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Preparation and Tactile Performance of Soluble Eggshell Membrane (S-ESM) Embedded Waterborne Polyurethane (WPU) CompositePreparation and Tactile Performance of Soluble Eggshell Membrane (S-ESM) Embedded Waterborne Polyurethane (WPU) Composite

Other Titles
Preparation and Tactile Performance of Soluble Eggshell Membrane (S-ESM) Embedded Waterborne Polyurethane (WPU) Composite
Authors
주수현Tridib Kumar Sinha문준호오정석
Issue Date
Sep-2023
Publisher
한국고무학회
Keywords
soluble eggshell membrane; waterborne polyurethane; Eco-friendly bio-coating; coefficient of friction; triboelectricity
Citation
엘라스토머 및 콤포지트, v.58, no.3, pp 112 - 120
Pages
9
Indexed
ESCI
KCI
Journal Title
엘라스토머 및 콤포지트
Volume
58
Number
3
Start Page
112
End Page
120
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/68178
DOI
10.7473/EC.2023.58.3.112
ISSN
2092-9676
2288-7725
Abstract
Herein, we propose a facile water-processible method to develop an eggshell membrane (ESM)-embedded waterborne polyurethane (WPU)-based bio-degradable and bio-compatible coating material that exhibits attractive tactile properties. Virgin ESM is not dispersible in water. Hence, to develop the ESM-based WPU composite, soluble ESM (SESM) was first extracted by de-crosslinking the ESM. The extracted S-ESM at different concentrations (0, 0.5, 1.0, 1.5 wt %) was mixed with WPU. Compared to virgin WPU, the viscosity of S-ESM/WPU dispersion and the in-plane coefficient of friction (COF) of the composite film surfaces decreased with an increase in the S-ESM content. In addition, an increase in the S-ESM content improved the tribo-positive characteristics of the film. Different good touch-feeling biomaterials, such as fur, feather, and human skin exhibit tribo-positivity. Thus, the enhanced tribo-positive characteristics of the S-ESM/WPU and the decrease in their COF owing to an increase in the S-ESM content imply the enhancement of its touch-feeling performance. The S-ESM embedded WPU composites have potential applications as coating materials in various fields, including automobile interiors and artificial leather.
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공학계열 > Dept.of Materials Engineering and Convergence Technology > Journal Articles

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