• Title/Summary/Keyword: Roll-to-roll Printing

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A Study on High-output MR (Magneto-rheological) Brake for Tension Control (장력제어용 고출력 MR 브레이크)

  • Park, Jung-Ho;Kim, Jin-Gyu;Youn, Dong-Won;Ham, Sang-Yong;Noh, Jong-Ho;Yoo, Jin-San
    • Proceedings of the KSME Conference
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    • 2007.05a
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    • pp.1422-1427
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    • 2007
  • MR fluid is a suspension of micrometer-sized magnetizable particles in silicon oil and a functional fluid whose apparent viscosity can be controlled by the applied magnetic field strength. In this paper, a rotary brake using MR fluid called MR brake for tension control of precision machinery such as roll-to-roll printing machinery is presented. First, to obtain the higher performance than conventional powder brake, a MR brake with a modified rotor shape is newly designed and analyzed using FEM. Second, the prototype of MR brake is fabricated with the optimized structural parameters and an experimental apparatus is constructed. Then, basic characteristics of the MR brake are investigated with the different MR fluids. Finally, the validity of the developed MR brake is verified through the comparison with the conventional powder brake.

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Laser Direct Patterning of Carbon Nanotube Film

  • Yun, Ji-Uk;Jo, Seong-Hak;Jang, Won-Seok
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.203-203
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    • 2012
  • The SWCNTs network are formed on various plastic substrates such as poly(ethylene terephthalate) (PET), polyimide (PI) and soda lime glass using roll-to-roll printing and spray process. Selective patterning of carbon nanotubes film on transparent substrates was performed using a femtosecond laser. This process has many advantages because it is performed without chemicals and is easily applied to large-area patterning. It could also control the transparency and conductivity of CNT film by selective removal of CNTs. Furthermore, selective cutting of carbon nanotube using a femtosecond laser does not cause any phase change in the CNTs, as usually shown in focused ion beam irradiation of the CNTs. The patterned SWCNT films on transparent substrate can be used electrode layer for touch panels of flexible or flat panel display instead indium tin oxide (ITO) film.

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Technology Trend of Printed Electronics (인쇄전자 기술동향)

  • You, I.K.;Koo, J.B.;Noh, Y.Y.;Yu, B.G.
    • Electronics and Telecommunications Trends
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    • v.24 no.6
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    • pp.41-51
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    • 2009
  • 인쇄전자(printed electronics) 기술은 인쇄(graphic art printing)가 가능한 기능성전자 잉크소재를 이용하여 초저가격의 프린팅 공정을 통해서 다양한 전자소자를 제작하는 기술로서, 차세대 모바일 IT 기기의 제작에 적합한 전자제품을 생산하는 데 적합한 공정 기술로 인식되고 있다. 현재 기술 수준이 일부 요소 부품을 제작하는 수준에 머무르고 있으나, 여러 가지 잉크소재 및 다양한 초미세 인쇄공정 기술의 개발이 진행됨에 따라 향후 다양한 공정 분야에 적용될 것으로 예상되며, 궁긍적으로 전자제품을 생산하는 기존 반도체 공정을 대체하는 공정으로 자리매김을 할 것으로 예상된다. 특히 인쇄공정 기술은 저온에서 공정이 가능한 기능성 잉크소재들의 개발을 통해서 유연한 플라스틱 기판에 전자소자를 제작하는 플렉시블 전자소자(flexible electronics) 기술과 높은 공정 결합성을 지니고 있으며 이들 공정을 결합하여 향후 연속 공정(roll-to-roll)의 구현이 가능할 것으로 예상된다. 본 기고문에서는 이러한 인쇄전자 기술의 개발동향에 대해서 기술하였다.

Fabrication of Printed Microfluidics Channel by using Thermal Roll-Imprinting

  • Yu, Jong-Su;Jo, Jeong-Dai;Yoon, Seong-Man;Kim, Hee-Yeoun;Kim, Dong-Soo
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.1472-1475
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    • 2009
  • The microfluidics channel were fabricated using thermal roll-imprinting process on plastic substrates. As rollimprinting surface is heated directly at $100^{\circ}C$ and printing process proceed 380/400 kgf pressure, we fabricated microfluidic patterns separated line of $40.04{\mu}m$, serpentine line of $113.89{\mu}m$ and depth of imprint pattern is $15.35{\mu}m$, it means to get fine pattern has more than 70% imprint rate in designed mask.

