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Journal |
Textile Coloration and Finishing |
Year / Vol., Issue, Month |
2022 / V.34,no.4,Dec |
Title |
The Physical Properties and Performance of Products for Eyelash Monofilaments |
Authors |
Eun Jong Son*, Jae Sang Ahn1, Hye Jun Yoon1, and Hee Young Shin2 |
Institution/Affiliations |
Bucheon University, 1Korea Institute of Industrial Technology, 2Shin Young Health and Beauty |
Pages/Total page |
pp.272 ~ 283 / 12 |
Language |
Korean |
Abstract |
In this study, the flat-section monofilaments of PBT for artificial eyelashes
was developed, and the physical properties of the circular cross-section of artificial
eyelashes were compared and observed, and the main performance of the artificial
eyelash prototype was observed through processing for artificial eyelashes. In addition,
a satisfaction survey of the prototype was conducted through a survey of consumers
and artificial eyelash operators. It was found that the bending stiffness value of the
monofilaments increased significantly as the thickness increased. As a result of measuring
the bending properties of the flat-section PBT monofilaments, the bending stiffness
was significantly lower than that of the circular-section PBT specimens of the
same thickness. The deformed cross-section PBT monofilaments with flat cross sections
developed in this study showed a light weight factor of less than 50% compared to
the existing circular cross-section PBT ones. The adhesive strength of the developed
PBT artificial specimens was greater than that of the existing circular cross-section
yarn. It was also observed that the curl stability over time was excellent. As a result
of the consumer survey, it was possible to obtain more than 85% of positive answers
in the case of consumer subjects, and it was possible to investigate that the satisfaction
of the operator subjects was more than 80% compared to the existing
round-section eyelashes. |
Keywords |
flat-section, circular cross-section, artificial eyelashes, bending stiffness, curl stability adhesive strength |
Download |
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Reference |
http://koreascience.or.kr/journal/OSGGBT.page
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