• Title/Summary/Keyword: Uniform Coating

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사출금형 안에서 코팅을 위한 충돌혼합에 관한 해석 (Analysis of impingement mixing for coating in injection mold)

  • 김슬우;이호상
    • Design & Manufacturing
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    • 제13권4호
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    • pp.1-9
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    • 2019
  • In-mold Coating is a method that can simultaneously perform injection molding and surface coating in injection mold. The material used for coating is two-component polyurethane which is composed of polyol and isocyanate. L-type mixing head can be used to mix polyol and isocyanate uniformly, and inject them inside the mold cavity. The surface quality of the injection molded products by using in-mold coating depends on the mixing uniformity between main agent and hardener. In this study, flow analysis was performed to design a mixing head for uniform mixing of two-component polyurethane. Especially the effects of design parameters of mixing head on mixing uniformity and nozzle pressure were investigated. The parameters of mixing head were mixing chamber diameter, cleaning cylinder diameter, nozzle alignment angle in the horizontal and vertical direction, and cleaning piston position. It was found that optimal design values were mixing chamber diameter of 3.5 mm, cleaning cylinder diameter of 5.0 mm, nozzle horizontal/vertical alignment angles of 140°/160°, and cleaning piston position of 1.8 mm. The optimal values would be used to develop a two-component mixing head achieving an uniform mixing for in-mold coating.

브러쉬 코팅 공정을 이용한 용액 기반 BiAlO 박막의 제작과 액정 소자에의 응용 (Fabrication of the Solution-Derived BiAlO Thin Film by Using Brush Coating Process for Liquid Crystal Device)

  • 이주환;김대현
    • 한국전기전자재료학회논문지
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    • 제34권5호
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    • pp.321-326
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    • 2021
  • We fabricated BiAlO thin film by a solution process with a brush coating to be used as liquid crystal (LC) alignment layer. Solution-processed BiAlO was coated on the glass substrate by brush process. Prepared thin films were annealed at different temperatures of 80℃, 180℃, and 280℃. To verify whether the BiAlO film was formed properly, X-ray photoelectron spectroscopy analysis was performed on Bi and Al. Using a crystal rotation method by polarized optical microscopy, LC alignment state was evaluated. At the annealing temperature of 280℃, the uniform homogenous LC alignment was achieved. To reveal the mechanism of LC alignment by brush coating, field emission scanning electron microscope was used. Through this analysis, spin-coated and brush coated film surface were compared. It was revealed that physical anisotropy was induced by brush coating at a high annealing temperature. Particles were aligned in one direction along which brush coating was made, resulting in a physical anisotropy that affects a uniform LC alignment. Therefore, it was confirmed that brush coating combined with BiAlO thin film annealed at high temperature has a significant potential for LC alignment.

BOX-AND-ELLIPSE-BASED NEURO-FUZZY APPROACH FOR BRIDGE COATING ASSESSMENT

  • Po-Han Chen;Ya-Ching Yang;Luh-Maan Chang
    • 국제학술발표논문집
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    • The 3th International Conference on Construction Engineering and Project Management
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    • pp.257-262
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    • 2009
  • Image processing has been utilized for assessment of infrastructure surface coating conditions for years. However, there is no robust method to overcome the non-uniform illumination problem to date. Therefore, this paper aims to deal with non-uniform illumination problems for bridge coating assessment and to achieve automated rust intensity recognition. This paper starts with selection of the best color configuration for non-uniformly illuminated rust image segmentation. The adaptive-network-based fuzzy inference system (ANFIS) is adopted as the framework to develop the new model, the box-and-ellipse-based neuro-fuzzy approach (BENFA). Finally, the performance of BENFA is compared to the Fuzzy C-Means (FCM) method, which is often used in image recognition, to show the advantage and robustness of BENFA.

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가수분해법에 의한 TiO2 피복 운모의 제조(I) (Preparation of the TiO2 Coated Mica by Hydrolysis Method(I))

