• Title/Summary/Keyword: UV3D

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Color Characteristics of 3D-Printed TPU Material Applied with Ultra-Violet Curable Digital Printing Process (자외선 경화형 디지털 프린팅을 이용한 3D 프린팅 TPU 소재의 색채 특성)

  • Lee, Sunhee;Park, Soyeon;Jung, Imjoo;Lee, Jungsoon
    • Journal of the Korean Society of Clothing and Textiles
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    • v.45 no.6
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    • pp.1052-1062
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    • 2021
  • This study aims to confirm the possibility of Ultra-Violet (UV)-printed 3D printing materials using thermal polyurethane (TPU) with CMYK colors by applying an eco-friendly UV digital printing process. A UV-printed 3D printing TPU material was prepared with cycles of UV printing and CMYK colors. Dyeability of the 3D TPU samples with cycles of UV printing and CMYK were analyzed for thickness, weight, surface roughness, reflectance, colorimetry, and K/S values. The thickness and weight of 3D-printed TPU samples with cycles of UV printing are increased with overprints from 1 to 5. The surface roughness of 3D-printed TPU samples with increasing UV prints were decreased, meaning that the surface of TPU samples becomes gradually smoother. The reflectance spectra of CMYK UV-printed TPU samples showed the surface reflectance within each characteristic wavelength of CMYK. The 3D-printed TPU samples, subjected to UV printing twice or more, showed low surface reflectance. After examining the L*a*b* of the 3D-printed TPU samples by the cycles of UV printing, the study found that the more UV got printed more than 2 times, the closer the color to each CMYK.

Representing the Materials of 3D Models using 3D Printing and UV Map (3D 프린팅 및 UV 맵을 이용한 입체 재질의 표현)

  • Seo, Hea-min;Kim, Byoung-chul
    • Proceedings of the Korea Contents Association Conference
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    • 2017.05a
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    • pp.3-4
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    • 2017
  • 일련의 캐릭터를 표현할 경우 대상의 외형은 물론 질감표현 역시 중요한 요소이다. 3D 프린터의 보편화로 외형 표현은 비교적 쉽게 이루어질 수 있으나 질감표현은 여러 한계로 인해 표현이 어렵다. 본 연구는 2D 이미지 기반의 UV 맵 및 관련 입체화 기능을 활용해 3D 프린팅에 적용 가능한 재질표현 과정을 기술한다. 사실적 재질 표현을 위해 3D 모델의 UV 맵과 그 위에 여러 물성의 재질을 부착 후 정합하여 그 결과의 효과도 논의하고자 한다.

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Visual Effects of UV Lighting on Bodypainting (UV라이팅에 나타난 바디페인팅 시각적 효과)

  • Kim, Mi-Rim;Choi, Hee-Ja
    • The Journal of the Korea Contents Association
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    • v.11 no.2
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    • pp.268-275
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    • 2011
  • 21C digital culture is now affecting the life of arts and development through our system, as well as body arts and body painting. Body painting is not has been focused through our lives in 21stcentury as one genre. UV body painting is from short to long wave length that demonstrates to us the dimension by science and lighting showing more than 8 colors that are better off being set. From this research the theory of body painting considerate characteristics and vision for it. From the researchers line, dots, and side shows the UV body painting as a one piece of art and analyzing the 3D theory and once again showing vision through what it's affecting to their result.' UV body painting is usage of floral paints and using so called 'black light' that shows the short and long term wavelength that provides the 3D material, but first, this is different from normal body painting like dots, like, and layers shows more thoroughly and shows focused motive and you can easily tell the difference. As of all UV body painting is showing more 3D vision more than the design itself. From all this research, to all the body painters we await the future practical theory to be used and for the better future.

Rapid Manufacturing of 3D Micro Products by UV Laser Ablation and Phase Change Filling (UV 레이저 어블레이션과 상변화 충진을 이용한 3차원 마이크로 부품의 쾌속 제작)

  • 신보성;김재구;장원석;황경현
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2003.06a
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    • pp.26-29
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    • 2003
  • UV laser micromachining are generally used to create microstructures for micro product through a sequence of lithography-based photopatterning steps. However, the micromachining process is not suitable for the rapid realization of complex microscale 3D product because it depends on worker experiences, excessive cost and time to make many masks. In this paper, the more effective micro rapid manufacturing process, which is developed upon the base of laser micromachining. is proposed to fabricate micro products directly using UV laser ablation and phase change filling. The filling process is useful to hold the micro product during the next ablation step. The proposed micro rapid manufacturing process is also proven experimentally that enables to fabricate the 3D microscale products of UV sensitive polymer from 3D CAD data to functional micro parts.

