• Title/Summary/Keyword: 프린팅 공정

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Prediction of Residual Layer Thickness of Large-area UV Imprinting Process (대면적 UV 임프린팅 공정에서 잔류층 두께 예측)

  • Kim, Kug Weon
    • Journal of the Semiconductor & Display Technology
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    • v.12 no.2
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    • pp.79-84
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    • 2013
  • Nanoimprint lithography (NIL) is the next generation photolithography process in which the photoresist is dispensed onto the substrate in its liquid form and then imprinted and cured into a desired pattern instead of using traditional optical system. There have been considerable attentions on NIL due to its potential abilities that enable cost-effective and high-throughput nanofabrication to the display device and semiconductor industry. Although one of the current major research trends of NIL is large-area patterning, the technical difficulties to keep the uniformity of the residual layer become severer as the imprinting area increases more and more. In this paper, with the rolling type imprinting process, a mold, placed upon the $2^{nd}$ generation TFT-LCD glass sized substrate($370{\times}470mm^2$), is rolled by a rubber roller to achieve a uniform residual layer. The prediction of residual layer thickness of the photoresist by rolling of the rubber roller is crucial to design the rolling type imprinting process, determine the rubber roller operation conditions-mpressing force & feeding speed, operate smoothly the following etching process, and so forth. First, using the elasticity theory of contact problem and the empirical equation of rubber hardness, the contact length between rubber roller and mold is calculated with consideration of the shape and hardness of rubber roller and the pressing force to rubber roller. Next, using the squeeze flow theory to photoresist flow, the residual layer thickness of the photoresist is calculated with information of the viscosity and initial layer thickness of photoresist, the shape of mold pattern, feeding speed of rubber roller, and the contact length between rubber roller and mold previously calculated. Last, the effects of rubber roller operation conditions, impressing force & feeding speed, on the residual layer thickness are analyzed with consideration of the shape and hardness of rubber roller.

A Study on Manufacturing Innovation in the Jewelry Industry through Automated Systems (자동화 시스템을 통한 쥬얼리 산업의 제조 혁신에 관한 연구)

  • Chun, Jung Jin
    • The Journal of the Convergence on Culture Technology
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    • v.6 no.4
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    • pp.123-130
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    • 2020
  • Prior to the introduction of automated systems such as jewelry CAD and CAM, the jewelry manufacturing industry had many originals made by hand. However, after the introduction of the automated system, original craftsmen with high technology have disappeared, and computer designers and 3D printing print engineers are taking their place. The introduction of automated systems such as CAD and CAM in the existing hand-made production line has resulted in diversification of designs and cutting-edge and specialization of jewelry manufacturing. In the domestic jewelry industry, the dependence of automation systems such as CAD and CAM in the manufacturing process continues to increase, and the situation is taking up more and more parts in the jewelry design curriculum of universities. From these results, the CAD/CAM automation system field in the jewelry manufacturing industry becomes an essential and important field in the future.

Electroless plating of buried contact solar cell (전극함몰형 태양전지의 무전해도금)

  • Dong Seop Kim;Eun Chel Cho;Soo Hong Lee
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.6 no.1
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    • pp.88-97
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    • 1996
  • The metallization is the key to determining cell costs, cell performance, and system reliability. Screen printing technology suffers from several limitations affecting mainly the front grid. The buried contact solar cell (BCSC) was specifically desinged to be compatible with low cost, mass production techniques and avoid the conventional metallization problem. By using electroless plating technique, we performed this metallization inexpensively and reliably. This paper presents the details of the optimization procedure of metallization schemes on laser grooved cell surfaces. Commercially available Ni, Cu and Ag plating solutions were applied for the cell metallization. The application of those solutions on the buried contact front metallization has resulted in an cell efficiency of 18.8%. The cell parameters are an open circuit voltage of 651 mV, short circuit current density of 37.1 mA/$\textrm{cm}^2$, and fill factor of 77.8 %. The efficiency of over 18 % was achieved in the above 90% of the batch.

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A Study on High Viscosity Phosphor Dispensing Process for Implementation of High-Efficiency White LED (고효율 백색 발광다이오드 구현을 위한 고점도 형광체 정량 토출 공정 연구)

  • Yang, Young-Jin;Kim, Hyung-Chan;Ko, Jeong-Beom;Yang, Bong-Su;Dang, Hyun-Woo;Doh, Yang-Hoi;Cho, Kyung-Ho;Choi, Kyung-Hyun
    • Clean Technology
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    • v.20 no.2
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    • pp.97-102
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    • 2014
  • Currently various studies are underway for dispensing high-viscosity phosphor. These studies have reported limitations and challenges in the dispensing process. The discharged amount of phosphor was approximately the same each time which is important for the implementation of high-efficiency white LED technology. This paper present high-viscosity phosphor dispensing process for white LED implementation by using electrostatic printing technology. The voltage controlled DOD (Drop-On-Demand) discharge experiment was studied to determine angle of drop meniscus at nozzle and dot diameter. With increase in Discharge voltage, the discharge angle of meniscus increased while dot diameter decreased. Therefore it can be concluded that we can control the discharge rate by controling the discharge angle of meniscus.