  • 박윤창;김효중;곽중협;서태수
    • 공업화학
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    • 제8권5호
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    • pp.709-714
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    • 1997
  • 암모니아수를 이용한 가수분해법에 의해 운모의 이산화티타늄 피복을 시행하여 합성조건의 영향을 조사했다. 운모표면에 균일한 $TiO_2$ 피막을 얻기 위해서는 운모의 입자경이 작고 비표면적이 넓은 쪽이 유리하다. 또한 반응용액상에서 생선된 입자는 운모표면에 유리상태로 부착하여 피막을 불균일화시키므로, 용액상에서의 수화 $TiO_2$ 콜로이드 입자 생성속도를 느리게 제어할 필요가 있다. 본 실험에서 운모의 크기는 $14.7{\mu}m$, 운모 슬러리 용액의 pH는 2.5, $TiOSO_4$ 용액의 F.A.는 291, 반응온도는 $80{\sim}100^{\circ}C$ 정도가 적당하였다. 이상의 결과로부터 균일한 피복을 실현하기 위해서는, 반응온도를 변화시켜 입자의 석출율을 제어하는 일이 필요하다. 이 경우 석출율이 큰 쪽이 균일하고 치밀한 피막을 얻을 수 있었다. 이렇게 하여 얻어진 $TiO_2$ 피복 운모는 $900^{\circ}C$의 소성전후에서 형태에 큰 변화는 없었다.

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롤투롤 슬롯 다이 코터를 이용한 간헐 코팅 공정 개발 (Development of Intermittent Coating Process Using Roll-to-roll Slot-die Coater)

  • 정모세;김기은;나정필;박종운
    • 반도체디스플레이기술학회지
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    • 제22권4호
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    • pp.32-37
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    • 2023
  • For the potential applications in large-area OLED lightings, hydrogen fuel cells, and secondary batteries, we have performed an intermittent coating of high-viscosity polydimethylsiloxane using roll-to-roll slot die coater. During intermittent coating, dead zones inevitably appear where the thickness of PDMS patch films becomes non-uniform, especially at the leading/trailing edge. To reduce it, we have coated the PDMS patches by varying the process parameters such as the installation angle of the slot die head, coating speed, and patch interval. It is observed that the PDMS solution flows down and thus the thickness profile is non-uniform for horizonal intermittent coating, whereas the PDMS solution remaining on the head lip causes an increase in the PDMS thickness at the leading/trailing edges for vertical intermittent coating when the coating velocity is low. As the coating speed increases, however, the dead zone is shown to be reduced. It is addressed that the overall dead zone (the dead zone at the leading edge + the dead zone at the trailing edge) is smaller with horizontal intermittent coating than with vertical intermittent coating.

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해수 내 아크 아연 용사코팅 층의 전기화학적 특성 (Electrochemical Characteristics of Arc Zn Thermal Spray Coating Layer in Sea Water)

  • 박일초;서광철;이경우;김성종
    • 한국표면공학회지
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    • 제48권6호
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    • pp.343-348
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    • 2015
  • In this paper, arc Zn thermal spray coating was carried out on the SS400 steel, and then various electrochemical characteristics and surface damage behavior of Zn thermal spray coating layer were analyzed. As the results, the potential of Zn thermal spray coating layer presented driving voltage above 300 mV compare to that of SS400 steel. The passivity characteristic in anodic polarization curve was not presented. It was adequate to as sacrificial anode material. In the surface damage after galvanostatic experiments, uniform corrosion tendency of Zn thermal spray coating layer was clearly observed with acceleration of the dissolution reaction. In conclusion, Zn thermal spray coating could be determined to represent the corrosion protection effect by stable sacrificial anodic cathodic protection method in seawater because it had sufficient driving voltage and uniform corrosion damage tendency for the SS400 steel.

수중충격파를 이용하여 충격고화와 반응합성으로 제조된 Ti5Si3 금속간 화합물의 표면코팅 층의 특성에 관한 연구 (Characteristics of the Surface Coating Layer of Ti5Si3 Intermetallic Compound Obtained by Shock Compaction and Reaction Synthesis Through Underwater Shock Compression)

  • 이상훈
    • 한국분말재료학회지
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    • 제15권2호
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    • pp.101-106
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    • 2008
  • The objective of the present study is to investigate the increase in the functional characteristics of a substrate by the formation of a thin coating layer. Thin coating layers of $Ti_5Si_3$ have high potential because $Ti_5Si_3$ exhibits high hardness. Shock induced reaction synthesis is an attractive fabrication technique to synthesize uniform coating layer by controlling the shock wave. Ti and Si powders to form $Ti_5Si_3$ using shock induced reaction synthesis, were mixed using high-energy ball mill into small scale. The positive effect of this technique is highly functional coating layer on the substrate due to ultra fine substructure, which improves the bonding strength. These materials are in great demand as heat resisting, structural and corrosion resistant materials. Thin $Ti_5Si_3$ coating layer was successfully recovered and showed high Vickers' hardness (Hv=1183). Characterization studies on microstructure revealed a fairly uniform distribution of powders with good interfacial integrity between the powders and the substrate.

