Thermal and Wet Comfort of Fabrics Based on Fractal Dimension of Silicone Coating
Author(s) -
Yunlong Shi,
Liang Wang,
Wenhuan Zhang,
Xiaoming Qian
Publication year - 2018
Publication title -
journal of engineered fibers and fabrics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.303
H-Index - 29
ISSN - 1558-9250
DOI - 10.1177/155892501801300102
Subject(s) - coating , fractal dimension , materials science , composite material , fractal , silicone , thermal resistance , thermal insulation , layer (electronics) , silicone resin , thermal , mathematics , meteorology , mathematical analysis , physics
In this paper, thermal and wet comforts of silicone coated windbreaker shell jacket fabrics were studied. Both thermal insulation and evaporative resistance of fabric increased with an increase in coating area due to the barrier effect of the silicone coating layer. Moreover, the coated fabrics with self-similar structures showed different thermal insulation and evaporative resistance under the same total coating area. Fractal theory was used to explain this phenomenon. Optimal thermal-wet comfort properties were obtained when the fractal dimension (D=1.599) was close to the Golden Mean (1.618). When the fractal dimension of coating was lower than 1.599, fabric warmth retention was not high enough. In contrast, fabric evaporative resistance was beyond the value at which people would feel comfortable when the fractal dimension was greater than 1.599.
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