashion. Literature research was done by studying reference books and magazines, leading papers and based on a dissertation thesis. This study collected 787 designer's works published in the world's big Four collections from the 2000 S/S to 2011 S/S, in 23 seasons during 12 years. In answer to 9 experts about the criteria of classification, 520 works were chosen and analyzed according to the standard of exaggerated knitwear. The result of the study is the followings: The type of exaggeration shown in contemporary knit fashion was classified in three categories; Enlarge exaggeration, reduce exaggeration and transform exaggeration. As a sub-category, enlarge exaggeration was classified into three categories; Volume expansion and the expansion by the material, gauge and larger composition application expansion. Reduce exaggeration appeared as mini-reduction, skinny-reduction and transform exaggeration was respectively classified into deformation of the shape and patterns. The characteristics of exaggeration shown in contemporary knit fashion appeared as the new formative sense. In terms of fuller sense and surface, using various materials, gauge, changes in the composition represented challenges for textiles. The exaggerated contemporary knitwear expressed sex appeal using tight-fitting effect. Contemporary knit fashion simplified the design by taking advantage of the strong elastic attributes. It showed the beauty of women, expressed variability and limitless knit characteristics beyond the conventional thinking. In addition, it has been well represented as a form of freedom, amusement and diversity.

Impact of rock microstructures on failure processes - Numerical study based on DIP technique

  • Yu, Qinglei;Zhu, Wancheng;Tang, Chun'an;Yang, Tianhong
    • Geomechanics and Engineering
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    • 제7권4호
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    • pp.375-401
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    • 2014
  • It is generally accepted that material heterogeneity has a great influence on the deformation, strength, damage and failure modes of rock. This paper presents numerical simulation on rock failure process based on the characterization of rock heterogeneity by using a digital image processing (DIP) technique. The actual heterogeneity of rock at mesoscopic scale (characterized as minerals) is retrieved by using a vectorization transformation method based on the digital image of rock surface, and it is imported into a well-established numerical code Rock Failure Process Analysis (RFPA), in order to examine the effect of rock heterogeneity on the rock failure process. In this regard, the numerical model of rock could be built based on the actual characterization of the heterogeneity of rock at the meso-scale. Then, the images of granite are taken as an example to illustrate the implementation of DIP technique in simulating the rock failure process. Three numerical examples are presented to demonstrate the impact of actual rock heterogeneity due to spatial distribution of constituent mineral grains (e.g., feldspar, quartz and mica) on the macro-scale mechanical response, and the associated rock failure mechanism at the meso-scale level is clarified. The numerical results indicate that the shape and distribution of constituent mineral grains have a pronounced impact on stress distribution and concentration, which may further control the failure process of granite. The proposed method provides an efficient tool for studying the mechanical behaviors of heterogeneous rock and rock-like materials whose failure processes are strongly influenced by material heterogeneity.