Conformal Projection Printing Method to Increase the Accuracy of 3D Printed Nails.

IF 0.2 4区 医学 Q4 CHEMISTRY, APPLIED Journal of cosmetic science Pub Date : 2020-05-01
Chan Joun Park, Abhilash Aditya, Namsoo Peter Kim
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引用次数: 0

Abstract

Incorporating technologies such as 3D printers and the Internet of things (IoT) can improve the nail art industry by making it more efficient, and, most importantly, safer. It eliminates the need for physical shops such as nail salons. Nail art by 3D printing technology can achieve higher resolution and accuracy than before with conformal projection printing method (CPPM). The conventional method of painting nails manually leads to acute exposure to ultraviolet (UV) light that can contribute to minor health hazards. This research illustrates the benefits of using 3D printing for nail art. This study uses the IoT system, which can be stationed in a distinct location from the customer. The product on the nail is printed at least once and up to three times within 5 µm to achieve precise resolution through laser marking and CPPM, which can increase the accuracy by repeated projection to attain the required settling ratio. The correlation between the numbers of printed layers and different incident angles of the printing head on the conformal surface is discussed. The ratio of projected weight to the ideal weight for high-definition printing condition is illustrated, and comparison studies with conventional nail art techniques are conducted to validate the results.

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提高3D打印钉子精度的保形投影打印方法。
结合3D打印机和物联网(IoT)等技术可以提高美甲行业的效率,最重要的是,更安全。它消除了对美甲沙龙等实体店的需求。采用3D打印技术的美甲艺术可以获得比以前采用保形投影打印方法(CPPM)更高的分辨率和精度。手工涂指甲的传统方法会导致严重暴露于紫外线(UV)光下,从而对健康造成轻微危害。这项研究说明了使用3D打印美甲艺术的好处。本研究使用物联网系统,该系统可以部署在与客户不同的位置。钉子上的产品在5µm范围内至少打印一次,最多打印三次,通过激光打标和CPPM实现精确的分辨率,通过重复投影提高精度,达到所需的沉降比。讨论了打印层数与打印头在共形表面的不同入射角之间的关系。投影重量与高清晰度打印条件下的理想重量之比,并与传统美甲技术进行了比较研究,以验证结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of cosmetic science
Journal of cosmetic science 工程技术-皮肤病学
CiteScore
0.90
自引率
0.00%
发文量
26
期刊介绍: The JOURNAL OF COSMETIC SCIENCE (JCS) publishes papers concerned with cosmetics, cosmetic products, fragrances, their formulation and their effects in skin care or in overall consumer well-being, as well as papers relating to the sciences underlying cosmetics, such as human skin physiology, color physics, physical chemistry of colloids and emulsions, or psychological effects of olfaction in humans. Papers of interest to the cosmetic industry and to the understanding of the cosmetic markets are also welcome for publication.
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