• 제목/요약/키워드: Three-Dimensional Printing

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마이크로 구조 및 동유체력을 이용한 나노와이어 미세 정렬 및 프린팅 기법 (Directional Alignment and Printing of One Dimensional Nanomaterials Using the Combination of Microstructure and Hydrodynamic Force)

  • 정용원;서정목;이상근;권혁호;이태윤
    • 한국재료학회지
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    • 제23권10호
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    • pp.586-591
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    • 2013
  • The printing of nanomaterials onto certain substrates is one of the key technologies behind high-speed interconnection and high-performance electronic devices. For the printing of next-generation electronic devices, a printing process which can be applied to a flexible substrate is needed. A printing process on a flexible substrate requires a lowtemperature, non-vacuum process due to the physical properties of the substrate. In this study, we obtained well-ordered Ag nanowires using modified gravure printing techniques. Ag nanowires are synthesized by a silver nitrate ($AgNO_3$) reduction process in an ethylene glycol solution. Ag nanowires were well aligned by hydrodynamic force on a micro-engraved Si substrate. With the three-dimensional structure of polydimethylsiloxane (PDMS), which has an inverse morphology relative to the micro-engraved Si substrate, the sub-micron alignment of Ag nanowires is possible. This technique can solve the performance problems associated with conventional organic materials. Also, given that this technique enables large-area printing, it has great applicability not only as a next-generation printing technology but also in a range of other fields.

The Green Cement for 3D Printing in the Construction Industry

  • Park, Joochan;Jung, Euntae;Jang, Changsun;Oh, Chaewoon;Shin, Kyung Nam
    • 에너지공학
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    • 제29권3호
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    • pp.50-56
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    • 2020
  • Currently, 3D printing technology is a new revolutionary additive manufacturing process that can be used for making three dimensional solid objects from digital films. In 2019, this 3D printing technology spreading vigorously in production parts (57%), bridge production (39%), tooling, fixtures, jigs (37%), repair, and maintenance (38%). The applications of 3D printing are expanding to the defense, aerospace, medical field, and automobile industry. The raw materials are playing a key role in 3D printing. Various additive materials such as plastics, polymers, resins, steel, and metals are used for 3D printing to create a variety of designs. The main advantage of the green cement for 3D printing is to enhance the mechanical properties, and durability to meet the high-quality material using in construction. There are several advantages with 3D printing is a limited waste generation, eco-friendly process, economy, 20 times faster, and less time-consuming. This research article reveals that the role of green cement as an additive material for 3D printing.

치과 3D 프린팅용 광중합 시간에 따른 중합도 비교 (Comparison of polymerization by time of light curing for dental 3D printing)

  • 김동연;이광영
    • 대한치과기공학회지
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    • 제44권3호
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    • pp.76-80
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    • 2022
  • Purpose: The purpose of this study is to analyze the depth according to curing using photocurable resin for dental three-dimensional printing. Methods: A stainless mold with a height of 4 mm was prepared. Ultraviolet (UV) polymerization resin was injected into the mold. Photocuring was then performed for 5 minutes using a photopolymerizer, and the height was measured using a digital measuring instrument (first group). Second, light polymerization was also performed outside the mold for 5 minutes, and the height was measured using a digital measuring instrument. Third, light polymerization was further performed for 5 minutes, and the height was measured using a digital measuring instrument. Statistical analysis was performed with the Kruskal-Wallis test, which is a nonparametric test (α=0.05). Results: The third group had the largest measurement length, whereas the first group had the smallest. However, the difference between groups was not statistically significant (p>0.05). The color of the first group was different from that of the second and third groups. Conclusion: All of the 4-mm-thick photocured specimens had a curing reaction, but the part that was not directly irradiated with UV did not show its original color.

식품 3D-프린팅 기술과 식품 산업적 활용 (Food 3D-printing Technology and Its Application in the Food Industry)

  • 김종태;맹진수;신원선;심인철;오승일;조영희;김종훈;김철진
    • 산업식품공학
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    • 제21권1호
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    • pp.12-21
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    • 2017
  • Foods are becoming more customized and consumers demand food that provides great taste and appearance and that improves health. Food three-dimensional (3D)-printing technology has a great potential to manufacture food products with customized shape, texture, color, flavor, and even nutrition. Food materials for 3D-printing do not rely on the concentration of the manufacturing processes of a product in a single step, but it is associated with the design of food with textures and potentially enhanced nutritional value. The potential uses of food 3D-printing can be forecasted through the three following levels of industry: consumer-produced foods, small-scale food production, and industrial scale food production. Consumer-produced foods would be made in the kitchen, a traditional setting using a nontraditional tool. Small-scale food production would include shops, restaurants, bakeries, and other institutions which produce food for tens to thousands of individuals. Industrial scale production would be for the mass consumer market of hundreds of thousands of consumers. For this reason, food 3D-printing could make an impact on food for personalized nutrition, on-demand food fabrication, food processing technologies, and process design in food industry in the future. This article review on food materials for 3D-printing, rheology control of food, 3D-printing system for food fabrication, 3D-printing based on molecular cuisine, 3D-printing mobile platform for customized food, and future trends in the food market.

