FUNDAMENTAL-STUDIES ON THE INTERACTION BETWEEN MOISTURE AND TEXTILES .12. MOISTURE SORPTION MECHANISM OF AROMATIC POLYAMIDE FIBERS - STOICHIOMETRY OF THE WATER SORBED IN POLY(PARA-PHENYLENE TEREPHTHALAMIDE) FIBERS

被引:29
|
作者
FUKUDA, M
OCHI, M
MIYAGAWA, M
KAWAI, H
机构
[1] Department of Practical Life Studies, Faculty of Teacher Education, Hyogo University of Teacher Education, Yashiro-cho
[2] Tyre Technical HQ, Sumitomo Rubber Industries, Ltd., Chuo-ku, Kobe 651, 1-1, 1-chome, Tsutsui-cho
[3] Tohaku Junior High School, Tohaku-cho
关键词
D O I
10.1177/004051759106101107
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
The water sorbed in a series of poly(para-phenylene terephthalamide) (PPTA) fibers (regular Kevlar, Kevlar 49, Kevlar 149, and a heat treated PPTA fiber) was characterized by analyzing the moisture sorption isotherm and thermodynamic quantities derived from calorimetric measurements of heat of moisture sorption. The maximum volume of adsorbed water in Langmuir's monolayer fashion per unit mass of dry material upsilon-m normalized by the degree of noncrystallinity was much larger for the series of PPTA fibers than that for nylon fibers, such as 6, 66, and 46, possessing almost the same concentration of peptide groups as the PPTA fibers. The number of water molecules adsorbed in monolayer fashion per each peptide site in the noncrystalline region was around 0.4 moles/mole for the PPTA fibers and about 2.2 times larger than that for the nylon fibers, all at 30-degrees-C. The hydration enthalpy DELTA-H(L) at dryness and the hydration entropy T-DELTA-S(L) near dryness were -25 approximately -35 and -10 approximately -12 kJ/mol, respectively, both at 30-degrees-C, when liquid water was taken as the reference. These values are about 1.5 times larger than those of nylon 6 fibers, large enough to assign the initially sorbed water in the PPTA fibers as doubly hydrogen bonded and in a highly ordered state like the crystal lattice of ice. These results indicate that the bulky and rigid phenyl ring in the aromatic polyamide chain opens the space for each peptide site to adsorb moisture more efficiently than the site in the aliphatic polyamide chain.
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页码:668 / 680
页数:13
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