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Analysis of Film Flow Around Rotating Roller Partially Immersed in Ink (잉크에 부분적으로 잠긴 회전하는 롤 주위의 액막 유동 해석)

  • Yu, Seung-Hwan;Um, Suk-Kee;Lee, Kwan-Soo
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.31 no.12
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    • pp.1017-1023
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    • 2007
  • This study is intended to analyze the effect of thin ink-film thickness around rotating printing roll on the printing quality in the gravure printing process which is used for making electronics circuit like a RFID tag with a conductive ink. The present work numerically estimates the film thickness around rotating roller partially immersed in ink for which the volume of fluid (VOF) method was adopted to figure out the film formation process around rotating roller. Parameter studies were performed to compare the effect of ink properties (viscosity, surface tension), operating condition (roller rotating speed, initial immersed angle) on the film thickness. The result indicates that the film thickness has a strong dependency on the rotating speed, while the surface tension has negligible effect.

Effect of PVP(polyvinylpyrrolidone) on the Ag Nano Ink Property for Reverse Offset Printing (PVP(polyvinylpyrrolidone)가 리버스 오프셋용 은 나노 잉크 물성에 미치는 영향)

  • Han, Hyun-Suk;Kwak, Sun-Woo;Kim, Bong-Min;Lee, Taik-Min;Kim, Sang-Ho;Kim, In-Young
    • Korean Journal of Materials Research
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    • v.22 no.9
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    • pp.476-481
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    • 2012
  • Among the various roll-to-roll printing technologies such as gravure, gravure-offset, and reverse offset printing, reverse offset printing has the advantage of fine patterning, with less than 5 ${\mu}m$ line width. However, it involves complex processes, consisting of 1) the coating process, 2) the off process, 3) the patterning process, and 4) the set process of the ink. Each process demands various ink properties, including viscosity, surface tension, stickiness, and adhesion with substrate or clich$\acute{e}$; these properties are critical factors for the printing quality of fine patterning. In this study, Ag nano ink was developed for reverse offset printing and the effect of polyvinylpyrrolidone(PVP), used as a capping agent of Ag nano particles, on the printing quality was investigated. Ag nano particles with a diameter of ~60 nm were synthesized using the conventional polyol synthesis process. Ethanol and ethylene glycol monopropyl ether(EGPE) were used together as the main solvent in order to control the drying and absorption of the solvents during the printing process. The rheological behavior, especially ink adhesion and stickiness, was controlled with washing processes that have an effect on the offset process and that played a critical role in the fine patterning. The electrical and thermal behaviors were analyzed according to the content of PVP in the Ag ink. Finally, an Ag mesh pattern with a line width of 10 ${\mu}m$ was printed using reverse offset printing; this printing showed an electrical resistivity of 36 ${\mu}{\Omega}{\cdot}cm$ after sintering at $200^{\circ}C$.

The analysis of film flow around rotating roller partially immersed in ink (잉크에 부분적으로 잠겨 회전하는 롤 주위의 액막 유동 해석)

  • Yu, Seung-Hwan;Kang, Soo-Jin;Lee, Kwan-Soo
    • Proceedings of the KSME Conference
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    • 2007.05b
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    • pp.2279-2284
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    • 2007
  • This study is intended to analyze the effect of thin ink-film thickness around rotating printing roll on the printing quality in the gravure printing process which is used for making electronics circuit like a RFID tag with a conductive ink. The present work numerically estimates the film thickness around rotating roller partially immersed in ink, for which the volume of fluid (VOF) method was adopted to figure out the film formation process around rotating roller. Parameter studies were performed to compare the effect of ink viscosity, surface tension, roller rotating speed, immersed angle on the film thickness. The result indicates that the film thickness has a strong dependency on the fluid viscosity, while the surface tension has negligible effect.