3차원 영상구현을 위한 OLED 단위소자 특성에 대한 연구 (Study on performance of unit OLED device for 3-dimensional image-process)

  • 이정호;김재인;오영해
    • 한국광학회:학술대회논문집
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    • 한국광학회 2005년도 하계학술발표회
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    • pp.204-205
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    • 2005
  • Studies on display has been requested some major changes due to the high growth of the handheld terminal market. Therefore, the self emitting OLED(Organic Light Emitting Diode) has been interested as a next generation flat plane display because of its preeminent characteristics such as quick response characteristics, higher performance viewing angle, low power consumption, and panel floating. However, a trend of the display market is moving to three dimensional image processing instead of two dimensional flat display and various researches on display using hologram makes up for the difficulty in three dimensional display using typical flat display. In this study the Lenticular Screen Printing method is presented so that it can be applicable to organic semiconductor display devices and makes possible three dimensional display using flat display for complement the drawback of inorganic semiconductor.

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압출 적층 방식의 알루미늄 용융기의 설계 및 해석 (Design and Analysis of Aluminum Melting Machine in Fused Deposition Modeling Method)

  • 이현석;나영민;강태훈;박종규;박태곤
    • 한국기계가공학회지
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    • 제14권4호
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    • pp.62-72
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    • 2015
  • Interest in three-dimensional (3D) printing processes has grown significantly, and several types have been developed. These 3D printing processes are classified as Selective Laser Sintering (SLS), Stereo-Lithography Apparatus (SLA), and Fused Deposition Modeling (FDM). SLS can be applied to many materials, but because it uses a laser-based material removal process, it is expensive. SLA enables fast and precise manufacturing, but available materials are limited. FDM printing's benefits are its reasonable price and easy accessibility. However, metal printing using FDM can involve technical problems, such as suitable component supply or the thermal expansion of the heating part. Thus, FDM printing primarily uses materials with low melting points, such as acrylonitrile butadiene styrene (ABS) or polylactic acid (PLA) resin. In this study, an FDM process for enabling metal printing is suggested. Particularly, the nozzle and heatsink for this process are focused for stable printing. To design the nozzle and heatsink, multi-physical phenomena, including thermal expansion and heat transfer, had to be considered. Therefore, COMSOL Multiphysics, an FEM analysis program, was used to analyze the maximum temperature, thermal expansion, and principal stress. Finally, its performance was confirmed through an experiment.

3D 프린팅 휘어짐 현상 최소화를 위한 설계 (3D Printing Design for Minimizing Flection Phenomenon)

  • 최성욱;황석승
    • 한국전자통신학회논문지
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    • 제9권12호
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    • pp.1415-1420
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    • 2014
  • 3D 프린터는 3D도면을 입력받아 적층가공 방식으로 재료를 쌓아 원하는 제품을 제작하는 프린터이다. 3D 프린터는 다양한 입체 제품을 출력할 수 있고, 짧은 시간 내에 제품 출력이 가능하여 다양한 분야에서 사용되고 있다. 이러한 3D 프린터는 다양한 종류의 출력방식과 재료가 있는데 본 논문에서는 이중 ABS(Acrylonitrile Butadiene Styrene)수지를 녹여 쌓는 FDM(Fused Deposition Modeling)방식을 고려한다. 이 방식을 사용한 3D 프린터는 고온에서 제품을 출력하여 짧은 시간 내에 냉각이 진행되는데, 이 과정에서 출력물의 크기나 주변 환경의 상태에 따라서 휘어짐 현상이 발생한다. 이러한 휘어짐 현상을 최소화하기 위해 현재 사용되고 있는 방법은 온도를 적정선으로 유지해주는 방식이다. 이 방식은 온도 유지를 위한 추가적인 장비가 필요하여 본 논문에서는 휘어짐 현상을 최소화하기 위한 3D 프린팅 기법을 제안한다. 제안된 방식은 제품의 최초설계 시 휘어짐 위치를 고려하여 적당한 구멍(홈)을 생성시켜 출력하는 방법을 기반으로 한다. 제안된 방법에 대한 수학적 모델을 제시하고, 성능평가를 위해 일반적인 방식을 사용한 출력물과 제안된 방법으로 설계한 출력물을 측정하고 분석한다.

3D 프린팅 적층 방향을 고려한 위상최적설계의 실험적 검증 (Experimental Validation of Topology Design Optimization Considering Lamination Direction of Three-dimensional Printing)

  • 박희만;이규빈;김진산;선채림;윤민호
    • 한국전산구조공학회논문집
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    • 제35권3호
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    • pp.191-196
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    • 2022
  • 본 연구에서는 3D 프린팅 FDM 방식의 적층 방향에 따라 기계적 물성이 달라지는 이방성 특성을 확인하고 이를 이용하여 위상 최적설계를 수행하였다. 벤치마크 문제인 자동차 현가장치 부품 중 하나인 로어 컨트롤 암에 대하여 밀도법 기반 위상 최적설계를 수행하였으며, 외부 하중과 이방성 특성에 따라 위상 최적결과가 다르게 나타나는 것을 확인하였다. 이를 이용하여 최적화된 모델에 대하여 3D 프린터로 적층 방향을 달리하여 2가지 시험품을 제작하였으며 인장시험을 수행하였다. 시험시 3D 비접촉 변형률 측정기를 이용하여 변형률을 구하였으며 이를 CAE 응답해석으로 얻은 변형률과 비교한 결과가 정량 및 정성적으로 일치하는 것을 확인하였다. 3D 프린팅 적층 방향을 고려한 위상 최적모델의 인장 실험 결과를 통해 해당 최적설계 방법론의 유효성을 검증하였다.