냉음극형 X-선 튜브의 제작을 위한 CNT 페이스트의 무기 충전제에 대한 연구

  • Kim, Jae-U;Gang, Jun-Tae;Jeong, Jin-U;Choe, Seong-Yeol;Choe, Jeong-Yong;An, Seung-Jun;Song, Yun-Ho
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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    • pp.290.2-290.2
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    • 2013
  • X-선 튜브는 의료 영상 및 치료, 산업용 제전 장치, 비파괴 X-선 영상 장치 등에서 사용되는데 기존의 열전자원을 이용한 X-선 튜브와는 달리, 냉음극형 X-선 튜브는 빠른 속도의 디지털 구동이 가능하며 전력 소비가 낮은 장점이 있다. 따라서, 최근 많은 연구자들에 의해서 냉음극형 X-선 튜브에 관한 연구가 활발하게 진행되고 있다. 냉음극형 X-선 튜브는 전계 방출을 이용한 전자원을 사용하며, 탄소나노튜브 (CNT), Si, 다양한 종류의 나노선 등이 대표적이다. 그 중에서 CNT는 높은 종횡비로 인해 전계 방출 특성이 우수하여 가장 대표적인 물질이다. CNT를 이용한 전자원을 제작하기 위해서는 직접 성장법, 전기영동법, 스크린 프린팅법, 디핑법 등 다양한 방법이 존재한다. 직접 성장법을 제외한 방법들은 모재료인 CNT와 용매, 금속재료들을 섞어 페이스트나 수용액의 상태를 제작하여야 한다. 이 때, 금속 재료는 기판과 CNT간의 접착 및 전자 전도 통로의 역할을 하는 무기 충전제이며 일반적으로 나노 혹은 수 마이크로미터 크기의 상태로 존재하는 것을 주로 사용한다. X-선 튜브 제작은 일반적으로 외벽을 유리 혹은 세라믹을 주로 사용하는데 아노드 전극 및 캐소드 전극 등과 결합하여 진공 밀봉된 형태가 되어야 한다. 브레이징 방법은 금속과 세라믹을 결합하는데 매우 유용한 방법이며, 그 중에서도 진공 브레이징 방법은 다량의 부품을 한 번에 결합시킬 수 있다. 하지만 진공 브레이징 공정의 온도는 약 $700{\sim}1,000^{\circ}C$이며 이는 금속 재료가 충분히 증발할 수 있는 온도가 된다. 본 발표에서는 고온 진공 상태에서의 무기 충전제의 증발에 대한 현상을 관찰하고 고온진공 상태에서 증발없이 무기 충전제로의 역할을 할 수 있도록 다양한 금속 및 합금에 대한 연구를 수행하였다. 또한, 이 연구를 통해 선택된 무기 충전제를 포함하여 CNT 페이스트를 볼밀링 방법을 이용하여 제작하였으며, 이를 이용한 CNT 에미터가 X-선 튜브의 전자원으로 사용될 수 있는지 확인하기 위해 전계 방출 실험을 함께 실시하였다. 제작된 CNT 에미터가 우수한 전계 방출 특성을 가지고 있음을 확인하였으며, 이는 본 연구를 통해 선택된 금속 및 합금 재료가 무기 충전제로의 역할을 잘 수행하고 있음을 보여준다.

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Effect of Photo Initiator Content and Light Exposure Time on the Fabrication of Al2O3 Ceramic by DLP-3D Printing Method (광개시제 함량과 노광 시간이 DLP기반 알루미나 3D 프린팅 공정에 미치는 영향)

  • Kim, Kyung Min;Jeong, Hyeondeok;Han, Yoon Soo;Baek, Su-Hyun;Kim, Young Do;Ryu, Sung-Soo
    • Journal of Powder Materials
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    • v.26 no.4
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    • pp.327-333
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    • 2019
  • In this study, a process is developed for 3D printing with alumina ($Al_2O_3$). First, a photocurable slurry made from nanoparticle $Al_2O_3$ powder is mixed with hexanediol diacrylate binder and phenylbis(2,4,6-trimethylbenzoyl) phosphine oxide photoinitiator. The optimum solid content of $Al_2O_3$ is determined by measuring the rheological properties of the slurry. Then, green bodies of $Al_2O_3$ with different photoinitiator contents and UV exposure times are fabricated with a digital light processing (DLP) 3D printer. The dimensional accuracy of the printed $Al_2O_3$ green bodies and the number of defects are evaluated by carefully measuring the samples and imaging them with a scanning electron microscope. The optimum photoinitiator content and exposure time are 0.5 wt% and 0.8 s, respectively. These results show that $Al_2O_3$ products of various sizes and shapes can be fabricated by DLP 3D printing.