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Rapid Manufacturing of 3D Micro Products by UV Laser Ablation and Phase Change Filling (UV 레이저 어블레이션과 상변화 충진을 이용한 3차원 마이크로 부품의 쾌속 제작)

  • Shin B. S.;Kim J. G.;Chang W. S.;Whang K. H.
    • Journal of the Korean Society for Precision Engineering
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    • v.22 no.11 s.176
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    • pp.196-201
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    • 2005
  • UV laser micromachining are generally used to create microstructures for micro product through a sequence of lithography-based photopatterning steps. However, the micromachining process is not suitable for the rapid realization of complex 3D micro product because it depends on worker experiences, excessive cost and time to make many masks. In this paper, the more effective micro rapid manufacturing process, which is developed upon the base of laser micromachining, is proposed to fabricate micro products directly using UV laser ablation and phase change filling. The filling process is useful to hold the micro product during the next ablation step. The proposed micro rapid manufacturing process is also proven experimentally that enables to fabricate the 3D micro products of UV sensitive polymer from 3D CAD data to functional micro parts.

Rapid Manufacturing of 3D-Shaped Microstructures by UV Laser Ablation (UV 레이저 어블레이션에 의한 3차원 형상 미세 구조물의 쾌속제작)

  • 신보성;양성빈;장원석;김재구;김정민
    • Journal of the Korean Society for Precision Engineering
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    • v.21 no.7
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    • pp.30-36
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    • 2004
  • Recently, the lead-time of a product is to be shortened in order to satisfy consumer's demand. It is thus important to reduce the manufacturing time and the cost of 3D-shaped microstructures. Micro-Electro-Mechanical Systems (MEMS) and devices are usually fabricated by lithography-based methods. Above method is not flexible for the rapid manufacture of 3D-shaped microstructures because it depends on work's experiences and requires excessive cost and time for making many masks. In this paper, the effective laser micrornachining is developed to fabricate UV sensitive polymer microstructures using laser ablation. The proposed process, named by laser microRP, is a very useful method on rapid manufacturing for 3D-shaped microstructures.

Rapid Manufacturing of 3D Micro-products using UV Laser Ablation and Phase-change Filling

  • Shin Bo-Sung;Kim Jae-Gu;Chang Won-Suk;Whang Kyung-Hyun
    • International Journal of Precision Engineering and Manufacturing
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    • v.7 no.3
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    • pp.56-59
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    • 2006
  • UV laser micromachining is generally used to create microstructures for micro-products through a sequence of lithography-based photo-patterning steps. However, the micromachining process is not suitable for rapid realization of complex 3D micro-products because it depends on worker experience. In addition, the cost and time required to make many masks are excessive. In this paper, a more effective and rapid micro-manufacturing process, which was developed based on laser micromachining, is proposed for fabricating micro-products directly using UV laser ablation and phase-change filling. The filling process is useful for holding the micro-products during the ablation step. The proposed rapid micro-manufacturing process was demonstrated experimentally by fabricating 3D micro-products from functional UV-sensitive polymers using 3D CAD data.

Utilization of 3D CAD and 3D Printer and UV Curavle resin Casting Defect (3D CAD, 3D 프린터 활용과 광경화수지 주물 결함)

  • Ryu, Ki-Hyu;Seo, Jin-Hwan
    • Journal of the Korea Convergence Society
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    • v.8 no.3
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    • pp.169-176
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    • 2017
  • Casting process includes wax pattern, investment, dewaxing, curing, casting, etc., and each single process is important to achieve a good result. Since 2000, 3D printers have been developed and widely used; as more prefer UV Curavle resin method over wax method, resultant casting defects have become worse. To resolve such problem, preceding research revealed casting defects of existing wax method. In particular, defects of UV Curavle resin method showed difference in investment, dewaxing, deresinating and curing compared to the existing one. Accordingly, results were presented through casting tests; especially, a temperature rising curve only for UV Curavle resin was shown rather than one for the existing method. Lastly, this research classified those not available with direct casting and suggested mold manufacturing. This research is expected to be useful for 3D printer users or those who would conduct direct casting with UV Curavle resin.