Aerosol Deposition Nozzle Design for Uniform Flow Rate: Divergence Angle and Nozzle Length

  • Kim, Jae Young;Kim, Young Jin;Jeon, Jeong Eun;Jeon, Jun Woo;Choi, Beom Soo;Choi, Jeong Won;Hong, Sang Jeen
    • 반도체디스플레이기술학회지
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    • 제21권2호
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    • pp.38-44
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    • 2022
  • Plasma density in semiconductor fabrication equipment becomes higher to achieve the improved the throughput of the process, but the increase of surface corrosion of the ceramic coated chamber wall has been observed by the increased plasma density. Plasma chamber wall coating with aerosol deposition prefer to be firm and uniform to prevent the potential creation of particle inside the chamber from the deformation of the coating materials, and the aerosol discharge nozzle is a good control factor for the deposited coating condition. In this paper, we investigated the design of the nozzle of the aerosol deposition to form a high-quality coating film. Computational fluid dynamics (CFD) study was employed to minimize boundary layer effect and shock wave. The degree of expansion, and design of simulation approach was applied to found out the relationship between the divergence angle and nozzle length as the key parameter for the nozzle design. We found that the trade-off tendency between divergence angle and nozzle length through simulation and quantitative analysis, and present the direction of nozzle design that can improve the uniformity of chamber wall coating.

경제적이고 효과적인 경피 약물전달을 위한 3차원 구조의 코팅 고분자 마이크로니들 (3-Dimensional Coating Polymer Microneedles for Economical and Efficient Transdermal Drug Delivery)

  • 이한솔;박정환
    • 폴리머
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    • 제38권3호
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    • pp.391-396
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    • 2014
  • 고분자 마이크로니들은 몰딩 공정으로 쉽고 저렴하게 생산할 수 있지만 3차원 고분자 마이크로 구조체에 수용액 기반의 약물 코팅은 어려움이 있다. 2차원 형태의 평면 금속 마이크로니들에 약물을 코팅한 기존의 코팅 마이크로니들과 비교하여 볼 때 3차원 구조의 고분자 마이크로니들은 코팅 면적이 2배 넓고 단위면적당 마이크로니들의 수를 크게 증가시킴으로써 두 배 이상의 약물을 경피를 통해 전달할 수 있다. 증점제와 계면활성제 첨가 방법의 경우 2차원의 평면에는 균일한 코팅을 얻을 수 있었지만 3차원 구조의 고분자 마이크로니들 표면에서는 만족할 코팅을 얻지 못했다. 하지만, 고분자 마이크로니들 표면을 금속 코팅 혹은 UV/ozone으로 처리한 경우 3차원의 마이크로 니들 표면에 만족할 코팅을 얻을 수 있었으나 금속 코팅의 경우 피부에 찌르고 제거하는 과정에서 금속이 피부 안에 남는 안전성 문제가 있어 UV/ozone을 최종 표면 처리 방법으로 선정하였다. 이렇게 처리한 고분자 마이크로니들 표면에 calcein이 첨가된 코팅물질로 코팅된 마이크로니들은 15분 이상의 피부 투여로 코팅물질을 성공적으로 진피층까지 전달할 수 있었다.

Thermal Analysis of Silicon Carbide Coating on a Nickel based Superalloy Substrate and Thickness Measurement of Top Layers by Lock-in Infrared Thermography

  • Ranjit, Shrestha;Kim, Wontae
    • 비파괴검사학회지
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    • 제37권2호
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    • pp.75-83
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    • 2017
  • In this paper, we investigate the capacity of the lock-in infrared thermography technique for the evaluation of non-uniform top layers of a silicon carbide coating with a nickel based superalloy sample. The method utilized a multilayer heat transfer model to analyze the surface temperature response. The modelling of the sample was done in ANSYS. The sample consists of three layers, namely, the metal substrate, bond coat and top coat. A sinusoidal heating at different excitation frequencies was imposed upon the top layer of the sample according to the experimental procedures. The thermal response of the excited surface was recorded, and the phase angle image was computed by Fourier transform using the image processing software, MATLAB and Thermofit Pro. The correlation between the coating thickness and phase angle was established for each excitation frequency. The most appropriate excitation frequency was found to be 0.05 Hz. The method demonstrated potential in the evaluation of coating thickness and it was successfully applied to measure the non-uniform top layers ranging from 0.05 mm to 1 mm with an accuracy of 0.000002 mm to 0.045 mm.