Study on Tensile Properties of AlSi10Mg produced by Selective Laser Melting (SLM 공정 기법으로 제작한 AlSi10Mg 인장특성에 관한 연구)

  • Kim, Moosun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.12
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    • pp.25-31
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    • 2018
  • Selective Laser Melting is one of the representative 3D printing techniques for handling metal materials. The main factors influencing the characteristics of structures fabricated by the SLM method include the build-up angle of structures, laser power, laser scan speed, and scan spacing. In this study, the tensile properties of AlSi10Mg alloys were investigated by considering the build-up angle of tensile test specimens, laser scanning speed and scan spacing as variables. The yield stress, tensile strength, and elongation were considered as tensile properties. From the test results, it was confirmed that the yield stress values were lowered in the order of 0, 45, and 90 based on the manufacturing direction of the tensile specimen. The maximum yield stress value was obtained at 1870 mm / min based on the laser scan speed. The yield stress size decreased with decreasing scan speed. Based on the laser scan spacing, as the value increases, the yield stress increases, but the variation is smaller than the other test criteria. The tendency of the tensile strength and elongation variation depending on the test conditions was difficult to understand.

Synthesis and Characterization of Silica Composite for Digital Light Processing (광경화 3D 프린팅 공정을 위한 실리카 복합소재 합성 및 특성 분석)

  • Lee, Jin-Wook;Nahm, Sahn;Hwang, Kwang-Taek;Kim, Jin-Ho;Kim, Ung-Soo;Han, Kyu-Sung
    • Korean Journal of Materials Research
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    • v.29 no.1
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    • pp.23-29
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    • 2019
  • Three-dimensional(3D) printing is a process for producing complex-shaped 3D objects by repeatedly stacking thin layers according to digital information designed in 3D structures. 3D printing can be classified based on the method and material of additive manufacturing process. Among the various 3D printing methods, digital light processing is an additive manufacturing technique which can fabricate complex 3D structures with high accuracy. Recently, there have been many efforts to use ceramic material for an additive manufacturing process. Generally, ceramic material shows low processability due to its high hardness and strength. The introduction of additive manufacturing techniques into the fabrication of ceramics will improve the low processability and enable the fabrication of complex shapes and parts. In this study, we synthesize silica composite material that can be applied to digital light processing. The rheological and photopolymeric properties of the synthesized silica composite are investigated in detail. 3D objects are also successfully produced using the silica composite and digital light processing.

A Study on the Debinding Process of High Purity Alumina Ceramic Fabricated by DLP 3D Printing (DLP 3D 프린팅으로 제작된 고순도 알루미나 세라믹 탈지 공정 연구)

  • Lee, Hyun-Been;Lee, Hye-Ji;Kim, Kyung-Ho;Ryu, Sung-Soo;Han, Yoonsoo
    • Journal of Powder Materials
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    • v.27 no.6
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    • pp.490-497
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    • 2020
  • The 3D printing process provides a higher degree of freedom when designing ceramic parts than the conventional press forming process. However, the generation and growth of the microcracks induced during heat treatment is thought to be due to the occurrence of local tensile stress caused by the thermal decomposition of the binder inside the green body. In this study, an alumina columnar specimen, which is a representative ceramic material, is fabricated using the digital light process (DLP) 3D printing method. DTG analysis is performed to investigate the cause of the occurrence of microcracks by analyzing the debinding process in which microcracks are mainly generated. HDDA of epoxy acrylates, which is the main binder, rapidly debinded in the range of 200 to 500℃, and microcracks are observed because of real-time microscopic image observation. For mitigating the rapid debinding process of HDDA, other types of acrylates PETA, PUA, and MMA are added, and the effect of these additives on the debinding rate is investigated. By analyzing the DTG in the 25 to 300℃ region, it is confirmed that the PETA monomer and the PUA monomer can suppress the rapid decomposition rate of HDDA in this temperature range.

Durability and Characteristics of Ag-Pd Rod Heater for Bidet Fabricated by Screen Printing Process (스크린 프린팅 공정에 의해 제조된 비데용 Ag-Pd 봉형 발열체의 내구성 및 물성 평가 )

  • Tae-Ung Park;Da-Eun Hyun;Ik-Soo Kim;Sung-Chul Lee;Yeon-Sook Lee;Yong-Nam Kim;Dong-Won Lee;Jong-Min Oh
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.36 no.1
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    • pp.81-87
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    • 2023
  • Heaters using the resistance heating principle are used in various industrial fields that require heat and are also essentially used in bidet among small home appliances. A planar heater and a coil-inserted heater mounted on a conventional commercially used bidet have disadvantages and limitations of complicated manufacturing process and local heating. In this study, silver-palladium (Ag-Pd) powder material was used for a screen-printing process that is more advantageous in achieving simplification than the existing process, and a rod-type heater for bidet was manufactured. The on-off cycle test under actual conditions was conducted to confirm the durability and the capability of the fabricated heater, and the fabricated heater operated more than 2,600 on-off cycles, which means it could be applied for a commercial product. In addition, through the on-off cycles under harsh conditions, the cause of failure was identified after the test that the durability limit temperature of the heater was 850℃. Through Ag-Pd rod heater in this study, it is expected to contribute to the efficient development of electrode materials for heaters and the improvement of the durability of heaters in the future.