The impact of raw composition, knitted fabric parameters and finishing of 1x1 rib knitwear on water vapor resistance
Pesic, Marija
Milosavljevic, Anita
Djurdjic, Danka
Dr. Csanák, Edit
2026-03-05T09:33:46Z
2026-03-05T09:33:46Z
2021
http://hdl.handle.net/20.500.14044/37811
Clothing comfort is very important feature which is considered as a result of different process of
heat exchange between human body, clothing and environment. The purpose of this paper is to analyze the
impact of raw composition, knitted fabric parameters and finishing on the heat water vapor resistance. The
measurements was carried out on commercially 1x1 RIB knitted fabrics used for the production of next -to-
skin shirts. The one group of samples are made from 100% cotton yarn and another with 96% cotton and 4%
Lycra. It is noticed that knitted material composition affected the change in water vapor resistance. Also, this
paper presents and verifies the correlation between the measured values of water vapor resistance (Ret) and
the knitwear thickness (dpl), mass per unit area (mpl) the tightness factor (K), the porosity (ε) and the surface
coefficient (δp). Based on these results, a mathematical model for calculating water vapor resistance is
proposed. Comparing the results obtained with the proposed equation and the measured results, we can see
that the deviations are minimal. The lowest deviation for sample CP3 is less than 0.0008%, while the largest
deviation for sample CL1 is 0.023%.
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The impact of raw composition, knitted fabric parameters and finishing of 1x1 rib knitwear on water vapor resistance
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Open access
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Óbudai Egyetem
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2021. November 18-19.
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Budapest
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Rejtő Sándor Könnyűipari és Környezetmérnöki Kar
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Óbudai Egyetem
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Műszaki tudományok - anyagtudományok és technológiák
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thermo physiological comfort
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porosity
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tightness factor
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surface coefficient
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Konferenciaközlemény
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IJCELIT 2021 8th International Joint Conference on Environmental and Light Industry Technologies
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local.tempfieldCollections
Könyvrészletek
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17.
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Kiadói változat
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9 p.
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8th International Joint Conference on Environmental and Light Industry Technologies