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The effect of film morphology by bar-coating process for large area perovskite solar modules

  • Ju, Yeonkyeong;Kim, Byeong Jo;Lee, Sang Myeong;Yoon, Jungjin;Jung, Hyun Suk
    • Proceedings of the Korean Vacuum Society Conference
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    • 2016.02a
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    • pp.416-416
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    • 2016
  • Organic-inorganic metal halide perovskite solar cells have received attention because it has a number of advantages with excellent light harvesting, high carrier mobility, and facile solution processability and also recorded recently power conversion efficiency (PCEs) of over 20%. The major issue on perovskite solar cells have been reached the limit of small area laboratory scale devices produced using fabrication techniques such as spin coating and physical vapor deposition which are incompatible with low-cost and large area fabrication of perovskite solar cells using printing and coating techniques. To solution these problems, we have investigated the feasibility of achieving fully printable perovskite solar cells by the blade-coating technique. The blade-coating fabrication has been widely used to fabricate organic solar cells (OSCs) and is proven to be a simple, environment-friendly, and low-cost method for the solution-processed photovoltaic. Moreover, the film morphology control in the blade-coating method is much easier than the spray coating and roll-to-roll printing; high-quality photoactive layers with controllable thickness can be performed by using a precisely polished blade with low surface roughness and coating gap control between blade and coating substrate[1]. In order to fabricate perovskite devices with good efficiency, one of the main factors in printed electronic processing is the fabrication of thin films with controlled morphology, high surface coverage and minimum pinholes for high performance, printed thin film perovskite solar cells. Charge dissociation efficiency, charge transport and diffusion length of charge species are dependent on the crystallinity of the film [2]. We fabricated the printed perovskite solar cells with large area and flexible by the bar-coating. The morphology of printed film could be closely related with the condition of the bar-coating technique such as coating speed, concentration and amount of solution, drying condition, and suitable film thickness was also studied by using the optical analysis with SEM. Electrical performance of printed devices is gives hysteresis and efficiency distribution.

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10㎛-wide Pattern Engraving using Metal Specimens coated with a heterogeneous metal for Printed Electronics (이종 금속이 코팅된 금속소재를 이용한 인쇄전자소자용 선폭 10㎛급 패턴 가공)

  • Sohn, Hyonkee;Cao, Binh Xuan;Cho, Yong-Kwon;Shin, Dong-Sig;Choi, Jiyeon
    • Laser Solutions
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    • v.17 no.4
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    • pp.20-23
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    • 2014
  • In printed electronics, printing rolls are used to transfer electronic ink onto a flexible substrate. Generally printing rolls are patterned in microscale by the indirect laser method. Since based on the wet etch process, the indirect method is neither environment-friendly nor suitable for making a printing roll with patterns narrower than $20{\mu}m$. In this paper, we have directly engraved micro-patterns into a Zn-coated metal specimens using a picosecond laser in order both to engrave $10{\mu}m$-wide patterns and to improve the pattern profile. Experiments showed that it is possible to engrave $10{\mu}m$-wide patterns with an a rectangular-shaped profile which is necessary for the dimensionally accurate printing.

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A Study on the Computer Simulation in the Changing Velocity and Pressure in Gravure Printing. (그라비어 인쇄에서 속도와 압력변화에 따른 시뮬레이션에 관한 연구)

  • Park, Sung-Jun;Lim, Soo-Man;Youn, Jong-Tae
    • Journal of the Korean Graphic Arts Communication Society
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    • v.25 no.1
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    • pp.53-64
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    • 2007
  • Gravure printing is the most useful printing process than any other engraving printing method. According to the cell which is variable size and depth, ink is transferred substrates. So, the amount of ink from cells has a great effect on the qualities of final printed products. The variables effect on the printability of final products are proportion of the width and length, the rhelogical properties, roll speed etc. However the mechanism of gravure is difficult to study scientifically because of high speed and excessively small size of the cell. To approach the mechanism we experimented the real test by using gravure printability. The condition of variables of IGT is pressure and velocity. By using Polyflow 3. 10. 0 simulation software, we built up the theoretical model under the constant variables. Then, we compared the real test with the simulation results. Therefore, it is studied the mechanism of gravure scientifically and it can be analysed the effect of the variable conditions.

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